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PMID: 40872514 已发表 · epublish 英语

Integrative In Silico and In Vivo Analysis of Banhasasim-Tang for Irritable Bowel Syndrome: Mechanistic Insights into Inflammation-Related Pathways.

Pharmaceuticals (Basel, Switzerland) ·第 18 卷 ·第 8 期 ·2025-07-27

Choi WG, Ko SJ, Shim JH, Bae CH, Kim S, Park JW, Kim BJ

摘要

Background/Objectives: Banhasasim-tang (BHSST) is a traditional herbal formula commonly used to treat gastrointestinal (GI) disorders and has been considered a potential therapeutic option for irritable bowel syndrome (IBS). This study aimed to explore the molecular targets and underlying mechanisms of BHSST in IBS using a combination of network pharmacology, molecular docking, molecular dynamics simulations, and in vivo validation. Methods: Active compounds in BHSST were screened based on drug-likeness and oral bioavailability. Potential targets were predicted using ChEMBL, and IBS-related targets were obtained from GeneCards and DisGeNET. A compound-target-disease network was constructed and analyzed via Gene Ontology and KEGG pathway enrichment. Compound-target interactions were further assessed using molecular docking and molecular dynamics simulations. The in vivo effects of eudesm-4(14)-en-11-ol, elemol, and BHSST were evaluated in a zymosan-induced IBS mouse model. Results: Twelve BHSST-related targets were associated with IBS, with enrichment analysis identifying TNF signaling and apoptosis as key pathways. In silico simulations suggested stable binding of eudesm-4(14)-en-11-ol to TNF-α and kanzonol T to PIK3CD, whereas elemol showed weak interaction with PRKCD. In vivo, eudesm-4(14)-en-11-ol improved colon length, weight, stool consistency, TNF-α levels, and pain-related behaviors-effects comparable to those of BHSST. Elemol, however, showed no therapeutic benefit. Conclusions: These findings provide preliminary mechanistic insight into the anti-inflammatory potential of BHSST in IBS. The integrated in silico and in vivo approaches support the contribution of specific components, such as eudesm-4(14)-en-11-ol, to its observed effects, warranting further investigation.

关键词
Banhasasim-tang irritable bowel syndrome molecular docking molecular dynamics network pharmacology
文献信息
期刊
Pharmaceuticals (Basel, Switzerland)
期刊简称
Pharmaceuticals (Basel)
ISSN
1424-8247
发表日期
2025-07-27
语言
英语
国家/地区
Switzerland
NLM ID
101238453
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