【注意事項】
* 生態影響に係る有害性情報更新日が2019年9月以前はRead-acrossデータに○を記載しておらず、被験物質が標記の物質ではない可能性がある。
**各情報源における信頼性評価スコアの定義は下記のとおりである。
生物種 | 学名 | 影響内容 | エンドポイント | 暴露期間(値) | 暴露期間(単位) | 毒性値 | 毒性値(単位) | 毒性値(単位)種別 | 試験中の 被験物質 濃度測定 あり:○ なし:× |
情報源 | 情報源による 信頼性評価** |
著者 | タイトル | 記載誌 | 発行年 | 情報更新日 | |||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
subject type | scientific name | effect | endpoint | exposure duration value |
exposure duration unit |
toxicity value | toxicity unit | toxicity unit type | Read-across* | QSAR | GLP | measurement of the test material |
original work type | original work reliability rank |
author | title | referenced journal | publication year | Information update date |
藻類 | Navicula pelliculosa | Population | EC50 | 5 | days | >120 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
藻類 | Scenedesmus sp. | Population | EC50 | 3 | days | 540 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qu,H., R.X. Ma, D.H. Liu, P. Wang, L.D. Huang, X.X. Qiu, and Z.Q. Zhou | Enantioselective Toxicity and Degradation of the Chiral Insecticide Fipronil in Scenedesmus obliguus Suspension System | Environ. Toxicol. Chem.33(11): 2516-2521 | 2014 | 2018/03/22 | |||||
藻類 | Scenedesmus sp. | Physiological | LOEC | 3 | days | 200 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qu,H., R.X. Ma, D.H. Liu, P. Wang, L.D. Huang, X.X. Qiu, and Z.Q. Zhou | Enantioselective Toxicity and Degradation of the Chiral Insecticide Fipronil in Scenedesmus obliguus Suspension System | Environ. Toxicol. Chem.33(11): 2516-2521 | 2014 | 2018/03/22 | |||||
藻類 | Dunaliella tertiolecta | Population | LOEC | 4 | days | 500 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Overmyer,J.P., D.R. Rouse, J.K. Avants, A.W. Garrison, M.E. DeLorenzo, K.W. Chung, P.B. Key, W.A. Wilson, and M.C. Black | Toxicity of Fipronil and Its Enantiomers to Marine and Freshwater Non-Targets | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes42(5): 471-480 | 2007 | 2018/03/22 | |||||
藻類 | Skeletonema costatum | Population | EC50 | 5 | days | >140 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
藻類 | Anabaena flos-aquae | Population | EC50 | 5 | days | >170 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
藻類 | Pseudokirchneriella subcapitata | Population | EC50 | 5 | days | 140 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
藻類 | Dunaliella tertiolecta | Population | NOEC | 4 | days | 250 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Overmyer,J.P., D.R. Rouse, J.K. Avants, A.W. Garrison, M.E. DeLorenzo, K.W. Chung, P.B. Key, W.A. Wilson, and M.C. Black | Toxicity of Fipronil and Its Enantiomers to Marine and Freshwater Non-Targets | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes42(5): 471-480 | 2007 | 2018/03/22 | |||||
藻類 | Anabaena flos-aquae | Population | NOEL | 5 | days | 170 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
藻類 | Skeletonema costatum | Population | NOEL | 5 | days | 140 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
藻類 | Navicula pelliculosa | Population | NOEL | 5 | days | 120 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
藻類 | Dunaliella tertiolecta | Population | EC50 | 4 | days | 631.2 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Overmyer,J.P., D.R. Rouse, J.K. Avants, A.W. Garrison, M.E. DeLorenzo, K.W. Chung, P.B. Key, W.A. Wilson, and M.C. Black | Toxicity of Fipronil and Its Enantiomers to Marine and Freshwater Non-Targets | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes42(5): 471-480 | 2007 | 2018/03/22 | |||||
藻類 | Scenedesmus subspicatus | EC50 | 72 | hours | >1000 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkichen | 2014 | 2018/03/02 | |||||||||
藻類 | Pseudokirchneriella subcapitata | EC50 | 5 | days | >0.14 | ppm | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
藻類 | Pseudokirchneriella subcapitata | ErC50 | 120 | hours | >140 | μg/L | 2 日本環境省 農薬登録保留基準(水産動植物) | 環境省 | 水産動植物の被害防止に係る農薬登録保留基準の設定に関する資料 | 2018/03/16 | |||||||||
藻類 | Skeletonema costatum | EC50 | 5 | days | >0.14 | ppm | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
藻類 | Scenedesmus subspicatus | EC50 | 72 | hours | 505 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkichen | 2014 | 2018/03/02 | |||||||||
藻類 | Pseudokirchneriella subcapitata | EC50 | 5 | days | 76 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 1999 | 2018/03/02 | |||||||||
藻類 | Navicula pelliculosa | EC50 | 5 | days | >0.12 | ppm | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
藻類 | Anabaena flos-aquae | EC50 | 5 | days | >0.17 | ppm | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
藻類 | Pseudokirchneriella subcapitata | EC50 | 5 | days | 81 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkirchen | 2014 | 2018/03/02 | |||||||||
藻類 | Skeletonema costatum | NOEL | 5 | days | 0.14 | ppm | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
藻類 | Anabaena flos-aquae | NOEL | 5 | days | 0.17 | ppm | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
藻類 | Pseudokirchneriella subcapitata | NOErC | 120 | hours | 140 | μg/L | 2 日本環境省 農薬登録保留基準(水産動植物) | 環境省 | 水産動植物の被害防止に係る農薬登録保留基準の設定に関する資料 | 2018/03/16 | |||||||||
藻類 | Desmodesmus subspicatus | biomass | NOEC | 72 | hours | >=0.04 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
藻類 | Desmodesmus subspicatus | growth rate | NOEC | 72 | hours | >=0.04 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
藻類 | Pseudokirchneriella subcapitata | NOEL | 5 | days | 7.5 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 1999 | 2018/03/02 | |||||||||
藻類 | Scenedesmus subspicatus | NOEL | 72 | hours | 1000 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkichen | 2014 | 2018/03/02 | |||||||||
藻類 | Pseudokirchneriella subcapitata | NOEL | 5 | days | 14 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkirchen | 2014 | 2018/03/02 | |||||||||
藻類 | Scenedesmus subspicatus | NOEL | 72 | hours | 320 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkichen | 2014 | 2018/03/02 | |||||||||
藻類 | Navicula pelliculosa | NOEL | 5 | days | 0.12 | ppm | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
藻類 | Pseudokirchneriella subcapitata | NOEL | 5 | days | 0.14 | ppm | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | Intoxication | EC50 | 2 | days | 88.3 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Hayasaka,D., T. Korenaga, K. Suzuki, F. Sanchez-Bayo, and K. Goka | Differences in Susceptibility of Five Cladoceran Species to Two Systemic Insecticides, Imidacloprid and Fipronil | Ecotoxicology21(2): 421-427 | 2012 | 2018/03/22 | |||||
甲殻類 | Mysidopsis bahia | Reproduction | LOEC | 28 | days | 0 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Reproduction | NOEL | 45 | days | 0.14298 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Volz,D.C., E.F. Wirth, M.H. Fulton, G.I. Scott, E. Strozier, D.S. Block, J.L. Ferry, S.S. Walse, and G.T. Chandler | Effects of Fipronil and Chlorpyrifos on Endocrine-Related Endpoints in Female Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.71(3): 497-503 | 2003 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Mortality | LC50 | 4 | days | 143.43 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qin,G., S.M. Presley, T.A. Anderson, W. Gao, and J.D. Maul | Effects of Predator Cues on Pesticide Toxicity: Toward an Understanding of the Mechanism of the Interaction | Environ. Toxicol. Chem.30(8): 1926-1934 | 2011 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | NOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Mysidopsis bahia | Mortality | LOEC | 28 | days | 0.005 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
