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撤稿文章:一种高通量代谢组学策略,用于发现华鲜胶囊差异代谢物及代谢途径对脓毒症相关气虚血瘀证的影响

Retracted Article: A high-throughput metabolomics strategy for discovering the influence of differential metabolites and metabolic pathways of huaxian capsules on sepsis-associated Qi deficiency and blood stasis syndrome.

作者信息

Liang Qun, Liu Han, Li Xiu-Li, Sun Pei-Yang, Yang Yang, Du Chunpeng

机构信息

ICU Center, First Affiliated Hospital, School of Pharmacy, Heilongjiang University of Chinese Medicine Heping Road 24 Xiangfang District Harbin 150040 China

Simon Fraser University (SFU) Burnaby British Columbia Canada.

出版信息

RSC Adv. 2019 Sep 30;9(53):30868-30878. doi: 10.1039/c9ra06679a. eCollection 2019 Sep 26.

Abstract

High-throughput metabolomics can be used to investigate the therapeutic targets and metabolic mechanisms of traditional Chinese medicine (TCM) formulae, which have multiple targets in disease therapy, but it is a great challenge to explore their mechanism of action. Huaxian capsule (HXC) is a classical formula in TCM that has therapeutic effects on a sepsis-associated Qi deficiency and blood stasis syndrome (SQBS). However, its targets and metabolic mechanisms need more investigation. To investigate the therapeutic effects of HXC in the treatment of SQBS and elucidate the potential mechanism, we used a high-throughput metabolomics strategy based on the ultraperformance liquid chromatography/mass spectrometry combined with chemometrics to analyze and identify differential metabolites and pathways. The pathological examination of organs and biochemical indices was also performed to verify the successful establishment of the rat model and protective effects of HXC. Pathological symptoms and biochemical indicators of SQBS rats were reversed by the HXC treatment. A total of 24 potential biomarkers were identified to indicate the difference between the control and model groups; they were closely associated with ten metabolic pathways and regulated by the HXC administration. From the pathway analysis, we further understood the protective activity of HXC against SQBS, which affected amino acid metabolism, molecular transport, small molecule biochemistry and cell signaling as well as vitamin and mineral metabolism. In conclusion, HXC protects against SQBS by modulating the metabolic biomarkers and functional pathways.

摘要

高通量代谢组学可用于研究中药方剂的治疗靶点和代谢机制,中药方剂在疾病治疗中有多个靶点,但探索其作用机制具有很大挑战。化纤胶囊(HXC)是一种经典的中药方剂,对脓毒症相关的气虚血瘀证(SQBS)具有治疗作用。然而,其靶点和代谢机制尚需更多研究。为了研究HXC对SQBS的治疗作用并阐明其潜在机制,我们采用了基于超高效液相色谱/质谱联用化学计量学的高通量代谢组学策略,以分析和鉴定差异代谢物及代谢途径。还进行了器官病理检查和生化指标检测,以验证大鼠模型的成功建立及HXC的保护作用。HXC治疗可逆转SQBS大鼠的病理症状和生化指标。共鉴定出24种潜在生物标志物,以表明对照组和模型组之间的差异;它们与十种代谢途径密切相关,并受HXC给药的调节。通过途径分析,我们进一步了解了HXC对SQBS的保护活性,其影响氨基酸代谢、分子转运、小分子生物化学和细胞信号传导以及维生素和矿物质代谢。总之,HXC通过调节代谢生物标志物和功能途径来预防SQBS。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f77/9072202/d5ed1a880d54/c9ra06679a-f1.jpg

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