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K Nearest Neighbor Algorithm Coupled with Metabonomics to Study the Therapeutic Mechanism of Sendeng-4 in Adjuvant-Induced Rheumatoid Arthritis Rat

机译:K最近邻算法结合代谢组学研究Sendeng-4在佐剂诱导的类风湿关节炎大鼠中的治疗机制

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摘要

As a traditional Mongolian medicine, Sendeng-4 (SD) has been widely used to treat rheumatoid arthritis (RA) in Inner Mongolia and exhibits a good curative effect. Unfortunately, due to geographical factors, it is difficult to popularize this drug throughout the whole country, and the mechanism of action of SD has been unclear. In this study, a serum metabolite profile analysis was performed to identify potential biomarkers associated with adjuvant-induced RA and investigate the mechanism of action of SD. Ultraperformance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry (UPLC-Q-TOF-MS) was performed for the metabonomics analysis. K nearest neighbor (KNN) models were established in both positive and negative spectra for classifying data from the control, model, and SD administration groups. Accuracy rate for classification was 95.8% in positive ion mode and 91.7% in negative ion mode. Orthogonal partial least squares discriminant analysis (OPLS-DA) enabled the identification of 12 metabolites as potential biomarkers of adjuvant-induced RA. After treatment with SD, the levels of uridine triphosphate, calcitroic acid, dynorphin B (6-9), and docosahexaenoic acid were restored to normal, indicating that SD likely ameliorated RA by regulating the levels of these biomarkers. This study identified early biomarkers of RA and elucidated the underlying mechanism of action of SD, which is worth further investigation for development as a clinical therapy.
机译:森登4号(SD)作为蒙古族传统药物,已在内蒙古被广泛用于治疗类风湿关节炎(RA),具有良好的疗效。不幸的是,由于地理因素,很难在全国范围内推广这种药物,并且SD的作用机理还不清楚。在这项研究中,进行了血清代谢物谱分析,以鉴定与佐剂诱导的RA相关的潜在生物标志物,并研究SD的作用机理。进行了超高效液相色谱与四极杆飞行时间质谱(UPLC-Q-TOF-MS)的代谢组学分析。在正谱和负谱图中都建立了K最近邻(KNN)模型,以对来自对照组,模型组和SD管理组的数据进行分类。阳离子模式下的分类准确率为95.8%,负离子模式下的分类准确率为91.7%。正交偏最小二乘判别分析(OPLS-DA)能够鉴定12种代谢物作为佐剂诱导的RA的潜在生物标记。用SD处理后,尿苷三磷酸,钙磷酸,强啡肽B(6-9)和二十二碳六烯酸的水平恢复到正常水平,表明SD通过调节这些生物标志物的水平可能改善了RA。这项研究确定了RA的早期生物标志物,并阐明了SD的潜在作用机制,这值得进一步研究作为临床疗法的发展。

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