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美丽青霉 ATCC36112 对双酚 A 及其卤代类似物的生物降解作用。

Biodegradation of bisphenol A and its halogenated analogues by Cunninghamella elegans ATCC36112.

机构信息

Department of Agricultural Biotechnology, Seoul National University, Gwanak-Gu, Seoul, Republic of Korea.

出版信息

Biodegradation. 2010 Nov;21(6):989-97. doi: 10.1007/s10532-010-9358-8. Epub 2010 May 9.

Abstract

Bisphenol A and its halogenated analogues are commonly used industrial chemicals with strong toxicological effects over many organisms. In this study, metabolic fate of bisphenol A and its halogenated analogues were evaluated with Cunninghamella elegans ATCC36112. Bisphenol A and related analogues were rapidly transformed into several metabolites by C. elegans within 2-4 days. Detailed analysis of metabolites reveals that both phase I and II metabolism occurred in C. elegans. Cytochrome P450-dependent hydroxylation was observed in BPA. However, major reaction with bisphenol A and analogues with 1-2 halogen atoms were the formation of glucose-conjugate, not being inhibited by cytochrome P450 inhibitor. Overall metabolic rates decreased with increasing number of substitution at 2- and 6-position of BPA structures, which may be consequences of limited bioavailability or steric hindrance to conjugate-forming reaction. Information from the current study will provide detailed insights over the fungal metabolism of BPA and analogues.

摘要

双酚 A 及其卤代类似物是常用的工业化学品,对许多生物体具有强烈的毒理学效应。在这项研究中,利用卷枝毛霉 ATCC36112 评估了双酚 A 及其卤代类似物的代谢命运。双酚 A 和相关类似物在 2-4 天内被 C. elegans 迅速转化为几种代谢物。对代谢物的详细分析表明,双酚 A 和类似物在 C. elegans 中同时发生了 I 相和 II 相代谢。观察到细胞色素 P450 依赖性羟化作用发生在 BPA 中。然而,与双酚 A 和具有 1-2 个卤素原子的类似物的主要反应是形成葡萄糖缀合物,而不是被细胞色素 P450 抑制剂抑制。随着 BPA 结构中 2-位和 6-位取代基数量的增加,总体代谢速率降低,这可能是生物利用度有限或对形成缀合物的反应的空间位阻的结果。本研究的信息将提供关于真菌代谢双酚 A 和类似物的详细见解。

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