甲殻類 | Daphnia magna | Behavior | LOEC | 2 | days | 1.4 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Chevalier,J., E. Harscoet, M. Keller, P. Pandard, J. Cachot, and M. Grote | Exploration of Daphnia Behavioral Effect Profiles Induced by a Broad Range of Toxicants with Different Modes of Action | Environ. Toxicol. Chem.34(8): 1760-1769 | 2015 | 2018/03/22 | |||||
甲殻類 | Daphnia magna | Intoxication | NOEL | 2 | days | 52 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Reproduction | NOEL | 4.8 | days | 256 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Growth | NOEL | 45 | days | 0.14298 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Volz,D.C., E.F. Wirth, M.H. Fulton, G.I. Scott, E. Strozier, D.S. Block, J.L. Ferry, S.S. Walse, and G.T. Chandler | Effects of Fipronil and Chlorpyrifos on Endocrine-Related Endpoints in Female Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.71(3): 497-503 | 2003 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Mortality | LOEC | 8 | days | 120 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Growth | NOEC | 45 | days | 0.14298 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Volz,D.C., E.F. Wirth, M.H. Fulton, G.I. Scott, E. Strozier, D.S. Block, J.L. Ferry, S.S. Walse, and G.T. Chandler | Effects of Fipronil and Chlorpyrifos on Endocrine-Related Endpoints in Female Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.71(3): 497-503 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LOEC | 4 | days | 0.13 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LOEC | 4 | days | 0.5 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | LOEC | 4 | days | 0.2 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., T.W. Greig, G.T. Chandler, and J.M. Quattro | Serial Analysis of Gene Expression Reveals Identifiable Patterns in Transcriptome Profiles of Palaemonetes pugio Exposed to Three Common Environmental Stressors | Environ. Toxicol. Chem.26(11): 2413-2419 | 2007 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | LOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Hormone | NOEC | 45 | days | 0.14298 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Volz,D.C., E.F. Wirth, M.H. Fulton, G.I. Scott, E. Strozier, D.S. Block, J.L. Ferry, S.S. Walse, and G.T. Chandler | Effects of Fipronil and Chlorpyrifos on Endocrine-Related Endpoints in Female Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.71(3): 497-503 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Biochemical | NOEC | 45 | days | 0.14298 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Volz,D.C., E.F. Wirth, M.H. Fulton, G.I. Scott, E. Strozier, D.S. Block, J.L. Ferry, S.S. Walse, and G.T. Chandler | Effects of Fipronil and Chlorpyrifos on Endocrine-Related Endpoints in Female Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.71(3): 497-503 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | NOEC | 4 | days | <32 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | NOEC | 4 | days | <0.13 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | NOEC | 4 | days | 0.25 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Reproduction | LOEL | 4.8 | days | 512 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Biochemical | NOEL | 45 | days | 0.14298 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Volz,D.C., E.F. Wirth, M.H. Fulton, G.I. Scott, E. Strozier, D.S. Block, J.L. Ferry, S.S. Walse, and G.T. Chandler | Effects of Fipronil and Chlorpyrifos on Endocrine-Related Endpoints in Female Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.71(3): 497-503 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | LOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | NOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | NOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | NOEL | 45 | days | 0.0979 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Volz,D.C., E.F. Wirth, M.H. Fulton, G.I. Scott, E. Strozier, D.S. Block, J.L. Ferry, S.S. Walse, and G.T. Chandler | Effects of Fipronil and Chlorpyrifos on Endocrine-Related Endpoints in Female Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.71(3): 497-503 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | NOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | 28 | days | <=7.61 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wirth,E.F., P.L. Pennington, J.C. Lawton, M.E. DeLorenzo, D. Bearden, B. Shaddrix, S. Sivertsen, and M.H. Fulton | The Effects of the Contemporary-Use Insecticide (Fipronil) in an Estuarine Mesocosm | Environ. Pollut.131(3): 365-371 | 2004 | 2018/03/22 | ||||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LC50 | 4 | days | 0.32 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Overmyer,J.P., D.R. Rouse, J.K. Avants, A.W. Garrison, M.E. DeLorenzo, K.W. Chung, P.B. Key, W.A. Wilson, and M.C. Black | Toxicity of Fipronil and Its Enantiomers to Marine and Freshwater Non-Targets | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes42(5): 471-480 | 2007 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LC50 | 4 | days | 0.68 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LOEC | 4 | days | 32 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | NOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | NOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | NOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | NOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LOEL | 45 | days | 0.14298 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Volz,D.C., E.F. Wirth, M.H. Fulton, G.I. Scott, E. Strozier, D.S. Block, J.L. Ferry, S.S. Walse, and G.T. Chandler | Effects of Fipronil and Chlorpyrifos on Endocrine-Related Endpoints in Female Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.71(3): 497-503 | 2003 | 2018/03/22 | |||||
甲殻類 | Daphnia magna | Intoxication | EC50 | 2 | days | 34.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Chevalier,J., E. Harscoet, M. Keller, P. Pandard, J. Cachot, and M. Grote | Exploration of Daphnia Behavioral Effect Profiles Induced by a Broad Range of Toxicants with Different Modes of Action | Environ. Toxicol. Chem.34(8): 1760-1769 | 2015 | 2018/03/22 | |||||
甲殻類 | Daphnia sp. | Intoxication | EC50 | 2 | days | 40.392 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Hayasaka,D., T. Korenaga, K. Suzuki, F. Sanchez-Bayo, and K. Goka | Differences in Susceptibility of Five Cladoceran Species to Two Systemic Insecticides, Imidacloprid and Fipronil | Ecotoxicology21(2): 421-427 | 2012 | 2018/03/22 | |||||
甲殻類 | Daphnia magna | Intoxication | EC50 | 2 | days | 190 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Genetic | NOEL | 4 | days | 0.25 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Griffitt,R.J., G.T. Chandler, T.W. Greig, and J.M. Quattro | Cathepsin B and Glutathione Peroxidase Show Differing Transcriptional Responses in the Grass Shrimp, Palaemonetes pugio Following Exposure to Three Xenobiotics | Environ. Sci. Technol.40(11): 3640-3645 | 2006 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Intoxication | EC50 | 2 | days | 0.99 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Hayasaka,D., T. Korenaga, K. Suzuki, F. Sanchez-Bayo, and K. Goka | Differences in Susceptibility of Five Cladoceran Species to Two Systemic Insecticides, Imidacloprid and Fipronil | Ecotoxicology21(2): 421-427 | 2012 | 2018/03/22 | |||||
