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几种细胞色素P450生物标志物在突显有机磷酸酯农药暴露方面的效率

Efficiency of Several Cytochrome P450 Biomarkers in Highlighting the Exposure of to an Organophosphate Pesticide.

作者信息

Melo de Almeida Elodie, Tisserand Floriane, Faria Micaela, Chèvre Nathalie

机构信息

IDYST, Faculty of Geosciences and Environments, University of Lausanne, 1015 Lausanne, Switzerland.

School of Biology, Faculty of Biology and Medicine, University of Lausanne, 1015 Lausanne, Switzerland.

出版信息

Toxics. 2022 Aug 17;10(8):482. doi: 10.3390/toxics10080482.

Abstract

The cytochromes P450 (CYP450) represent a major enzyme family operating mostly in the first step of xenobiotic detoxification in aquatic organisms. The ability to measure these CYP450 enzymes' activities provides a crucial tool to understand organisms' response to chemical stressors. However, research on CYP450 activity measurement is still limited and has had variable success. In the present study, we optimize, compile, and compare existing scientific information and techniques for a series of CYP450 biomarkers (EROD, MROD, ECOD, APND, and ERND) used on . Additionally, we explored these CYP450 biomarkers' activities through the first 5 days of life of daphnids, providing a link between their age and sensitivity to chemicals. In the experiment, daphnids were exposed to an organophosphate pesticide (diazinon) from birth to measure the molecular response of the detoxification process. Our results suggest EROD as the most applicable biomarker for organisms such as , with a higher organophosphate detoxification rate in daphnids that are 2 and 5 days old. Additionally, a larger body size allowed a more accurate EROD measurement; hence, we emphasize the use of 5-day-old daphnids when analyzing their detoxification response.

摘要

细胞色素P450(CYP450)是一个主要的酶家族,在水生生物对外源生物解毒的第一步中发挥着主要作用。测量这些CYP450酶活性的能力为了解生物体对化学应激源的反应提供了一个关键工具。然而,关于CYP450活性测量的研究仍然有限,并且取得的成功参差不齐。在本研究中,我们优化、汇编并比较了用于一系列CYP450生物标志物(EROD、MROD、ECOD、APND和ERND)的现有科学信息和技术。此外,我们在水蚤生命的前5天探究了这些CYP450生物标志物的活性,建立了它们的年龄与对化学物质敏感性之间的联系。在实验中,水蚤从出生起就接触一种有机磷农药(二嗪农),以测量解毒过程的分子反应。我们的结果表明,EROD是最适用于水蚤等生物的生物标志物,2日龄和5日龄水蚤对有机磷的解毒率更高。此外,体型较大能使EROD测量更准确;因此,我们强调在分析水蚤的解毒反应时使用5日龄水蚤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4661/9416226/3ea34ec663d7/toxics-10-00482-g0A1.jpg

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