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Assessment of soluble epoxide hydrolase activity in vivo : A metabolomic approach

机译:体内可溶性环氧化物水解酶活性评估:一种代原性方法

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Soluble epoxide hydrolase (sEH) converts several FFA epoxides to corresponding diols. As many as 15 FFA epoxide-diol ratios are measured to infer sEH activity from their ratios. Using previous data, we assessed if individual epoxide-diol ratios all behave similarly to reflect changes in sEH activity, and whether analyzing these ratios together increases the power to detect changes inin-vivosEH activity. We demonstrated that epoxide-diol ratios correlated strongly with each other (P < 0.05), suggesting these ratios all reflect changes in sEH activity. Furthermore, we developed a modeling approach to analyze all epoxide-diol ratios simultaneously to infer global sEH activity, named SAMI (Simultaneous Analysis of Multiple Indices). SAMI improved power in detecting changes in sEH activity in animals and humans when compared to individual ratio estimates. Thus, we introduce a new powerful method to infer sEH activity by combining metabolomic determination and simultaneous analysis of all measurable epoxide-diol pairs.
机译:可溶性环氧化物水解酶(SEH)将几种FFA环氧化转化为相应的二醇。测量多达15个FFA环氧化物 - 二醇比以从比例中介绍SEH活性。使用先前的数据,我们评估了各种环氧化物 - 二醇比例,类似地反映SEH活性的变化,以及分析这些比率是否增加了检测变化的动力,以检测ININ-Vivoseh活动的变化。我们证明环氧化物二醇比彼此强烈相关(P <0.05),表明这些比例均反映了SEH活性的变化。此外,我们开发了一种模拟方法来分析所有环氧化物 - 二醇比以推断出名为SAMI的全球SEH活动(同时分析多个指标)。与个体比率估计相比,SAMI改善了检测动物和人类的SEH活性变化的力量。因此,我们通过组合代谢物测定和同时分析所有可测量的环氧化物二醇对来介绍一种新的强大方法来推断SEH活性。

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