甲殻類 | Mysidopsis bahia | Mortality | NOEL | 4 | days | <0.062 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
甲殻類 | Daphnia sp. | Population | NOEC | 10 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stark,J.D., and R.I. Vargas | Toxicity and Hazard Assessment of Fipronil to Daphnia pulex | Ecotoxicol. Environ. Saf.62(1): 11-16 | 2005 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Reproduction | NOEC | 8 | days | 60 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Mysidopsis bahia | Mortality | LC50 | 4 | days | 0.14 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Mortality | LC50 | 4 | days | 96.36 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qin,G., S.M. Presley, T.A. Anderson, W. Gao, and J.D. Maul | Effects of Predator Cues on Pesticide Toxicity: Toward an Understanding of the Mechanism of the Interaction | Environ. Toxicol. Chem.30(8): 1926-1934 | 2011 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Reproduction | NOEC | 8 | days | 60 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Daphnia sp. | Mortality | LC50 | 2 | days | 15.6 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stark,J.D., and R.I. Vargas | Toxicity and Hazard Assessment of Fipronil to Daphnia pulex | Ecotoxicol. Environ. Saf.62(1): 11-16 | 2005 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Mortality | NOEC | 8 | days | 60 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Daphnia magna | Intoxication | NOEL | 2 | days | 22 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | ||||||
甲殻類 | Daphnia sp. | Mortality | 10 | days | 80 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stark,J.D., and R.I. Vargas | Toxicity and Hazard Assessment of Fipronil to Daphnia pulex | Ecotoxicol. Environ. Saf.62(1): 11-16 | 2005 | 2018/03/22 | ||||||
甲殻類 | Ceriodaphnia sp. Ceriodaphnia reticulata | Intoxication | EC50 | 2 | days | 8.83 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Hayasaka,D., T. Korenaga, K. Suzuki, F. Sanchez-Bayo, and K. Goka | Differences in Susceptibility of Five Cladoceran Species to Two Systemic Insecticides, Imidacloprid and Fipronil | Ecotoxicology21(2): 421-427 | 2012 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Mortality | LC50 | 10 | days | 30.3 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Mortality | LC50 | 2 | days | 20.3 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Konwick,B.J., A.T. Fisk, A.W. Garrison, J.K. Avants, and M.C. Black | Acute Enantioselective Toxicity of Fipronil and Its Desulfinyl Photoproduct to Ceriodaphnia dubia | Environ. Toxicol. Chem.24(9): 2350-2355 | 2005 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Reproduction | LOEC | 8 | days | 120 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Mortality | LC50 | 2 | days | 17.9 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Konwick,B.J., A.T. Fisk, A.W. Garrison, J.K. Avants, and M.C. Black | Acute Enantioselective Toxicity of Fipronil and Its Desulfinyl Photoproduct to Ceriodaphnia dubia | Environ. Toxicol. Chem.24(9): 2350-2355 | 2005 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Mortality | LC50 | 2 | days | 17.5 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Konwick,B.J., A.T. Fisk, A.W. Garrison, J.K. Avants, and M.C. Black | Acute Enantioselective Toxicity of Fipronil and Its Desulfinyl Photoproduct to Ceriodaphnia dubia | Environ. Toxicol. Chem.24(9): 2350-2355 | 2005 | 2018/03/22 | |||||
甲殻類 | Daphnia magna | Growth | LOEC | 21 | days | 19.5 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
甲殻類 | Daphnia magna | Mortality | LOEC | 21 | days | 27 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Reproduction | LOEC | 8 | days | 15 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Daphnia sp. | Population | LOEC | 10 | days | 50 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stark,J.D., and R.I. Vargas | Toxicity and Hazard Assessment of Fipronil to Daphnia pulex | Ecotoxicol. Environ. Saf.62(1): 11-16 | 2005 | 2018/03/22 | |||||
甲殻類 | Daphnia magna | Growth | NOEC | 21 | days | 9.6 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
甲殻類 | Daphnia sp. Daphnia pulex | Mortality | LC50 | 2 | days | >1500 | nmol ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Chaton,P.F., P. Ravanel, M. Tissut, and J.C. Meyran | Toxicity and Bioaccumulation of Fipronil in the Nontarget Arthropodan Fauna Associated with Subalpine Mosquito Breeding Sites | Ecotoxicol. Environ. Saf.52(1): 8-12 | 2002 | 2018/03/22 | ||||||
甲殻類 | Ceriodaphnia dubia | Reproduction | LOEC | 8 | days | 120 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Daphnia magna | Intoxication | EC50 | 2 | days | >100 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | ||||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LC50 | 4 | days | 0.32 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LC50 | 4 | days | 0.68 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Overmyer,J.P., D.R. Rouse, J.K. Avants, A.W. Garrison, M.E. DeLorenzo, K.W. Chung, P.B. Key, W.A. Wilson, and M.C. Black | Toxicity of Fipronil and Its Enantiomers to Marine and Freshwater Non-Targets | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes42(5): 471-480 | 2007 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LC50 | 4 | days | 0.68 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Key,P.B., K.W. Chung, A.D. Opatkiewicz, E.F. Wirth, and M.H. Fulton | Toxicity of the Insecticides Fipronil and Endosulfan to Selected Life Stages of the Grass Shrimp (Palaemonetes pugio) | Bull. Environ. Contam. Toxicol.70(3): 533-540 | 2003 | 2018/03/22 | |||||
甲殻類 | Palaemonetes sp. Palaemonetes pugio | Mortality | LC50 | 28 | days | 0.357 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wirth,E.F., P.L. Pennington, J.C. Lawton, M.E. DeLorenzo, D. Bearden, B. Shaddrix, S. Sivertsen, and M.H. Fulton | The Effects of the Contemporary-Use Insecticide (Fipronil) in an Estuarine Mesocosm | Environ. Pollut.131(3): 365-371 | 2004 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Mortality | LC50 | 9 | days | 33.3 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Ceriodaphnia dubia | Reproduction | LOEC | 8 | days | 15 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wilson,W.A., B.J. Konwick, A.W. Garrison, J.K. Avants, and M.C. Black | Enantioselective Chronic Toxicity of Fipronil to Ceriodaphnia dubia | Arch. Environ. Contam. Toxicol.54(1): 36-43 | 2008 | 2018/03/22 | |||||
甲殻類 | Mysidopsis bahia | LC50 | 96 | hours | 0.077 | ppb | 3 USEPA Pesticide Ecotoxicity Database | C. Laird | 2000 | 2018/03/02 | |||||||||
甲殻類 | Mysidopsis bahia | LC50 | 96 | hours | 1.5 | ppb | 3 USEPA Pesticide Ecotoxicity Database | C. Laird | 2000 | 2018/03/02 | |||||||||
甲殻類 | Mysidopsis bahia | LC50 | 96 | hours | 0.056 | ppb | 3 USEPA Pesticide Ecotoxicity Database | C. Laird | 2000 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | EC50 | 48 | hours | 29 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | EC50 | 48 | hours | 100 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | EC50 | 48 | hours | 190 | μg/L | 2 日本環境省 農薬登録保留基準(水産動植物) | 環境省 | 水産動植物の被害防止に係る農薬登録保留基準の設定に関する資料 | 2018/03/16 | |||||||||
甲殻類 | Daphnia magna | EC50 | 48 | hours | 190 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
