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Study on chemical constituents of herbal formula Er Miao Wan and GC-MS based metabolomics approach to evaluate its therapeutic effects on hyperuricemic rats

机译:草药杂环苗族化学成分及基于GC-MS的代谢组学方法研究其对高尿酸大鼠治疗效果的研究

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Hyperuricemia strongly correlates with an increased risk of the development of gout, and cardiovascular and kidney diseases, etc. Er Miao Wan (EMW) is a classical traditional Chinese medicine (TCM) formula extensively used for the treatment of hyperuricemia and gout. However, the global components and action mechanism of the formula are still unknown. Here, the chemical constituents of EMW extract were identified by ultra-high performance liquid chromatography quadrupole-time-of-flight mass spectrometry (UPLC-Q-TOF/MS) and gas chromatography-mass spectrometry (GC-MS). A total of 24 alkaloids, 15 organic acids, 4 terpenoids, 3 lactones, 3 glycosides, 46 volatile constituents and 3 other compounds were tentatively identified from the EMW extract. Additionally, based on the hyperuricemic rat model induced by long-term high-fructose feed, a GC-MS based metabolomics approach was conducted to holistically assess the mechanism of EMW. Principal component analysis (PCA) and orthogonal partial least squares-discriminant analysis (OPLS-DA) were applied for screening differential metabolites. A total of 21 metabolites that markedly changed in hyperuricemic rats were identified. Further univariate analysis showed that 9 differential metabolites among them were profoundly reversed by EMW intervention. Metabolic pathway analysis revealed that the variations of these metabolites were mainly associated with glycerolipid metabolism, amino acid metabolism, primary bile acid metabolism, taurine and hypotaurine metabolism and purine metabolism. It was inferred that EMW possibly induced its anti-hyperuricemic effect through restoring multiple disturbed pathways to the normal state. This study could assist with elucidating the potential mechanisms of EMW.
机译:heatheticemia强烈地关联,增加了痛风的发展的风险,心血管和肾脏疾病等.ER Miao Wan(EMW)是一种经典的中药(TCM)配方,广泛用于治疗高尿酸血症和痛风。但是,公式的全球部件和动作机制仍然是未知的。这里,通过超高效液相色谱四桥 - 飞行时间质谱(UPLC-Q-TOF / MS)和气相色谱 - 质谱(GC-MS)鉴定EMW提取物的化学成分。总共24个生物碱,15个有机酸,4萜件,3内酯,3糖苷,46个挥发性成分和3种其他化合物从EMW提取物鉴定。另外,基于由长期高果糖饲料诱导的高发性大鼠模型,对基于GC-MS的代谢物方法进行了全面评估了EMW的机制。主要成分分析(PCA)和正交部分最小二乘判别分析(OPLS-DA)用于筛选差分代谢物。鉴定了总共21种显着变化的代谢物。进一步的单变量分析表明,通过EMW干预,它们之间的9个差异代谢物非常逆转。代谢途径分析表明,这些代谢物的变化主要与甘油脂代谢,氨基酸代谢,原发性胆汁代谢,牛磺酸和次乳酮代谢和嘌呤代谢相关有关。推测,EMW可能通过恢复到正常状态的多个干扰途径来诱导其抗高发性效果。本研究可以帮助阐明EMW的潜在机制。

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