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Rapid Discovery of the Potential Toxic Compounds in Polygonum multiflorum by UHPLC/Q-Orbitrap-MS-Based Metabolomics and Correlation Analysis

机译:基于UHPLC / Q-Orbitrap-MS的代谢组学和相关分析快速发现何首乌中潜在的有毒化合物

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摘要

The dry roots of Polygonum multiflorum (PM), involving both the raw and processed materials, are widely used as the traditional Chinese medicine for treating various diseases in China. Hepatotoxicity has been occasionally reported in patients who consume PM. Unfortunately, no definite criteria are currently available regarding the processing technology of PM for reduction the toxicity. In this work, we aimed to investigate the variations of PM metabolite profiles induced by different processing technologies by UHPLC/Q-Orbitrap-MS and multivariate statistical analysis, and to discover the potential toxic compounds by correlating the cytotoxicity of L02 cell with the contents of metabolites in raw and processed PM samples. We could identify two potential toxic compounds, emodin-8-O-glucoside and torachrysone-O-hexose, which could be selected as the toxic markers to evaluate different processing methods. The results indicated all processed PM samples could decrease the cytotoxicity on L02 cell. The best processing technology for PM process was to steam PM in black soybean decoction (BD-PM) for 24 h.
机译:何首乌的干根涉及原料和加工原料,在中国被广泛用作治疗各种疾病的中药。食用PM的患者偶尔有肝毒性的报道。不幸的是,目前尚无关于降低颗粒物毒性的确切工艺标准。在这项工作中,我们旨在通过UHPLC / Q-Orbitrap-MS和多变量统计分析研究不同加工技术引起的PM代谢物谱的变化,并通过将L02细胞的细胞毒性与L2的含量相关联来发现潜在的有毒化合物。原始和加工的PM样品中的代谢产物。我们可以鉴定出两种潜在的有毒化合物,大黄素-8-O-葡萄糖苷和torrrysone-O-己糖,可以选择它们作为毒性标记来评估不同的加工方法。结果表明,所有处理过的PM样品均可降低L02细胞的细胞毒性。粉末冶金工艺的最佳加工技术是在黑豆汤(BD-PM)中将粉末冶金蒸24小时。

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