甲殻類 | Mysidopsis bahia | LC50 | 96 | hours | 0.14 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1995 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | EC50 | 48 | hours | >100 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1995 | 2018/03/02 | |||||||||
甲殻類 | Mysidopsis bahia | NOEL | 96 | hours | 0.033 | ppb | 3 USEPA Pesticide Ecotoxicity Database | C. Laird | 2000 | 2018/03/02 | |||||||||
甲殻類 | Mysidopsis bahia | EGGHATCH, SURVIVE, GROWTH | NOEL | 28 | days | <0.005 | ppb | 3 USEPA Pesticide Ecotoxicity Database | N. Federoff | 1995 | 2018/03/02 | ||||||||
甲殻類 | Mysidopsis bahia | LOEC | 28 | days | >0.0075 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkirchen | 2009 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | EGGHATCH, SURVIVE, GROWTH | NOEL | 21 | days | <22 | ppb | 3 USEPA Pesticide Ecotoxicity Database | R. Lazurus | 2016 | 2018/03/02 | ||||||||
甲殻類 | Mysidopsis bahia | LOEC | 28 | days | 0.014 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Ullagaddi | 2009 | 2018/03/02 | |||||||||
甲殻類 | Mysidopsis bahia | NOEL | 28 | days | 0.0075 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkirchen | 2009 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | SURVIVE, GROWTH | NOEL | 21 | days | 41 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 1999 | 2018/03/02 | ||||||||
甲殻類 | Mysidopsis bahia | NOEL | 96 | hours | 0.66 | ppb | 3 USEPA Pesticide Ecotoxicity Database | C. Laird | 2000 | 2018/03/02 | |||||||||
甲殻類 | Mysidopsis bahia | NOEL | 28 | days | <0.014 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Ullagaddi | 2009 | 2018/03/02 | |||||||||
甲殻類 | Mysidopsis bahia | NOEL | 96 | hours | 0.031 | ppb | 3 USEPA Pesticide Ecotoxicity Database | C. Laird | 2000 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | EGGHATCH, SURVIVE, GROWTH | LOEC | 21 | days | 0.22 | ppb | 3 USEPA Pesticide Ecotoxicity Database | R. Lazurus | 2016 | 2018/03/02 | ||||||||
甲殻類 | Mysidopsis bahia | EGGHATCH, SURVIVE, GROWTH | LOEC | 28 | days | 0.005 | ppb | 3 USEPA Pesticide Ecotoxicity Database | N. Federoff | 1995 | 2018/03/02 | ||||||||
甲殻類 | Daphnia magna | SURVIVE, GROWTH | LOEC | 21 | days | 100 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 1999 | 2018/03/02 | ||||||||
甲殻類 | Daphnia magna | NOEL | 48 | hours | <34 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | SURVIVE, GROWTH | LOEC | 21 | days | 19.5 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | ||||||||
甲殻類 | Daphnia magna | NOEL | 48 | hours | <19 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
甲殻類 | Mysidopsis bahia | NOEL | 96 | hours | <0.062 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1995 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | NOEL | 48 | hours | 22 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1995 | 2018/03/02 | |||||||||
甲殻類 | Daphnia magna | SURVIVE, GROWTH | NOEL | 21 | days | 9.6 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | ||||||||
甲殻類 | Daphnia magna | NOEL | 48 | hours | 52 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Mortality | LC50 | 4 | days | 130 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | LOEC | 1 | days | 2 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | LOEC | 1 | days | 4 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Reproduction | LOEC | 32 | days | 0.24 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | LOEC | 1 | days | 2 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | LC50 | 7 | days | 208 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Baird,S., A. Garrison, J. Jones, J. Avants, R. Bringolf, and M. Black | Enantioselective Toxicity and Bioaccumulation of Fipronil in Fathead Minnows (Pimephales promelas) Following Water and Sediment Exposures | Environ. Toxicol. Chem.32(1): 222-227 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 14 | days | 50 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Myroniuk,M.O., and V.O. Arsan | Impact of Fipronil on Content of the Macroergic Compounds in the Carp Tissues | Hydrobiol. J.48(6): 107-110 | 2012 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Reproduction | NOEL | 64 | days | <=0.51 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wirth,E.F., P.L. Pennington, J.C. Lawton, M.E. DeLorenzo, D. Bearden, B. Shaddrix, S. Sivertsen, and M.H. Fulton | The Effects of the Contemporary-Use Insecticide (Fipronil) in an Estuarine Mesocosm | Environ. Pollut.131(3): 365-371 | 2004 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Growth | NOEL | 64 | days | <=0.51 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wirth,E.F., P.L. Pennington, J.C. Lawton, M.E. DeLorenzo, D. Bearden, B. Shaddrix, S. Sivertsen, and M.H. Fulton | The Effects of the Contemporary-Use Insecticide (Fipronil) in an Estuarine Mesocosm | Environ. Pollut.131(3): 365-371 | 2004 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | NOEC | 0.83 | days | 12.5 | μM | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Raftery,T.D., and D.C. Volz | Abamectin Induces Rapid and Reversible Hypoactivity Within Early Zebrafish Embryos | Neurotoxicol. Teratol.49:10-18 | 2015 | 2018/03/22 | |||||
魚類 | Lepomis macrochirus (Bluegill) | Mortality | LC50 | 4 | days | 83 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | LOEC | 0.83 | days | 25 | μM | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Raftery,T.D., and D.C. Volz | Abamectin Induces Rapid and Reversible Hypoactivity Within Early Zebrafish Embryos | Neurotoxicol. Teratol.49:10-18 | 2015 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Growth | NOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Growth | NOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Mortality | NOEC | 0.83 | days | 12.5 | μM | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Raftery,T.D., and D.C. Volz | Abamectin Induces Rapid and Reversible Hypoactivity Within Early Zebrafish Embryos | Neurotoxicol. Teratol.49:10-18 | 2015 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 3 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 3 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 14 | days | 50 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Myroniuk,M.O., and V.O. Arsan | Impact of Fipronil on Content of the Macroergic Compounds in the Carp Tissues | Hydrobiol. J.48(6): 107-110 | 2012 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | NOEC | 1 | days | 20 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Development | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LC50 | 4 | days | >100 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | ||||||
