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雷公藤红素治疗类风湿关节炎的作用机制:网络药理学分析。

Mechanism of action of celastrol against rheumatoid arthritis: A network pharmacology analysis.

机构信息

Department of Biological Sciences, Xinyang Normal University, Xinyang 464000, China; Institute for Conservation and Utilization of Agro-bioresources in Dabie Mountains, Xinyang 464000, China.

Department of Biological Sciences, Xinyang Normal University, Xinyang 464000, China.

出版信息

Int Immunopharmacol. 2019 Sep;74:105725. doi: 10.1016/j.intimp.2019.105725. Epub 2019 Jul 2.

Abstract

Network pharmacology uses bioinformatics to broaden our understanding of drug actions and thereby to advance drug discovery. Here we apply network pharmacology to generate testable hypotheses about the multi-target mechanism of celastrol against rheumatoid arthritis. We reconstructed drug-target pathways and networks to predict the likely protein targets of celastrol and the main interactions between those targets and the drug. Then we validated our predictions of four candidate targets (IKK-β, JNK, COX-2, MEK1) by performing docking studies with celastrol. The results suggest that celastrol acts against rheumatoid arthritis by regulating the function of several signaling proteins, including MMP-9, COX-2, c-Myc, TGF-β, c-JUN, JAK-1, JAK-3, IKK-β, SYK, MMP-3, JNK and MEK1, which regulate the functions of Th1 and Th2 cells, macrophages, fibroblasts and endothelial cells in rheumatoid arthritis. Celastrol is predicted to affect networks involved mainly in cancer, connective tissue disorders, organismal injury and abnormalities, tissue development, cell death and survival. This network pharmacology strategy may be useful for discovery of multi-target drugs against complex diseases.

摘要

网络药理学运用生物信息学来拓展我们对药物作用的理解,从而推进药物研发。在这里,我们将网络药理学应用于雷公藤红素治疗类风湿关节炎的多靶点机制,以生成可测试的假说。我们重建了药物 - 靶点通路和网络,以预测雷公藤红素的可能蛋白靶点,以及这些靶点与药物之间的主要相互作用。然后,我们通过与雷公藤红素进行对接研究,验证了对四个候选靶点(IKK-β、JNK、COX-2、MEK1)的预测。结果表明,雷公藤红素通过调节包括 MMP-9、COX-2、c-Myc、TGF-β、c-JUN、JAK-1、JAK-3、IKK-β、SYK、MMP-3、JNK 和 MEK1 在内的几种信号蛋白的功能来治疗类风湿关节炎,这些信号蛋白调节类风湿关节炎中 Th1 和 Th2 细胞、巨噬细胞、成纤维细胞和内皮细胞的功能。雷公藤红素预计会影响主要涉及癌症、结缔组织疾病、机体损伤和异常、组织发育、细胞死亡和存活的网络。这种网络药理学策略可能有助于发现针对复杂疾病的多靶点药物。

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