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手性对映体在大鼠体内的分布、降解和代谢产物形成以及代谢相关基因的转录响应。

Enantioselective Distribution, Degradation, and Metabolite Formation of Myclobutanil and Transcriptional Responses of Metabolic-Related Genes in Rats.

机构信息

Research Center for Eco-Environmental Science , Chinese Academy of Sciences , Shuangqing RD 18 , Beijing 100085 , China.

University of the Chinese Academy of Sciences , Yuquan RD 19 a , Beijing 100049 , China.

出版信息

Environ Sci Technol. 2018 Aug 7;52(15):8830-8837. doi: 10.1021/acs.est.8b01721. Epub 2018 Jul 16.

DOI:10.1021/acs.est.8b01721
PMID:29957933
Abstract

Myclobutanil (MT), a chiral fungicide, can be metabolized enantioselectively in organisms. In this work, the associated absorption, distribution, metabolism and transcriptional responses of MT in rats were determined following a single-dose (10 mg·kg body weight) exposure to rac-, (+)- or (-)-MT. The enantiomer fractions (EFs) were less than 0.5 with time in the liver, kidney, heart, lung, and testis, suggesting preferential enrichment of (-)-MT in these tissues. Furthermore, there was conversion of (+)-form to (-)-form in the liver and kidney after 6 h exposure to enantiopure (+)-MT. Enrichment and degradation of the two enantiomers differed between rac-MT and MT-enantiomers groups, suggesting that MT bioaccumulation is enantiomer-specific. Interestingly, the degradation half-life of MT in the liver with rac-MT treatment was shorter than that with both MT-enantiomer treatments. One reason may be that the gene expression levels of cytochrome P450 1a2 ( cyp1a2) and cyp3a2 genes in livers treated with rac-MT were the highest among the three exposure groups. In addition, a positive correlation between the expression of cyp2e1 and cyp3a2 genes and rac-MT concentration was found in livers exposed to rac-MT. Simultaneously, five chiral metabolites were detected, and the enantiomers of three metabolites, RH-9090, RH-9089, and M2, were separated. The detected enantiomers of (+)-MT metabolites were in complete contrast with those of (-)-MT metabolites. According to the results, a metabolic pathway of MT in male rats was proposed, which included the following five metabolites: RH-9089, RH-9090, RH-9090 Sulfate, M1, and M2. The possible metabolic enzymes were marked in the pathway. The findings of this study provide more specific insights into the enantioselective metabolic mechanism of chiral triazole fungicides.

摘要

克霉唑(MT)是一种手性杀菌剂,在生物体中可以进行对映选择性代谢。在这项工作中,在单次剂量(10mg·kg 体重)暴露于外消旋体、(+)-或(-)-MT 后,测定了 MT 在大鼠体内的吸收、分布、代谢和转录反应。在肝脏、肾脏、心脏、肺和睾丸中,随着时间的推移,对映体分数(EF)小于 0.5,这表明(-)-MT 在这些组织中优先富集。此外,在暴露于对映纯(+)-MT 6 小时后,在肝脏和肾脏中观察到(+)-形式向(-)-形式的转化。 rac-MT 和 MT 对映体组之间两种对映体的富集和降解不同,这表明 MT 的生物积累具有对映体特异性。有趣的是,用 rac-MT 处理时肝脏中 MT 的降解半衰期短于用两种 MT 对映体处理时。一个原因可能是 rac-MT 处理的肝脏中细胞色素 P450 1a2(cyp1a2)和 cyp3a2 基因的表达水平在三个暴露组中最高。此外,在暴露于 rac-MT 的肝脏中发现 cyp2e1 和 cyp3a2 基因的表达与 rac-MT 浓度之间存在正相关。同时,检测到五个手性代谢物,并且分离出三种代谢物 RH-9090、RH-9089 和 M2 的对映异构体。检测到的(+)-MT 代谢物的对映异构体与(-)-MT 代谢物的对映异构体完全相反。根据结果,提出了雄性大鼠 MT 的代谢途径,该途径包括以下五种代谢物:RH-9089、RH-9090、RH-9090 硫酸盐、M1 和 M2。该途径中标记了可能的代谢酶。本研究的结果为手性三唑类杀菌剂的对映选择性代谢机制提供了更具体的见解。

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