魚類 | Danio rerio (Zebrafish) | Enzyme | NOEC | 1 | days | 2 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | NOEC | 1 | days | 20 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | NOEC | 1 | days | 20 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | NOEC | 1 | days | 20 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | NOEC | 1 | days | 20 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 1 | days | 153 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Impacts of the Phenylpyrazole Insecticide Fipronil on Larval Fish: Time-Series Gene Transcription Responses in Fathead Minnow (Pimephales promelas) Following Short-Term Exposure | Sci. Total Environ.426:160-165 | 2012 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 1 | days | 153 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Impacts of the Phenylpyrazole Insecticide Fipronil on Larval Fish: Time-Series Gene Transcription Responses in Fathead Minnow (Pimephales promelas) Following Short-Term Exposure | Sci. Total Environ.426:160-165 | 2012 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Growth | NOEC | 32 | days | 0.24 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Development | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LOEC | 90 | days | 26 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | LC50 | 1 | days | 398.29 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Genetic | LOEC | 4 | days | 60.3 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,X., S. Zhou, X. Ding, G. Zhu, and J. Guo | Effect of Triazophos, Fipronil and Their Mixture on miRNA Expression in Adult Zebrafish | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes45(7): 648-657 | 2010 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Cellular | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | NOEC | 0.83 | days | 12.5 | μM | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Raftery,T.D., and D.C. Volz | Abamectin Induces Rapid and Reversible Hypoactivity Within Early Zebrafish Embryos | Neurotoxicol. Teratol.49:10-18 | 2015 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Mortality | NOEC | 0.83 | days | 25 | μM | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Raftery,T.D., and D.C. Volz | Abamectin Induces Rapid and Reversible Hypoactivity Within Early Zebrafish Embryos | Neurotoxicol. Teratol.49:10-18 | 2015 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LC50 | 4 | days | 246 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Mortality | LC50 | 1 | days | 220.4 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Reproduction | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Mortality | LC50 | 4 | days | 181 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,X., S. Zhou, X. Ding, G. Zhu, and J. Guo | Effect of Triazophos, Fipronil and Their Mixture on miRNA Expression in Adult Zebrafish | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes45(7): 648-657 | 2010 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Mortality | LC50 | 4 | days | 94.2 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Nillos,M.G., K. Lin, J. Gan, S. Bondarenko, and D. Schlenk | Enantioselectivity in Fipronil Aquatic Toxicity and Degradation | Environ. Toxicol. Chem.28(9): 1825-1833 | 2009 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Mortality | NOEL | 28 | days | <=7.61 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wirth,E.F., P.L. Pennington, J.C. Lawton, M.E. DeLorenzo, D. Bearden, B. Shaddrix, S. Sivertsen, and M.H. Fulton | The Effects of the Contemporary-Use Insecticide (Fipronil) in an Estuarine Mesocosm | Environ. Pollut.131(3): 365-371 | 2004 | 2018/03/22 | |||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Growth | LOEC | 90 | days | 15 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | NOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | NOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Genetic | NOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Morphology | NOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Mortality | LC50 | 4 | days | 428 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Mortality | 4.8 | days | 80 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | ||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Mortality | 28 | days | <=7.61 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wirth,E.F., P.L. Pennington, J.C. Lawton, M.E. DeLorenzo, D. Bearden, B. Shaddrix, S. Sivertsen, and M.H. Fulton | The Effects of the Contemporary-Use Insecticide (Fipronil) in an Estuarine Mesocosm | Environ. Pollut.131(3): 365-371 | 2004 | 2018/03/22 | ||||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 1 | days | 153 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Impacts of the Phenylpyrazole Insecticide Fipronil on Larval Fish: Time-Series Gene Transcription Responses in Fathead Minnow (Pimephales promelas) Following Short-Term Exposure | Sci. Total Environ.426:160-165 | 2012 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Hormone | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Growth | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Growth | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Physiological | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Hormone | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Morphology | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Growth | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Avoidance | LOEC | 5 | days | 100 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stehr,C.M., T.L. Linbo, J.P. Incardona, and N.L. Scholz | The Developmental Neurotoxicity of Fipronil: Notochord Degeneration and Locomotor Defects in Zebrafish Embryos and Larvae | Toxicol. Sci.92(1): 270-278 | 2006 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | LOEC | 1 | days | 153 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Impacts of the Phenylpyrazole Insecticide Fipronil on Larval Fish: Time-Series Gene Transcription Responses in Fathead Minnow (Pimephales promelas) Following Short-Term Exposure | Sci. Total Environ.426:160-165 | 2012 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | LOEC | 4.8 | days | 10 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | LOEC | 4.8 | days | 40 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | |||||
魚類 | Lepomis macrochirus (Bluegill) | Mortality | NOEL | 4 | days | 43 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Genetic | LOEC | 4 | days | 60.3 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,X., S. Zhou, X. Ding, G. Zhu, and J. Guo | Effect of Triazophos, Fipronil and Their Mixture on miRNA Expression in Adult Zebrafish | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes45(7): 648-657 | 2010 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | ||||||
魚類 | Danio rerio (Zebrafish) | Mortality | LOEC | 5 | days | 5000 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stehr,C.M., T.L. Linbo, J.P. Incardona, and N.L. Scholz | The Developmental Neurotoxicity of Fipronil: Notochord Degeneration and Locomotor Defects in Zebrafish Embryos and Larvae | Toxicol. Sci.92(1): 270-278 | 2006 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Mortality | NOEL | 4 | days | <110 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Growth | LOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Mortality | LC50 | 4 | days | 428 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Immunity | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Mortality | LC50 | 4 | days | 665 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Mortality | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Physiological | LOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 14 | days | 50 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Myroniuk,M.O., and V.O. Arsan | Impact of Fipronil on Content of the Macroergic Compounds in the Carp Tissues | Hydrobiol. J.48(6): 107-110 | 2012 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | LOEC | 14 | days | 50 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Myroniuk,M.O., and V.O. Arsan | Impact of Fipronil on Content of the Macroergic Compounds in the Carp Tissues | Hydrobiol. J.48(6): 107-110 | 2012 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Cellular | LOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Growth | LOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Morphology | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Reproduction | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Reproduction | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Biochemical | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Reproduction | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Morphology | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Growth | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Morphology | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Hormone | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Hormone | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | NOEC | 4.8 | days | 80 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | NOEC | 4.8 | days | 80 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | NOEC | 4.8 | days | 80 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | NOEC | 1 | days | 20 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | NOEC | 1 | days | 20 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | NOEC | 1 | days | 20 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | LOEC | 4.8 | days | 40 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Development | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | NOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | 128 | days | 7.68 | μg/g wet wt diet ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Konwick,B.J., A.W. Garrison, M.C. Black, J.K. Avants, and A.T. Fisk | Bioaccumulation, Biotransformation, and Metabolite Formation of Fipronil and Chiral Legacy Pesticides in Rainbow Trout | Environ. Sci. Technol.40(9): 2930-2936 | 2006 | 2018/03/22 | |||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | NOEL | 4 | days | 34 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | NOEL | 4 | days | 36 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Biochemical | NOEC | 128 | days | 7.68 | μg/g wet wt diet ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Konwick,B.J., A.W. Garrison, M.C. Black, J.K. Avants, and A.T. Fisk | Bioaccumulation, Biotransformation, and Metabolite Formation of Fipronil and Chiral Legacy Pesticides in Rainbow Trout | Environ. Sci. Technol.40(9): 2930-2936 | 2006 | 2018/03/22 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Growth | NOEC | 90 | days | 6.6 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Growth | NOEC | 128 | days | 7.68 | μg/g wet wt diet ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Konwick,B.J., A.W. Garrison, M.C. Black, J.K. Avants, and A.T. Fisk | Bioaccumulation, Biotransformation, and Metabolite Formation of Fipronil and Chiral Legacy Pesticides in Rainbow Trout | Environ. Sci. Technol.40(9): 2930-2936 | 2006 | 2018/03/22 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Morphology | NOEC | 128 | days | 7.68 | μg/g wet wt diet ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Konwick,B.J., A.W. Garrison, M.C. Black, J.K. Avants, and A.T. Fisk | Bioaccumulation, Biotransformation, and Metabolite Formation of Fipronil and Chiral Legacy Pesticides in Rainbow Trout | Environ. Sci. Technol.40(9): 2930-2936 | 2006 | 2018/03/22 | ||||||
魚類 | Cyprinus carpio (Carp) | Biochemical | NOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | NOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Cellular | NOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | NOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Morphology | NOEC | 60 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, A.K. Jha, M.S. Akhtar, S.C. Mandal, P. Das, and A.K. Prusty | Supplementation of Microbial Levan in the Diet of Cyprinus carpio Fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil: Effect on Growth and Metabolic Responses | Fish Physiol. Biochem.39:1513-1524 | 2013 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Biochemical | NOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Physiological | NOEC | 14 | days | 100 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Myroniuk,M.O., and V.O. Arsan | Impact of Fipronil on Content of the Macroergic Compounds in the Carp Tissues | Hydrobiol. J.48(6): 107-110 | 2012 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Cellular | LOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Cellular | LOEC | 4 | days | 400 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Qureshi,I.Z., A. Bibi, S. Shahid, and M. Ghazanfar | Exposure to Sub-Acute Doses of Fipronil and Buprofezin in Combination or Alone Induces Biochemical, Hematological, Histopathological and Genotoxic Damage in Common Carp (Cyprinus carpio L.) | Aquat. Toxicol.179:103-114 | 2016 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Development | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinus carpio (Carp) | Enzyme | NOEC | 45 | days | 42.8 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Gupta,S.K., A.K. Pal, N.P. Sahu, N. Saharan, S.C. Mandal, C. Prakash, M.S. Akhtar, and A.K. Prusty | Dietary Microbial Levan Ameliorates Stress and Augments Immunity in Cyprinus carpio fry (Linnaeus, 1758) Exposed to Sublethal Toxicity of Fipronil | Aquac. Res.45:893-906 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Behavior | LOEC | 1 | days | 148 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Avoidance | NOEC | 5 | days | 33 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stehr,C.M., T.L. Linbo, J.P. Incardona, and N.L. Scholz | The Developmental Neurotoxicity of Fipronil: Notochord Degeneration and Locomotor Defects in Zebrafish Embryos and Larvae | Toxicol. Sci.92(1): 270-278 | 2006 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Growth | NOEC | 5 | days | 100 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stehr,C.M., T.L. Linbo, J.P. Incardona, and N.L. Scholz | The Developmental Neurotoxicity of Fipronil: Notochord Degeneration and Locomotor Defects in Zebrafish Embryos and Larvae | Toxicol. Sci.92(1): 270-278 | 2006 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Mortality | NOEC | 5 | days | 1000 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stehr,C.M., T.L. Linbo, J.P. Incardona, and N.L. Scholz | The Developmental Neurotoxicity of Fipronil: Notochord Degeneration and Locomotor Defects in Zebrafish Embryos and Larvae | Toxicol. Sci.92(1): 270-278 | 2006 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 3 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | NOEC | 1 | days | 300 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Behavior | NOEC | 1 | days | 128 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | NOEC | 1 | days | 200 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Growth | LOEL | 64 | days | <=7.61 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wirth,E.F., P.L. Pennington, J.C. Lawton, M.E. DeLorenzo, D. Bearden, B. Shaddrix, S. Sivertsen, and M.H. Fulton | The Effects of the Contemporary-Use Insecticide (Fipronil) in an Estuarine Mesocosm | Environ. Pollut.131(3): 365-371 | 2004 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Mortality | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | LOEC | 1 | days | 350 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Growth | NOEC | 32 | days | <1.6 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | LOEC | 1 | days | 350 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Growth | LOEC | 5 | days | 333 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stehr,C.M., T.L. Linbo, J.P. Incardona, and N.L. Scholz | The Developmental Neurotoxicity of Fipronil: Notochord Degeneration and