Skip to content
Open access

Network pharmacology–based prediction of the multi-target mechanism of Simhanada Guggulu in rheumatoid arthritis: an in silico study

Aug 2026 · International Journal of Ayurveda360 · Vol 3, pp. 1259-1269 · 0 citations · 30 references

TL;DR

These computational findings are intended to generate a coherent, testable hypothesis that Simhanada Guggulu acts through simultaneous, low-intensity modulation of several interconnected inflammatory and oxidative pathways rather than through a single dominant target.

Abstract

Background: Rheumatoid arthritis (RA) is a chronic autoimmune inflammatory disorder characterised by persistent synovitis, progressive cartilage and subchondral bone destruction, functional disability and systemic complications. Current disease-modifying therapy has substantially improved disease control, but long-term use remains constrained by hepatotoxicity, gastrointestinal injury, sustained immunosuppression and secondary treatment failure. This has renewed interest in multi-component traditional formulations as candidate sources of multi-target anti-inflammatory strategies. Objective: To predict, using an integrated network pharmacology workflow, the molecular targets and inflammatory signalling pathways through which Simhanada Guggulu — a classical Ayurvedic polyherbal-mineral formulation prescribed for Amavata — may act in rheumatoid arthritis. Methods: Four phytochemical markers of Simhanada Guggulu — gallic acid, epigallocatechin, guggulsterone-Z and ricinoleic acid — were selected on the basis of independently validated, ICH Q2(R1)-compliant HPLC quantification confirming their presence in the finished tablet. Their structures were verified against PubChem and filtered for drug-likeness using SwissADME. Putative human protein targets of the four markers were predicted with SwissTargetPrediction. RA-associated genes were assembled from the Open Targets Platform, and the intersection with predicted compound targets was taken as the candidate target set. Protein–protein interaction analysis and KEGG pathway over-representation analysis were planned via STRING and clusterProfiler respectively; the extent to which each was completed is detailed in the main text. Results: The analysis was restricted to four phytochemical markers with independently validated quantitative confirmation in the finished tablet — gallic acid, epigallocatechin, guggulsterone-Z and ricinoleic acid — all of which pass the drug-likeness screen (Table 2). SwissTargetPrediction (probability ≥ 0.1) returned 204 unique predicted targets across the four compounds; intersection with the Open Targets rheumatoid arthritis gene set (MONDO_0008383, score ≥ 0.1; 1301 genes) gave a candidate target set of 55 genes, including TNF, STAT1, MAPK3, MAPK14, AKT1, PIK3CA, MTOR, HIF1A, VEGFA and KDR — genes mapping onto NF-κB, TNF, JAK-STAT, MAPK, PI3K-AKT, HIF-1 and VEGF signalling, all independently established as central to RA pathogenesis. Formal statistical pathway enrichment and protein–protein interaction network topology remain incomplete, for reasons given in the main text; the candidate target set itself is a complete, reproducible result. Conclusion: These computational findings are intended to generate a coherent, testable hypothesis that Simhanada Guggulu acts through simultaneous, low-intensity modulation of several interconnected inflammatory and oxidative pathways rather than through a single dominant target. The predictions are hypothesis-generating only and require experimental verification before any therapeutic inference is drawn. Keywords: Rheumatoid arthritis, Amavata, Simhanada Guggulu, Network pharmacology, Ayurveda, NF-κB, Guggulsterone, Gallic acid, In silico

Read PDF

Similar papers

Review Open access Sep 2026

Molecular mechanisms of herbal medicines and bioactive compounds in rheumatoid arthritis: a comprehensive network pharmacology perspective

Rheumatoid arthritis (RA) is a chronic immune-mediated inflammatory disease characterized by persistent synovial inflammation, progressive joint distruction, and systemic complications. Owing to the multifactorial nature of RA, therapies targeting a single molecular pathway often provide incomplete disease control and...

T. Jasna, K. Sandra, Megh Pravin Vithalkar et al. · 0 citations
Open access Jan 2026

NR1D1‐Mediated Suppression of JAK1/STAT3 Signaling Contributes to the Therapeutic Effects of Triptolide in Rheumatoid Arthritis

This study demonstrates that triptolide alleviates RA through NR1D1‐mediated inhibition of JAK1/STAT3 signaling, thereby revealing the NR1D1/JAK1/STAT3 axis as a potential therapeutic target for RA.

Conglin Ren, Ming-Shuang Li, Caijian He et al. · 0 citations
Open access Aug 2026

Network pharmacology analysis of Leea indica against rheumatoid arthritis: in-silico studies

Background: Rheumatoid arthritis (RA) is a long-term inflammatory disease. The potential therapeutic benefits of natural products in modifying the inflammatory pathways linked to RA have drawn increasing attention. Purpose: The objective of this study was to determine the anti-inflammatory property of Leea indica using...

M. Abdul Rahim, Vinith Roshan Victor Rajesh, Yasmin Banu Chanbasha et al. · 0 citations
Open access Sep 2026

Integrative Network Pharmacology Analysis of Tripterygium Wilfordii Against Rheumatoid Arthritis

Rheumatoid arthritis (RA) is a chronic systemic autoimmune disease characterized by persistent synovial inflammation, progressive cartilage destruction, bone erosion and joint deformity, leading to severe disability and reduced quality of life. Tripterygium wilfordii Hook. F. (Thunder God Vine), a well-known medicina...

Rohan Mohite, Pragati Pujari, Sneha Pawar et al. · 0 citations
Aug 2026

Network-guided Evaluation of β-sitosterol in Inflammatory and Profibrotic Mesangial-Cell Models Relevant to Chronic Glomerulonephritis.

Chronic glomerulonephritis (CGN) is characterized by persistent inflammatory injury and progressive fibrotic remodeling, yet compound-target relationships underlying natural-product-based interventions remain incompletely defined. This study integrated network pharmacology, validated molecular docking, and in vitro exp...

Hai-Peng He, Lian He, Fei Chen et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.