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高通量代谢组学方法通过液相色谱联用高分辨率质谱揭示了栀子苷对酒精性肝损伤表型药物反应的新机制见解。

High-throughput metabolomics approach reveals new mechanistic insights for drug response of phenotypes of geniposide towards alcohol-induced liver injury by using liquid chromatography coupled to high resolution mass spectrometry.

作者信息

Zhang Tianlei, Zhang Aihua, Qiu Shi, Sun Hui, Han Ying, Guan Yu, Wang Xijun

机构信息

Sino-US Chinmedomics Technology Cooperation Center, National TCM Key Laboratory of Serum Pharmacochemistry, Chinmedomics Research Center of State Administration of TCM, Laboratory of Metabolomics, Heilongjiang University of Chinese Medicine, Heping Road 24, Harbin, China.

出版信息

Mol Biosyst. 2016 Dec 20;13(1):73-82. doi: 10.1039/c6mb00742b.

Abstract

Alcohol-induced liver injury (ALD) shows obvious metabolic disorders, categorized by a wide range of metabolite abnormalities. High-throughput metabolomics technology appears to be an appropriate solution. In this study, a urine metabolic profile was assessed using a UPLC-Q-TOF/HDMS (liquid chromatography coupled to high resolution mass spectrometry) approach to investigate the underlying molecular mechanisms of ALD and the therapeutic effect of geniposide. The endogenous low-molecular-weight metabolites in the mouse model of ALD were observed and 48 specific biomarkers were identified. Geniposide was found to have a regulatory effect on 32 of them. Furthermore, targeted analysis of biomarkers showed clear separation between the model and geniposide treatment group. Fifteen biomarkers with high contribution to group differentiation were screened out. Also, a comprehensive analysis of a significant disturbance of multiple metabolic pathways indicated that geniposide could modify abnormal metabolism due to ethanol exposure, during which disorders relating to amino acid metabolism and the oxidative stress state could be alleviated. At the same time, accessory examinations, including plasma biochemical indicators and liver tissue pathological analysis, showed similar results. It was suggested that geniposide was effective as a hepatoprotective agent against ethanol-induced liver damage by re-balancing a wide range of metabolic disorders.

摘要

酒精性肝损伤(ALD)表现出明显的代谢紊乱,其特征为多种代谢物异常。高通量代谢组学技术似乎是一种合适的解决方案。在本研究中,采用超高效液相色谱-四极杆飞行时间/高分辨质谱(UPLC-Q-TOF/HDMS)方法评估尿液代谢谱,以研究ALD的潜在分子机制以及栀子苷的治疗效果。观察了ALD小鼠模型中的内源性低分子量代谢物,并鉴定出48种特异性生物标志物。发现栀子苷对其中32种具有调节作用。此外,对生物标志物的靶向分析显示模型组和栀子苷治疗组之间有明显分离。筛选出对组间差异贡献较大的15种生物标志物。同时,对多个代谢途径的显著紊乱进行综合分析表明,栀子苷可以改善乙醇暴露引起的异常代谢,在此过程中与氨基酸代谢和氧化应激状态相关的紊乱可以得到缓解。同时,包括血浆生化指标和肝组织病理分析在内的辅助检查也显示了类似结果。提示栀子苷通过重新平衡多种代谢紊乱,对乙醇诱导的肝损伤具有有效的肝保护作用。

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