首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Enantioselective metabolism of the chiral herbicide diclofop-methyl and diclofop by HPLC in loach (Misgurnus anguillicaudatus) liver microsomes in vitro
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Enantioselective metabolism of the chiral herbicide diclofop-methyl and diclofop by HPLC in loach (Misgurnus anguillicaudatus) liver microsomes in vitro

机译:高效液相色谱法测定泥some肝脏微粒体中手性除草剂二氯氟虫酸和双氯氟虫的对映选择性代谢

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摘要

An efficient and reliable enantioseparation method by high-performance liquid chromatography (HPLC) for the chiral herbicide diclofop-methyl (DM) and its primary metabolite diclofop (DC) was developed and validated, and the biological process of the enantiomers in loach liver microsomes (LLM) in vitro was investigated. The enantiomers of DM and DC were first separated on an immobilized-type stationary phase of Chiralpak IC. The best resolutions were achieved under the chromatographic condition of nhexane/ IPA/TFA 96:4:0.1(v/v/v) at 20 ?C with each Rs > 2 and the two pairs of enantiomers could be eluted in about 10 min. The extraction recoveries of the analytes from LLM were 79.6-108.9% with RSD ≤ 11.5%. The enzyme kinetics of DM enantiomers were different, with the Km value 320.7 for (S)-DM and 392.1 for (R)-DM. The metabolism experiment in vitro showed DM underwent a rapid phase-I metabolism with or without NADPH, indicating the esterases in liver played a dominant role. No interconversion between the two enantiomers was observed by single-enantiomer incubation. The preferential degradation of (S)-DM was confirmed with the half-time (t_(1/2)) of (S)-DM 5.27 min and 21.2 min for (R)-DM. DC enantiomer was generated by its corresponding ester form and could not be further degraded during the incubation. It was the first study on biotransformation of DM and DC enantiomers in LLM in vitro. The results may help to evaluate the ecological risks of chiral pesticides.
机译:通过高效液相色谱(HPLC)高效,可靠地分离手性除草剂二氯双氯芬(DM)及其主要代谢物双氯双酚(DC)的对映体,并对泥lo肝脏微粒体中对映体的生物学过程进行了验证( LLM)在体外进行了研究。首先在Chiralpak IC的固定型固定相上分离DM和DC的对映体。在正己烷/ IPA / TFA 96:4:0.1(v / v / v)的色谱条件下,于20°C且Rs> 2的情况下,可获得最佳分离度,两对对映体可在约10分钟内洗脱。 LLM中分析物的提取回收率为79.6-108.9%,RSD≤11.5%。 DM对映体的酶动力学不同,(S)-DM的Km值为320.7,(R)-DM的Km值为392.1。体外代谢实验表明,DM在有或没有NADPH的情况下均经历了快速的I期代谢,表明肝脏中的酯酶起着主导作用。通过单对映体孵育未观察到两种对映体之间的相互转化。 (S)-DM的优先降解通过(S)-DM的半衰期(t_(1/2))5.27分钟和(R)-DM的21.2分钟得到确认。 DC对映异构体以其相应的酯形式生成,在孵育过程中无法进一步降解。这是关于DM和DC对映异构体在LLM中体外生物转化的第一项研究。结果可能有助于评估手性农药的生态风险。

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