Network pharmacology analysis of Plumbago zeylanica to identify the therapeutic targets and molecular mechanisms involved in ameliorating hemorrhoids

痔疮 药理学 生物信息学 医学 生物 生物化学 外科 基因
作者
Arijit Nandi,Tanzeem Nigar,Anwesha Das,Yadu Nandan Dey
出处
期刊:Journal of Biomolecular Structure & Dynamics [Taylor & Francis]
卷期号:: 1-15 被引量:7
标识
DOI:10.1080/07391102.2023.2280681
摘要

Plumbago zeylanica is an important plant used in the Ayurvedic system of medicine for the treatment of hemorrhoids or piles. Despite its clinical uses, its molecular mechanism, for ameliorating hemorrhoids is not yet explored. Hence, the present study evaluated the plausible molecular mechanisms of P. zeylanica in the treatment of hemorrhoids using network pharmacology and other in silico analysis. Network pharmacology was carried out by protein, GO, and KEGG enrichment analysis. Further ADME/T, molecular docking and dynamics studies of the resultant bioactive compounds of P. zeylanica with the regulated proteins were evaluated. Results of the network pharmacology analysis revealed that the key pathways and plausible molecular mechanisms involved in the treatment effects of P. zeylanica on hemorrhoids are cell migration, proliferation, motility, and apoptosis which are synchronized by cancer, focal adhesion, and by signalling relaxin, Rap1, and calcium pathways which indicates the involvement of angiogenesis and vasodilation which are the characteristic features of hemorrhoids. Further, the molecular docking and dynamics studies revealed that the bio active ingredients of P. zeylanica strongly bind with the key target proteins in the ambiance of hemorrhoids. Hence, the study revealed the mechanism of P. zeylanica in ameliorating hemorrhoids.Communicated by Ramaswamy H. Sarma.Potential mechanisms of treatment of hemorrhoids are related to the processes including cell migration, regulation of cell population proliferation, cell motility, and apoptosis.The molecular docking outcomes reveal that the active ingredients of P. zeylanica bind with the key target proteins, such as PIK3CA, EGFR, PRKCA, VEGFA, MMP-9 and NOS2 in the management of hemorrhoids.Altogether, this study unveils the systemic biological profiles of P. zeylanica.
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