Locomotor Defects in Zebrafish Embryos and Larvae | Toxicol. Sci.92(1): 270-278 | 2006 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Mortality | LOEC | 32 | days | 22 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | LOEC | 4.8 | days | 10 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | LOEC | 4.8 | days | 10 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Behavior | LOEC | 4.8 | days | 10 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,C., Y. Qian, X. Zhang, F. Chen, Q. Zhang, Z. Li, and M. Zhao | A Metabolomic Study of Fipronil for the Anxiety-Like Behavior in Zebrafish Larvae at Environmentally Relevant Levels | Environ. Pollut.211:252-258 | 2016 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Enzyme | LOEC | 1 | days | 2 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wu,H., C. Gao, Y. Guo, Y. Zhang, J. Zhang, and E. Ma | Acute Toxicity and Sublethal Effects of Fipronil on Detoxification Enzymes in Juvenile Zebrafish (Danio rerio) | Pestic. Biochem. Physiol.115:9-14 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Reproduction | LOEL | 64 | days | <=7.61 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wirth,E.F., P.L. Pennington, J.C. Lawton, M.E. DeLorenzo, D. Bearden, B. Shaddrix, S. Sivertsen, and M.H. Fulton | The Effects of the Contemporary-Use Insecticide (Fipronil) in an Estuarine Mesocosm | Environ. Pollut.131(3): 365-371 | 2004 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 3 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 3 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 1 | days | 153 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Impacts of the Phenylpyrazole Insecticide Fipronil on Larval Fish: Time-Series Gene Transcription Responses in Fathead Minnow (Pimephales promelas) Following Short-Term Exposure | Sci. Total Environ.426:160-165 | 2012 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Reproduction | NOEC | 110 | days | <0.85 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Growth | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 3 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 21 | days | 6.1 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bencic,D.C., D.L. Villeneuve, A.D. Biales, L. Blake, E.J. Durhan, K.M. Jensen, M.D. Kahl, E.A. Makynen, D. Martinovic-We | Effects of the Insecticide Fipronil on Reproductive Endocrinology in the Fathead Minnow | Environ. Toxicol. Chem.32(8): 1828-1834 | 2013 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Genetic | LOEC | 4 | days | 60.3 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,X., S. Zhou, X. Ding, G. Zhu, and J. Guo | Effect of Triazophos, Fipronil and Their Mixture on miRNA Expression in Adult Zebrafish | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes45(7): 648-657 | 2010 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Reproduction | LOEC | 110 | days | 0.85 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Genetic | LOEC | 4 | days | 60.3 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,X., S. Zhou, X. Ding, G. Zhu, and J. Guo | Effect of Triazophos, Fipronil and Their Mixture on miRNA Expression in Adult Zebrafish | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes45(7): 648-657 | 2010 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Genetic | LOEC | 4 | days | 60.3 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Wang,X., S. Zhou, X. Ding, G. Zhu, and J. Guo | Effect of Triazophos, Fipronil and Their Mixture on miRNA Expression in Adult Zebrafish | J. Environ. Sci. Health Part B Pestic. Food Contam. Agric. Wastes45(7): 648-657 | 2010 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Growth | NOEC | 28 | days | 30 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Growth | LOEC | 32 | days | 1.6 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | LC10 | 1 | days | 305.57 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | LC10 | 1 | days | 233.01 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Growth | EC50 | 5 | days | 0.37 | μM | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Stehr,C.M., T.L. Linbo, J.P. Incardona, and N.L. Scholz | The Developmental Neurotoxicity of Fipronil: Notochord Degeneration and Locomotor Defects in Zebrafish Embryos and Larvae | Toxicol. Sci.92(1): 270-278 | 2006 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Behavior | NOEC | 1 | days | 53 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 1 | days | 102 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Impacts of the Phenylpyrazole Insecticide Fipronil on Larval Fish: Time-Series Gene Transcription Responses in Fathead Minnow (Pimephales promelas) Following Short-Term Exposure | Sci. Total Environ.426:160-165 | 2012 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Growth | LOEC | 32 | days | 0.41 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Behavior | LOEC | 1 | days | 142 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Growth | LOEC | 110 | days | 1.7 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | LC50 | 1 | days | 379.47 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Sublethal Toxicity of Commercial Insecticide Formulations and Their Active Ingredients to Larval Fathead Minnow (Pimephales promelas) | Sci. Total Environ.408(16): 3169-3175 | 2010 | 2018/03/22 | |||||
魚類 | Oryzias latipes (Japanese medaka) | Genetic | LOEC | 28 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Sun,L., R. Jin, Z. Peng, Q. Zhou, H. Qian, and Z. Fu | Effects of Trilostane and Fipronil on the Reproductive Axis in an Early Life Stage of the Japanese Medaka (Oryzias latipes) | Ecotoxicology23(6): 1044-1054 | 2014 | 2018/03/22 | |||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | Reproduction | LOEC | 32 | days | 10 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | U.S. Environmental Protection Agency | Pesticide Ecotoxicity Database (Formerly: Environmental Effects Database (EEDB)) | Environmental Fate and Effects Division, U.S.EPA, Washington, D.C.: | 1992 | 2018/03/22 | |||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 1 | days | 153 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Impacts of the Phenylpyrazole Insecticide Fipronil on Larval Fish: Time-Series Gene Transcription Responses in Fathead Minnow (Pimephales promelas) Following Short-Term Exposure | Sci. Total Environ.426:160-165 | 2012 | 2018/03/22 | |||||
魚類 | Danio rerio (Zebrafish) | Mortality | 21 | days | 82 | μg/L | FORMULATION | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Boaru,A., C.I. El Mahdy, and B. Georgescu | The Effect of Fipronil on Some Reproduction Parameters of Zebrafish (Danio rerio) | Aquacult. Aquarium Conserv. Legis.6(2): 71-73 | 2013 | 2018/03/22 | ||||||
魚類 | Pimephales promelas (Fathead minnow) | Genetic | NOEC | 1 | days | 153 | μg/L | ACTIVE INGREDIENT | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Beggel,S., I. Werner, R.E. Connon, and J.P. Geist | Impacts of the Phenylpyrazole Insecticide Fipronil on Larval Fish: Time-Series Gene Transcription Responses in Fathead Minnow (Pimephales promelas) Following Short-Term Exposure | Sci. Total Environ.426:160-165 | 2012 | 2018/03/22 | |||||
魚類 | Lepomis macrochirus (Bluegill) | LC50 | 96 | hours | 83 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
