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Comparing the antidiabetic effects and chemical profiles of raw and fermented Chinese Ge-Gen-Qin-Lian decoction by integrating untargeted metabolomics and targeted analysis

机译:通过整合非靶向代谢组学和靶向分析比较生葛根秦连未发酵汤的抗糖尿病作用和化学特征

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Microbial fermentation has been widely applied in traditional Chinese medicine (TCM) for thousands of years in China. Various beneficial effects of fermentation for applications in TCM or herbals have been reported, such as enhanced anti-ovarian cancer, antioxidative activity, and neuroprotective effects. Ge-Gen-Qin-Lian decoction (GQD), a classic TCM formula, has been used to treat type 2 diabetes mellitus in China. In this study, GQD was fermented with Saccharomyces cerevisiae, and the antidiabetic activities and overall chemical profiles of raw and fermented GQD (FGQD) were systematically compared. First, the antidiabetic effects of GQD and FGQD on high-fat diet and streptozotocin (STZ)-induced diabetic rats were compared. Then, high-performance liquid chromatography Q Exactive MS was applied for rapid characterization of the chemical components of GQD. Additionally, we proposed an integrated chromatographic technique based untargeted metabolomics identifying differential chemical markers between GQD and FGQD and targeted analysis determining the fermenting-induced quantitative variation tendencies of chemical marker strategy for overall chemical profiling of raw and fermented GQD. Both GQD and FGQD displayed effects against HFD and STZ-induced diabetes, and FGQD showed a better recovery trend associated with profound changes in the serum lipoprotein profile and body weight gain. In addition, 133 compounds were characterized from GQD. It was demonstrated that the integrated strategy holistically illuminated 30 chemical markers contributed to the separation of GQD and FGQD, and further elucidated the fermenting-induced chemical transformation mechanisms and inherent chemical connections of secondary metabolites. Although there were no new secondary metabolites in FGQD compared with GQD, the amounts of secondary metabolites, which were mostly deglycosylated, were redistributed in FGQD. The anti-diabetic activities of GQD could be improved by applying fermentation technology. Moreover, the proposed strategy could serve as a powerful tool for systematically exploring the chemical profiles of raw and fermented formulas.
机译:微生物发酵已在中国广泛应用于中医药(TCM)中数千年。已经报道了发酵在中药或草药中的各种有益作用,例如增强的抗卵巢癌,抗氧化活性和神经保护作用。葛根秦联汤(GQD)是一种经典的中药配方,已在中国用于治疗2型糖尿病。在这项研究中,GQD用啤酒酵母进行发酵,并且系统地比较了原始和发酵GQD(FGQD)的抗糖尿病活性和总体化学特征。首先,比较了GQD和FGQD对高脂饮食和链脲佐菌素(STZ)诱导的糖尿病大鼠的抗糖尿病作用。然后,采用高效液相色谱仪Q Exactive MS快速表征GQD的化学成分。此外,我们提出了一种基于色谱分析的非目标代谢组学技术,该技术可识别GQD和FGQD之间的差异化学标记物,并进行目标分析,确定发酵诱导的化学标记物策略的定量变化趋势,从而对原始和发酵GQD进行整体化学分析。 GQD和FGQD均显示出抗HFD和STZ诱导的糖尿病的作用,FGQD显示出更好的恢复趋势,与血清脂蛋白谱和体重增加的深刻变化相关。此外,从GQD中鉴定出133种化合物。结果表明,该综合策略从整体上阐明了30种化学标记,有助于GQD和FGQD的分离,并进一步阐明了发酵诱导的化学转化机理和次生代谢物的固有化学联系。尽管与GQD相比,FGQD中没有新的次要代谢产物,但大部分被去糖基化的次生代谢产物的量却重新分配到FGQD中。应用发酵技术可以提高GQD的抗糖尿病活性。此外,所提出的策略可以作为系统地探索原料和发酵配方的化学特征的有力工具。

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