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A 1H NMR-based metabolomics approach for mechanistic insight into acetaminophen-induced hepatotoxicity.

机译:基于1H NMR的代谢组学方法,可深入了解对乙酰氨基酚引起的肝毒性。

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摘要

The widely used analgesic-antipyretic drug acetaminophen (APAP) is known to cause serious liver necrosis at high doses in man and experimental animals. For studies of toxic processes, 1H NMR spectroscopy of biofluids allows monitoring of endogenous metabolite profiles that alter characteristically in response to changes in physiological status. Herein, a 1H NMR metabolomics approach was applied to the investigation of APAP toxicity in rats and the effect of phenobarbital (PB) on APAP-induced hepatotoxicity. Metabolite differences due to hepatotoxicity were observed in 1H NMR spectra of serum and urine, and enhanced APAP hepatotoxicity by pretreatment with PB was clearly shown by a principal components analysis of the spectral data. NMR spectra of APAP-dosed rat urine provided profiles of APAP-related compounds together with endogenous metabolites. By comparison of endogenous and APAP-related metabolite spectra with those from rats pretreated with PB, it was possible to show the importance of oxidative metabolism of APAP to N-acetyl-p-benzoquinone, an essential step in APAP hepatotoxicity.
机译:已知广泛使用的止痛解热药对乙酰氨基酚(APAP)在人和实验动物中以高剂量引起严重的肝坏死。对于毒性过程的研究,生物流体的1H NMR光谱可以监测内源性代谢产物的概况,这些概况可根据生理状态的变化而发生特征性变化。本文中,将1H NMR代谢组学方法用于研究大鼠APAP毒性以及苯巴比妥(PB)对APAP诱导的肝毒性的影响。在血清和尿液的1H NMR光谱中观察到由于肝毒性引起的代谢物差异,并且通过光谱数据的主成分分析清楚地显示了通过PB预处理而增强的APAP肝毒性。 APAP剂量大鼠尿液的NMR光谱提供了APAP相关化合物以及内源性代谢物的概况。通过将内源性和APAP相关的代谢物谱与用PB预处理的大鼠的谱进行比较,有可能表明APAP氧化代谢对N-乙酰基-对苯醌的重要性,这是APAP肝毒性的重要步骤。

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