Anti-arthritic studies of ethnomedicine Gaultheria trichophylla Royle extract and salicylate-rich fraction using complete Freud's adjuvant-induced rats: molecular docking and network pharmacology analysis.
Fiaz AlamAbrar AhmadKhalid RaufAbdulhakeem S AlamriWalaa F AlsaniePublished in: Inflammopharmacology (2024)
Gaultheria trichophylla Royle is a traditional treatment for inflammatory conditions including arthritis. The objective was to evaluate the anti-arthritic activity of the extracts and salicylate-rich fractions through adjuvant-induced arthritis, histopathological analysis, radiological imaging, hematological, biochemical parameters along with using bioinformatic tools. In vivo anti-arthritic efficacy of the extract and SRF (at 100, 200, 300, and 150 mg/kg doses) was assessed using healthy albino rats. Molecular docking of identified compounds along with network pharmacology analysis helped to determine the route of action of drug. Both the extract and SRF showed dose-dependent anti-arthritic activity by decreasing the joint diameter, increase in pain threshold and body weight compared with negative control group. Along with SRF (150 mg/kg), EEGT (300 and 200 mg/kg) shows significant (P < 0.01) anti-arthritic activity by lowering levels of WBC, platelets, serum C-reactive protein (CRP), and rheumatoid factor (RF) and raising levels of RBC and Hb. The modified biochemical measures (AST, ALT, ALP, and total protein level) further supported the anti-arthritic action. Histopathology and radiology study showed that EEGT (300 and 200 mg/kg), SRF (150 mg/kg) and diclofenac (10 mg/kg) inhibited joint destruction. GCMS analysis showed the presence of methyl salicylate, sitosterol, calcifediol, and ergosta-5,22-dien-3-ol, acetate as important bioactive constituents. Moreover, as the significant node in the pharmacology network and docking against TNF-α, a classical therapeutic target in RA showed potential of G. trichophylla in treatment of RA. The results showed that G. trichophylla have effectively reduced the inflammation of the joints.
Keyphrases
- molecular docking
- rheumatoid arthritis
- oxidative stress
- molecular dynamics simulations
- early stage
- lymph node
- photodynamic therapy
- neuropathic pain
- spinal cord
- drug induced
- artificial intelligence
- systemic lupus erythematosus
- anti inflammatory
- combination therapy
- interstitial lung disease
- binding protein
- stress induced