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The study on serum and urine of renal interstitial fibrosis rats induced by unilateral ureteral obstruction based on metabonomics and network analysis methods

机译:基于代谢组学和网络分析方法的单侧输尿管阻塞致肾间质纤维化大鼠血清和尿液的研究

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摘要

Transmission of biological information is a biochemical process of multistep cascade from genes/proteins to metabolites. However, because most metabolites reflect the terminal information of the biochemical process, it is difficult to describe the transmission process of disease information in terms of the metabolomics strategy. In this paper, by incorporating network and metabolomics methods, an integrated approach was proposed to systematically investigate and explain the molecular mechanism of renal interstitial fibrosis. Through analysis of the network, the cascade transmission process of disease information starting from genes/proteins to metabolites was putatively identified and uncovered. The results indicated that renal fibrosis was involved in metabolic pathways of glycerophospholipid metabolism, biosynthesis of unsaturated fatty acids and arachidonic acid metabolism, riboflavin metabolism, tyrosine metabolism, and sphingolipid metabolism. These pathways involve kidney disease genes such as TGF-beta 1 and P2RX7. Our results showed that combining metabolomics and network analysis can provide new strategies and ideas for the interpretation of pathogenesis of disease with full consideration of "gene-protein-metabolite.".
机译:生物信息的传递是从基因/蛋白质到代谢产物的多级串联的生化过程。但是,由于大多数代谢物反映了生化过程的最终信息,因此很难根据代谢组学策略来描述疾病信息的传播过程。本文通过结合网络和代谢组学方法,提出了一种综合方法来系统地研究和解释肾脏间质纤维化的分子机制。通过网络分析,从基因/蛋白质到代谢产物的疾病信息的级联传播过程被推定并发现。结果表明肾纤维化参与了甘油磷脂代谢,不饱和脂肪酸的生物合成和花生四烯酸代谢,核黄素代谢,酪氨酸代谢和鞘脂代谢的代谢途径。这些途径涉及肾脏疾病基因,例如TGF-beta 1和P2RX7。我们的研究结果表明,结合“基因-蛋白质-代谢物”,将代谢组学和网络分析相结合可以为解释疾病的发病机理提供新的策略和思路。

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