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Functional metabolomics discover pentose and glucuronate interconversion pathways as promising targets for Yang Huang syndrome treatment with Yinchenhao Tang

机译:功能代谢组学发现戊糖和葡糖醛酸的相互转化途径是银杏hao唐治疗杨黄综合征的有希望的目标

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Yinchenhao Tang (YCHT), a classic traditional Chinese medicine (TCM) formulae, plays an important role in the treatment of Yang Huang syndrome (YHS). With the emergence of new biomarkers of YHS uncovered via metabonomics, the underlying functional mechanisms are still not clear. Functional metabolomics aims at converting biomarkers derived from metabonomics into disease mechanisms. Here, an integrated non-target metabolomics and IPA strategy were used to investigate the YCHT intervention on YHS. Our metabolomics study has shown that the potential protective effect of YCHT on YHS mice leads to significant changes in the metabolic profile by modulating the biomarkers and regulating the metabolic disorders. Twenty two differential metabolite biomarkers and fifteen involved metabolic pathways were correlated with the regulation of YCHT treatment on YHS. Functional metabolomics identified a core biomarker, D -glucuronic acid in pentose and glucuronate interconversion pathways, which was directly related to the target prediction of UDP-glucuronosyltransferase 1A1 and eventually leaded to a series of disturbances. In conclusion, this study shows that functional metabolomics can discover metabolic pathways as promising targets.
机译:银杏好汤(YCHT)是一种经典的传统中药(TCM)配方,在阳黄综合征(YHS)的治疗中起着重要作用。随着通过代谢组学发现新的YHS生物标志物,其潜在的功能机制仍不清楚。功能代谢组学旨在将源自代谢组学的生物标志物转化为疾病机制。在这里,使用集成的非目标代谢组学和IPA策略来研究YCHT对YHS的干预。我们的代谢组学研究表明,YCHT对YHS小鼠的潜在保护作用可通过调节生物标志物和调节代谢紊乱,导致代谢谱发生重大变化。 22种差异代谢物生物标志物和15种参与的代谢途径与YCHT治疗对YHS的调节有关。功能代谢组学确定了戊糖和葡萄糖醛酸酯相互转换途径中的核心生物标志物D-葡萄糖醛酸,这与UDP-葡萄糖醛酸转移酶1A1的目标预测直接相关,并最终导致了一系列干扰。总之,这项研究表明功能代谢组学可以发现代谢途径作为有希望的靶标。

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