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Metabolic fingerprinting to understand therapeutic effects and mechanisms of silybin on acute liver damage in rat

机译:代谢指纹图谱了解水飞蓟宾对大鼠急性肝损伤的治疗作用和机制

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Background:Metabolic fingerprinting is a rapid and noninvasive analysis, representing a powerful approach for the characterization of phenotypes and the distinction of specific metabolic states due to environmental alterations. It has become a valuable analytical approach for the characterization of phenotypes and is the rapidly evolving field of the comprehensive measurement of ideally all endogenous metabolites in bio-samples. Silybin has displayed bright prospects in the prevention and therapy of liver injury, and we had conducted a preliminary exploration on the molecular mechanism of the hepatoprotective effects of silybin. Because the knowledge on the metabolic responses of an acute liver damage rat to the silybin is still scarce, metabolic fingerprinting can provide relevant information on the intrinsic metabolic adjustments.Materials and Methods:Here, the physiological and metabolic changes in the acute liver damage rat were investigated by performing a metabolic analysis. The phenotypic response was assessed by liquid chromatography/mass spectrometry (LC/MS) combined with pattern recognition approaches such as principal components analysis and partial least squares projection to supervised latent structures and discriminant analysis. Multivariate analysis of the data showed trends in scores plots that were related to the concentration of the silybin.Results:Results indicate 10 ions (7 upregulated and 3 downregulated) as differentiating metabolites. Key observations include perturbations of metabolic pathways linked to glutathione metabolism, tryptophan metabolism, cysteine and methionine metabolism, etc., Overall, this investigation illustrates the power of the LC/MS combined with the pattern recognition methods that can engender new insights into silybin affecting on metabolism pathways of an acute liver damage rat.Conclusion:The present study demonstrates that the combination of metabolic fingerprinting with appropriate chemometric analysis is a valuable approach for studying cellular responses to silybin drug and can provide additional insight into the mechanisms.
机译:背景:代谢指纹图谱是一种快速且无创的分析方法,它是表征表型和区分环境变化引起的特定代谢状态的有力方法。它已成为表征表型的有价值的分析方法,并且是生物样品中理想的所有内源性代谢物的综合测量的快速发展领域。水飞蓟宾在预防和治疗肝损伤方面有着广阔的前景,我们已经对水飞蓟宾的保肝作用的分子机制进行了初步探索。由于尚缺乏关于急性肝损伤大鼠对水飞蓟宾的代谢反应的知识,因此代谢指纹图谱可提供有关内在代谢调节的相关信息。材料与方法:在此,急性肝损伤大鼠的生理和代谢变化为通过进行代谢分析进行调查。通过液相色谱/质谱(LC / MS)结合模式识别方法(例如主成分分析和偏最小二乘法投影到监督的潜在结构和判别分析)评估表型反应。数据的多变量分析显示了与水飞蓟宾浓度相关的得分图中的趋势。结果:结果表明,有10种离子(上调了7个离子,下调了3个离子)作为区分代谢物。关键观察包括与谷胱甘肽代谢,色氨酸代谢,半胱氨酸和蛋氨酸代谢等有关的代谢途径的扰动。总体而言,这项研究说明了LC / MS与模式识别方法相结合的能力,可以为影响水飞蓟宾的代谢提供新见解。结论:本研究表明,将代谢指纹图谱与适当的化学计量学分析相结合,是研究细胞对水飞蓟宾药物反应的有价值的方法,并且可以为该机制提供更多的见解。

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