首页> 外文期刊>Environmental toxicology and chemistry >Addition of Phenylmethylsulfonyl Fluoride Increases the Working Lifetime of the Trout Liver S9 Substrate Depletion Assay, Resulting in Improved Detection of Low Intrinsic Clearance Rates
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Addition of Phenylmethylsulfonyl Fluoride Increases the Working Lifetime of the Trout Liver S9 Substrate Depletion Assay, Resulting in Improved Detection of Low Intrinsic Clearance Rates

机译:氟烷基甲基磺酰基的添加增加了鳟鱼肝S9衬底耗尽测定的工作寿命,从而改善了低固有间隙率的检测

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The activity of a trout liver S9 substrate depletion assay has been shown to decline over time, presumably due to proteolytic degradation of biotransformation enzymes. To address this problem, assay performance was evaluated following the addition of phenylmethylsulfonyl fluoride (PMSF) or a general-purpose protease inhibitor cocktail to liver homogenization buffers and/or S9 reaction mixtures. Addition of PMSF to liver homogenization buffers and/or S9 reaction mixtures had little or no effect on clearance of phenanthrene, a model cytochrome P450 substrate, in short-term (25 or 30 min) depletion experiments but resulted in significant improvements in retention of this initial activity over time. The protease inhibitor cocktail strongly inhibited initial activity when added to homogenization buffers or reaction mixtures. Taking into consideration potential effects on liver carboxylesterases, the treatment approach determined to be optimal was addition of 10 mu M PMSF to the S9 reaction mixture. Addition of 10 mu M PMSF to the mixture resulted in significantly higher rates of phenanthrene clearance in 2-h incubations relative to those obtained in the absence of PMSF and a 6-fold increase in the working lifetime of the preparation. The results of a statistical power analysis suggest that by increasing the working lifetime of the assay, addition of PMSF to the reaction mixture could result in substantially improved detection of low in vitro clearance rates when compared to current practice. These findings demonstrate the value of adding PMSF to the trout S9 preparation and may have broad implications for use of this assay to support chemical bioaccumulation assessments for fish. Environ Toxicol Chem 2020;00:1-14. (c) 2020 SETAC. This article has been contributed to by US Government employees and their work is in the public domain in the USA.
机译:已经显示出鳟鱼肝S9衬底耗尽测定的活性随着时间的推移而下降,可能是由于生物转化酶的蛋白水解降解。为了解决该问题,通过向肝均匀化缓冲剂和/或S9反应混合物加入苯基甲基磺酰基(PMSF)或通用蛋白酶抑制剂鸡尾酒和/或S9反应混合物后评估测定性能。向肝均匀化缓冲剂和/或S9反应混合物的加入PMSF对菲丙烯的间隙,一种模型细胞色素P450底物,短期(25或30分钟)耗尽实验几乎没有影响,但导致保留这一点显着改善初步活动随着时间的推移。当加入均质化缓冲剂或反应混合物时,蛋白酶抑制剂鸡尾酒在加入均匀化缓冲剂或反应混合物时强烈抑制初始活性。考虑到对肝脏羧基酶的潜在影响,确定为最佳的处理方法是加入10μMPMSF至S9反应混合物。向混合物中加入10μMPMSF导致相对于在没有PMSF的不存在下获得的那些,在2-H温育中的菲丙烯清除率明显较高,并在制剂的工作寿命中增加6倍。统计功率分析的结果表明,通过增加测定的工作寿命,与当前实践相比,将PMSF加入到反应混合物中可能导致对低体外间隙率的检测。这些研究结果证明将PMSF添加到鳟鱼S9制剂的价值,并且可能对使用该测定来支持鱼类的化学生物累积评估。环境毒素化学2020; 00:1-14。 (c)2020 setac。本文已被美国政府员工捐款,他们的工作是美国的公共领域。

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