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Ecotoxicology of drugs used in fish disease treatment

机译:鱼病治疗药物的生态毒理学

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The fish Hyphessobrycon eques and Piaractus mesopotamicus, the snail Pomacea canaliculata, the aquatic plant Lemna minor and the microcustacean Daphnia magna were selected to evaluate the lethal or effective concentration (LC50/EC50) and the environmental risk of florfenicol (FLO), enrofloxacine (ENR), thiamethoxan (TH) and toltrazuril (TOL). For this, the organisms were acclimated in a bioassay room under controlled temperature and photoperiod, and then exposed to increasing drugs concentrations according to specific standard for each organism. L. minor is the sole organism which showed toxicity to FLO LC50; 48 h of 97.03 mg/L, which causes medium environmental risk. P. canaliculata was more sensible to ENR (14.64 mg/L), which causes high risk to the bioindicators. P. mesopotamicus was more sensible to TH toxicity (16.97 mg/L), which causes high risk also; followed by H. eques. TOL causes medium risk and it is more toxic for P. mesopotamicus (3.72 mg/L), followed by H. eques. L. minor can be used as a bioindicator for florfenicol toxicity, P. canaliculata for enrofloxacine and H. eques for TH and TOL, emphasizing that enrofloxacine and thiamethoxan cause high environmental risk.
机译:选择鱼Hyphessobrycon eques和Piaractus mesopotamicus,蜗牛Pomacea canaliculata,水生植物Lemna minor和小cus鱼Daphnia magna来评估致死或有效浓度(LC50 / EC50)以及氟苯尼考(FLO),恩诺沙星(ENR)的环境风险),噻虫嗪(TH)和托曲唑(TOL)。为此,使生物体在控制温度和光周期的生物分析室中适应环境,然后根据每种生物体的特定标准暴露于递增的药物浓度中。小L.是唯一对FLO LC50表现出毒性的生物。 97.03 mg / L的48小时,造成中等环境风险。 P. canaliculata对ENR(14.64 mg / L)更敏感,这给生物指示剂带来了高风险。美索不达米斯对TH毒性更敏感(16.97 mg / L),这也引起了高风险;其次是H.eques。 TOL引起中等风险,对美索不动杆菌(3.72 mg / L)毒性更大,其次是H. eques。较小的L.可用作氟苯尼考毒性的生物指示剂,P。canaliculata用作恩洛沙星的生物指示剂,H。eques用作TH和TOL的生物指示剂,强调恩诺沙星和噻虫恶草会引起高环境风险。

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