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手性杀虫剂吡丙醚及其代谢物在斑马鱼(Danio rerio)中的毒性和归宿。

Toxicity and fate of chiral insecticide pyriproxyfen and its metabolites in zebrafish (Danio rerio).

机构信息

Center for Pesticide Research, Department of Applied Chemistry, China Agricultural University, Beijing, 100193, China.

Center for Pesticide Research, Department of Applied Chemistry, China Agricultural University, Beijing, 100193, China.

出版信息

Environ Pollut. 2021 Jul 1;280:116894. doi: 10.1016/j.envpol.2021.116894. Epub 2021 Mar 19.

Abstract

Pyriproxyfen is a juvenile hormone analogue insecticide used worldwide. At present, the potential threat of pyriproxyfen to aquatic organism has not been well explored. In this work, the bioaccumulation, metabolic profile and toxicity of pyriproxyfen and its metabolites to zebrafish were studied, and the enantioselectivity of pyriproxyfen and the major chiral metabolites were also determined. Sixteen metabolites of pyriproxyfen in zebrafish were identified. Hydroxylation, ether linkage cleavage and oxidation in phase I metabolism, followed by sulfate and glucuronic acid conjugation. The bioconcentration factors ranged from 1175 to 1246. Hydroxylation metabolites of pyriproxyfen showed enantioselective behavior in zebrafish with enantiomer fractions (EFs) of 4'-OH- pyriproxyfen and 5″-OH- pyriproxyfen ranged from 0.50 to 0.71. Toxicological indexes including acute toxicity, joint toxicity and oxidative stress were tested. Among all the metabolites, 4'-OH- pyriproxyfen was found 2 folds more toxic to zebrafish than pyriproxyfen. (-)-Pyriproxyfen was found 2 folds more toxic than rac- and (+)-pyriproxyfen. Antagonistic effects were found in binary joint toxicity of pyriproxyfen and its hydroxylated metabolites. Pyriproxyfen and its metabolites also showed oxidative stress damage by inhibiting the activity of CAT and SOD and increasing MDA. This work provided deep insight into the metabolism and the potential risks of pyriproxyfen to aquatic organisms.

摘要

吡丙醚是一种在全球范围内使用的昆虫生长调节剂类杀虫剂。目前,吡丙醚对水生生物的潜在威胁尚未得到充分研究。在这项工作中,研究了吡丙醚及其代谢物对斑马鱼的生物积累、代谢谱和毒性,确定了吡丙醚及其主要手性代谢物的对映体选择性。在斑马鱼中鉴定出 16 种吡丙醚代谢物。在 I 相代谢中,发生了羟化、醚键断裂和氧化,随后进行了硫酸化和葡萄糖醛酸化缀合。生物浓缩因子范围为 1175 至 1246。吡丙醚的羟化代谢物在斑马鱼中表现出对映体选择性,4'-OH-吡丙醚和 5″-OH-吡丙醚的对映体分数(EFs)范围为 0.50 至 0.71。测试了包括急性毒性、联合毒性和氧化应激在内的毒理学指标。在所有代谢物中,4'-OH-吡丙醚对斑马鱼的毒性比吡丙醚高 2 倍。(-)-吡丙醚比 rac-和 (+)-吡丙醚的毒性高 2 倍。在吡丙醚及其羟化代谢物的二元联合毒性中发现了拮抗作用。吡丙醚及其代谢物还通过抑制 CAT 和 SOD 的活性以及增加 MDA 来显示氧化应激损伤。这项工作深入了解了吡丙醚对水生生物的代谢和潜在风险。

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