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合成拟除虫菊酯类杀虫剂的手性稳定性

Chiral stability of synthetic pyrethroid insecticides.

作者信息

Liu Weiping, Qin Sujie, Gan Jianying

机构信息

Department of Environmental Sciences, University of California, Riverside, California 92521, USA.

出版信息

J Agric Food Chem. 2005 May 18;53(10):3814-20. doi: 10.1021/jf048425i.

Abstract

Synthetic pyrethroids are chiral compounds consisting of multiple stereoisomers. Evaluation of enantioselectivity in environmental fate and ecotoxicity requires analytical methods that preserve stereoisomer integrity during analysis. In this study, we characterized the stability of stereoisomers from four commonly used pyrethroids, cis-bifenthrin (cis-BF), permethrin (PM), cypermethrin (CP), and cyfluthrin (CF), during gas chromatography (GC) analysis and sample preparation. Stereoisomers of cis-BF and PM were found to be stable, but those of CP and CF were unstable, under heat or in water. Isomer conversion occurred only at the alphaC in CP or CF, causing the analyte stereoisomer to convert to an epimer. At a GC inlet temperature of 260 degrees C, about 9% conversion occurred for CP and CF. In organic solvents and sterile water, stereoisomers of cis-BF and PM were stable, but slow isomer conversion was observed for CP and CF in water at ambient temperature. However, isomer conversion for CP and CF was relatively insignificant (2-3%) when the GC inlet temperature was kept at < or = 180 degrees C or when on-column injection was used. Isomer conversion at the alphaC in water suggests that abiotic processes may also contribute to enantioselectivity observed in the environment for pyrethroids with the asymmetric alphaC.

摘要

合成拟除虫菊酯是由多个立体异构体组成的手性化合物。评估环境归宿和生态毒性中的对映选择性需要在分析过程中保持立体异构体完整性的分析方法。在本研究中,我们表征了四种常用拟除虫菊酯,即顺式联苯菊酯(cis-BF)、氯菊酯(PM)、氯氰菊酯(CP)和氟氯氰菊酯(CF)的立体异构体在气相色谱(GC)分析和样品制备过程中的稳定性。发现顺式-BF和PM的立体异构体在加热或水中是稳定的,但CP和CF的立体异构体不稳定。异构化仅发生在CP或CF的α碳上,导致分析物立体异构体转化为差向异构体。在GC进样口温度为260℃时,CP和CF发生约9%的转化。在有机溶剂和无菌水中,顺式-BF和PM的立体异构体是稳定的,但在环境温度下,在水中观察到CP和CF有缓慢的异构化。然而,当GC进样口温度保持在≤180℃或采用柱上进样时,CP和CF的异构化相对不明显(2-3%)。在水中α碳处的异构化表明,非生物过程也可能导致在环境中观察到的具有不对称α碳的拟除虫菊酯的对映选择性。

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