基于网络药理学和分子对接方法的丙油碱治疗肺动脉高压的作用机制研究。

IF 1.1 4区 医学 Q4 CARDIAC & CARDIOVASCULAR SYSTEMS
Herz Pub Date : 2025-03-07 DOI:10.1007/s00059-025-05295-0
Yanrong Wang, Baolan Yan, Pengsheng Ma, Ru Zhou, Fang Zhao
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引用次数: 0

摘要

背景:肺动脉高压是一种严重的肺血管疾病,其特点是死亡率高,治疗费用高,迫切需要探索中药作为肺动脉高压的潜在治疗策略。本研究旨在通过网络药理学和分子对接的方法,探讨蛇麻碱治疗多环芳烃的潜在机制。方法:采用Swiss Target Prediction数据库预测aloperine的分子靶标,利用Cytoscape构建“活性组分-靶标”网络。通过GeneCards和OMIM数据库确定疾病相关靶点,并与药物靶点交叉参考,以确定aloperine治疗PAH的有效靶点。利用STRING数据库进行蛋白-蛋白相互作用(PPI)分析。此外,通过metscape平台进行基因本体(GO)和京都基因与基因组百科全书(KEGG)途径分析。结果:经筛选,确定了42个aloperine的分子靶点,1264个疾病相关靶点,以及23个aloperine治疗PAH的有效靶点。PPI分析显示,aloperine靶向SLC6A2, ADRA1B, CYP2D6, CCR5和JAK2,这些都在PAH中发挥治疗作用。GO和KEGG通路分析确定了相关的生物学功能,如膜筏组织、G蛋白偶联胺受体活性和管径调节,以及包括神经活性配体-受体相互作用、cGMP-PKG信号通路、钙信号通路和血管平滑肌收缩在内的10条通路。分子对接结果证实了aloperine与其关键靶点之间的相互作用,aloperine与核心靶点ADRA1A之间具有较高的对接亲和力。结论:网络药理学分析表明,aloperine对PAH的治疗作用主要是通过多靶点、多通路机制发挥的,为PAH的治疗提供了新的方向和基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanism of action of aloperine in the treatment of pulmonary arterial hypertension based on network pharmacology and molecular docking methods.

Background: Pulmonary arterial hypertension is a severe pulmonary vascular disease, marked by high mortality and substantial treatment costs, underscoring the urgent need for the exploration of traditional Chinese medicine as a potential therapeutic strategy for pulmonary hypertension. This study aimed to investigate the underlying mechanisms of aloperine in treating PAH through network pharmacology and molecular docking approaches.

Methods: The Swiss Target Prediction database was employed to predict molecular targets of aloperine, while Cytoscape was used to construct the "active component-target" network. Disease-associated targets were identified through the GeneCards and OMIM databases and cross-referenced with drug targets to determine effective targets of aloperine for PAH treatment. Analysis of protein-protein interaction (PPI) was conducted using the STRING database. Furthermore, gene ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analyses were carried out via the Metascape platform.

Results: Following screening, 42 molecular targets of aloperine, 1264 disease-related targets, and 23 effective targets of aloperine in treating PAH were identified. The PPI analysis revealed that aloperine targets SLC6A2, ADRA1B, CYP2D6, CCR5, and JAK2, all of which play a therapeutic role in PAH. The GO and KEGG pathway analyses identified relevant biological functions, such as membrane raft organization, G protein-coupled amine receptor activity, and regulation of tube diameter, as well as ten pathways including neuroactive ligand-receptor interaction, the cGMP-PKG signaling pathway, calcium signaling, and vascular smooth muscle contraction. Molecular docking results confirmed the interaction between aloperine and its key targets, with a high docking affinity observed between aloperine and the core target ADRA1A.

Conclusion: Network pharmacology analysis demonstrated that aloperine exerts its therapeutic effects in PAH primarily through multi-target and multi-pathway mechanisms, providing a novel direction and foundation for PAH treatment.

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来源期刊
Herz
Herz 医学-心血管系统
CiteScore
3.00
自引率
5.90%
发文量
61
审稿时长
4-8 weeks
期刊介绍: Herz is the high-level journal for further education for all physicians interested in cardiology. The individual issues of the journal each deal with specific topics and comprise review articles in English and German written by competent and esteemed authors. They provide up-to-date and comprehensive information concerning the speciality dealt with in the issue. Due to the fact that all relevant aspects of the pertinent topic of an issue are considered, an overview of the current status and progress in cardiology is presented. Reviews and original articles round off the spectrum of information provided.
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