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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Metabolomics study on Fuzi and its processed products using ultra-performance liquid-chromatography/electrospray-ionization synapt high-definition mass spectrometry coupled with pattern recognition analysis
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Metabolomics study on Fuzi and its processed products using ultra-performance liquid-chromatography/electrospray-ionization synapt high-definition mass spectrometry coupled with pattern recognition analysis

机译:超高效液相色谱/电喷雾电离突触高分辨质谱结合模式识别分析富兹及其加工品的代谢组学研究

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摘要

The lateral root of Aconitum carmichaelii Debx is named "Fuzi" which is widely distributed across Asia and North America and has been used to relieve joint pain and treat rheumatic diseases for over two thousand years. However, it has very narrow therapeutic ranges and despite the toxicological risk, its usage remains very high. A traditional Chinese processing approach (Paozhi, detoxifying measure) is necessary to remove the poisonous Aconitum alkaloids mainly deriving from the diester diterpene alkaloids (DDAs) including aconitine, mesaconitine and hypaconitine. They can be decomposed into less or non-toxic derivatives through Paozhi that plays an essential role in detoxification. Processed Fuzi is mainly focused on the three main forms of Yanfuzi (YFZ), Heishunpian (HSP) and Baifupian (BFP) which are highly desirable in order to guarantee the clinical safety and their low toxicity in decoctions. The difference in metabolomic characters between Fuzi and its processed preparations is still completely unclear. Therefore, this paper was designed to investigate a comprehensive metabolome of Fuzi and its processed products by ultra-performance liquid-chromatography/electrospray-ionization synapt high-definition mass spectrometry (UPLC-Q-TOF-HDMS) combined with pattern recognition methods. The difference in metabolic profiles between Fuzi and its processed preparations was well observed by the principal component analysis (PCA) of the MS spectra. Significant changes of 19 metabolite biomarkers were detected in the Fuzi samples and three preparations. The underlying regulations of Paozhi-perturbed metabolic pathways were also discussed according to the identified metabolites. The present study proves that UPLC-Q-TOF-HDMS based metabolomic analysis greatly contributes to the investigation of Fuzi metabolism through Paozhi techniques, and provides useful information to further comprehensively understand the pharmacological activity and potential toxicity of processed Fuzi in a clinical environment.
机译:乌头乌头的侧根被命名为“ Fuzi”,在亚洲和北美广泛分布,已经用于缓解关节疼痛和治疗风湿性疾病已有两千多年的历史了。然而,它的治疗范围非常狭窄,尽管有毒理学风险,其使用仍然很高。要去除有毒的乌头生物碱,这是一种传统的中式加工方法(Paozhi,排毒措施),该乌头生物碱主要来源于乌头碱,中三肉碱和猪笼草碱的二酯二萜生物碱(DDAs)。可以通过排毒将它们分解成毒性较小或无毒的衍生物,而排毒在排毒中起关键作用。加工后的夫子主要集中在烟夫子(YFZ),黑顺片(HSP)和百夫片(BFP)的三种主要形式上,为了保证其临床安全性和汤剂的低毒性,它们是非常理想的。阜子及其加工制剂之间的代谢组学特征差异仍然完全不清楚。因此,本文旨在通过超高效液相色谱/电喷雾电离突触高分辨质谱(UPLC-Q-TOF-HDMS)结合模式识别方法研究伏子及其加工产品的综合代谢组。通过MS光谱的主成分分析(PCA)可以很好地观察到Fuzi及其加工制剂之间的代谢曲线差异。在福滋样品和三种制剂中检测到19种代谢物生物标志物的显着变化。根据鉴定出的代谢产物,还讨论了包脂扰动的代谢途径的基本规律。本研究证明,基于UPLC-Q-TOF-HDMS的代谢组学分析为通过包脂技术对伏子代谢的研究做出了巨大贡献,并为进一步全面了解加工后伏子在临床环境中的药理活性和潜在毒性提供了有用的信息。

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