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首页> 外文期刊>Analytical and Bioanalytical Chemistry >A combination of metabolomics and metallomics studies of urine and serum from hypercholesterolaemic rats after berberine injection
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A combination of metabolomics and metallomics studies of urine and serum from hypercholesterolaemic rats after berberine injection

机译:小ber碱注射后高胆固醇血症大鼠尿液和血清代谢组学和组学研究的结合

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摘要

Berberine, long used as a remedy in China and India for intestinal infections, has been discovered in recent years in western countries and is now being used to treat ailments ranging from urinary tract infections to diabetes and obesity. In order to study the effect of berberine more deeply, a combined metabolomic and metallomic approach was developed in this study using the hypercholesterolaemic rat model, which involved the use of proton nuclear magnetic resonance for the analysis of rat urine to achieve metabolic fingerprinting and inductively coupled plasma mass spectrometry for the analysis of rat blood serum to achieve metallomic fingerprinting. The results obtained indicated that major metabolic processes like Krebs cycle, cholesterol metabolism and osmoregulation in hypercholesterolaemic rats are perturbed upon berberine injection. In addition, the changes of some elements, such as V, Mn, Na and K, revealed in the metallomic study may contribute to the search of new biomarkers for hypercholesterolaemic disease. We concluded that both the metabolomic and metallomic profiles of berberine-treated hypercholesterolaemic rats were different from those of the control group and that the selected metabolites and elements could probably be applied as potential biomarkers for the understanding of the effect of berberine on biochemical process in the animal model. Such a multi-analytical approach will potentially provide an information-rich platform for the elucidation of effects of xenobiotics and drug efficacy studies.
机译:小ber碱在中国和印度长期用作肠道感染的治疗方法,近年来在西方国家被发现,如今被用于治疗从尿路感染到糖尿病和肥胖症的各种疾病。为了更深入地研究小ber碱的作用,本研究使用高胆固醇血症大鼠模型开发了一种代谢组学和金属组学相结合的方法,该方法涉及使用质子核磁共振对大鼠尿液进行分析以实现代谢指纹识别和感应耦合血浆质谱分析大鼠血清以实现金属指纹图谱。获得的结果表明,注射小ber碱会干扰高胆固醇血症大鼠的主要代谢过程,如克雷布斯循环,胆固醇代谢和渗透调节。此外,在金属研究中发现的某些元素(例如V,Mn,Na和K)的变化可能有助于寻找高胆固醇血症疾病的新生物标志物。我们的结论是,小ine碱治疗的高胆固醇血症大鼠的代谢组学和金属组学特征均与对照组不同,所选的代谢物和元素可能可作为潜在的生物标记物,以了解小ber碱对动物体内生化过程的影响。动物模型。这种多分析方法将可能为阐明异生物素的作用和药物功效研究提供一个信息丰富的平台。

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