魚類 | Lepomis macrochirus (Bluegill) | LC50 | 96 | hours | 85.2 | μg/L | 2 日本環境省 農薬登録保留基準(水産動植物) | 環境省 | 水産動植物の被害防止に係る農薬登録保留基準の設定に関する資料 | 2018/03/16 | |||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | LC50 | 96 | hours | 248 | μg/L | 2 日本環境省 農薬登録保留基準(水産動植物) | 環境省 | 水産動植物の被害防止に係る農薬登録保留基準の設定に関する資料 | 2018/03/16 | |||||||||
魚類 | Lepomis macrochirus (Bluegill) | LC50 | 96 | hours | 25 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | LC50 | 96 | hours | 246 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
魚類 | Cyprinus carpio (Carp) | LC50 | 96 | hours | 430 | μg/L | 2 日本環境省 農薬登録保留基準(水産動植物) | 環境省 | 水産動植物の被害防止に係る農薬登録保留基準の設定に関する資料 | 2018/03/16 | |||||||||
魚類 | Cyprinus carpio (Carp) | mortality | LC50 | 24 | hours | 0.4 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Cyprinus carpio (Carp) | mortality | LC50 | 96 | hours | 0.43 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Cyprinus carpio (Carp) | mortality | LC50 | 72 | hours | 0.34 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Lepomis macrochirus (Bluegill) | mortality | LC50 | 72 | hours | 0.098 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/26 | ||||||||||
魚類 | Cyprinus carpio (Carp) | NOEC | 96 | hours | 0.073 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | |||||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | mortality | LC100 | 96 | hours | >0.266 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | mortality | LC50 | 96 | hours | 0.248 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | mortality | LC50 | 72 | hours | 0.248 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Lepomis macrochirus (Bluegill) | mortality | LC50 | 24 | hours | 0.199 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/26 | ||||||||||
魚類 | Cyprinus carpio (Carp) | mortality | LC50 | 72 | hours | 0.48 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Lepomis macrochirus (Bluegill) | NOEC | 96 | hours | 0.043 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/26 | |||||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | mortality | LC50 | 24 | hours | >0.266 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | 96 | hours | 0.034 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||||
魚類 | Lepomis macrochirus (Bluegill) | mortality | LC50 | 48 | hours | 0.146 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/26 | ||||||||||
魚類 | Lepomis macrochirus (Bluegill) | mortality | LC100 | 96 | hours | 0.217 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/26 | ||||||||||
魚類 | Lepomis macrochirus (Bluegill) | mortality | LC50 | 96 | hours | 0.085 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/26 | ||||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | mortality | LC50 | 48 | hours | >0.266 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Cyprinus carpio (Carp) | mortality | LC50 | 48 | hours | 0.55 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Cyprinus carpio (Carp) | mortality | LC50 | 24 | hours | 0.62 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Cyprinus carpio (Carp) | mortality | LC50 | 48 | hours | 0.34 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Cyprinus carpio (Carp) | NOEC | 96 | hours | <0.1 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | |||||||||||
魚類 | Cyprinus carpio (Carp) | mortality | LC50 | 96 | hours | 0.34 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Cyprinus carpio (Carp) | mortality | LC100 | 96 | hours | >0.78 | mg/L | 12 ECHA Information on Registered Substances | 2018/01/27 | ||||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | LC50 | 96 | hours | >100 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1995 | 2018/03/02 | |||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | LC50 | 96 | hours | 30.8 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkirchen | 2014 | 2018/03/02 | |||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | LC50 | 96 | hours | 44.3 | ppb | 3 USEPA Pesticide Ecotoxicity Database | Contract draft CEI | 2014 | 2018/03/02 | |||||||||
魚類 | Lepomis macrochirus (Bluegill) | LC50 | 96 | hours | 20 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 2000 | 2018/03/02 | |||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | LC50 | 96 | hours | 39 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | LC50 | 96 | hours | 31 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 2000 | 2018/03/02 | |||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | LC50 | 96 | hours | 130 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1995 | 2018/03/02 | |||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | EGGHATCH, SURVIVE, GROWTH | LOEC | 32 | days | 1.6 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 1999 | 2018/03/02 | ||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | NOEL | 96 | hours | 16.6 | ppb | 3 USEPA Pesticide Ecotoxicity Database | E. Odenkirchen | 2014 | 2018/03/02 | |||||||||
魚類 | Lepomis macrochirus (Bluegill) | NOEL | 96 | hours | 9.6 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 2000 | 2018/03/02 | |||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | NOEL | 96 | hours | 11 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 2000 | 2018/03/02 | |||||||||
魚類 | Lepomis macrochirus (Bluegill) | NOEL | 96 | hours | 43 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | NOEL | 96 | hours | 18 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | GROWTH | LOEC | 34 | days | 5.2 | ppb | 3 USEPA Pesticide Ecotoxicity Database | M. Lowitt | 2016 | 2018/03/02 | ||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | EGGHATCH, GROWTH | NOEL | 32 | days | 0.24 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 1999 | 2018/03/02 | ||||||||
魚類 | Lepomis macrochirus (Bluegill) | NOEL | 96 | hours | 6.7 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | SURVIVE, GROWTH | LOEC | 90 | days | 15 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | ||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | NOEL | 96 | hours | 34 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | |||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | EGGHATCH, SURVIVE, GROWTH | NOEL | 32 | days | <1.6 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 1999 | 2018/03/02 | ||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | NOEL | 96 | hours | <110 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1995 | 2018/03/02 | |||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | GROWTH | NOEL | 34 | days | 2.8 | ppb | 3 USEPA Pesticide Ecotoxicity Database | M. Lowitt | 2016 | 2018/03/02 | ||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | NOEL | 96 | hours | <15 | ppb | 3 USEPA Pesticide Ecotoxicity Database | Contract draft CEI | 2014 | 2018/03/02 | |||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | EGGHATCH, GROWTH | LOEC | 110 | days | 0.85 | ppb | 3 USEPA Pesticide Ecotoxicity Database | C. Hartless | 2001 | 2018/03/02 | ||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | EGGHATCH, GROWTH | NOEL | 110 | days | <0.85 | ppb | 3 USEPA Pesticide Ecotoxicity Database | C. Hartless | 2001 | 2018/03/02 | ||||||||
魚類 | Cyprinodon variegatus (Sheepshead minnow) | EGGHATCH, GROWTH | LOEC | 32 | days | 0.41 | ppb | 3 USEPA Pesticide Ecotoxicity Database | B. Montague | 1999 | 2018/03/02 | ||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | SURVIVE, GROWTH | NOEL | 90 | days | 6.6 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1994 | 2018/03/02 | ||||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | NOEL | 96 | hours | 36 | ppb | 3 USEPA Pesticide Ecotoxicity Database | A. Bryceland | 1995 | 2018/03/02 |