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Receptor-selective modulation of cannabinoid signaling by cardamonin: integrating molecular dynamics, free energy calculations, and behavioral validation


Citation

Khalid, Mohamed Hanief and Azmi, Liyana and Mubarak, M. Qadri E. and Iqma Marsujak, Nur Mazniatul and Syahir, Amir and Perimal, Enoch Kumar and Sulaiman, Mohd Roslan and Mohamad Jamali, Muhamad Arif (2026) Receptor-selective modulation of cannabinoid signaling by cardamonin: integrating molecular dynamics, free energy calculations, and behavioral validation. ACS Omega, 11 (16). pp. 23820-23832. ISSN 2470-1343

Abstract

Cardamonin, a naturally occurring chalcone derivative, has demonstrated potential as a modulator of the endocannabinoid system (ECS). However, its interactions with cannabinoid receptors CB1 and CB2 are not fully understood. This work integrates in silico and in vivo methodology to examine the structural dynamics and pharmacological effects of cardamonin. Molecular dynamics simulations spanning 1000 ns demonstrated that cardamonin shows modest, receptor-dependent effects on CB1 dynamics, as shown by diminished root-mean-square deviation (RMSD) and fluctuation (RMSF), reduced solvent-accessible surface area (SASA), and increased hydrogen bonding. Principal component analysis (PCA) further demonstrated increased conformational sampling in CB1 following ligand binding, implying alteration of receptor flexibility. Conversely, CB2 had little structural alterations, indicating weaker or less selective binding. MM/PBSA binding energy calculations corroborated these findings, revealing that cardamonin exhibited comparable binding affinity at CB1 (−19.58 ± 6.49 kcal/mol) and CB2 (−18.76 ± 3.97 kcal/mol), with only a slight numerical tendency toward CB1. Both interactions were mild relative to the native ligands. Functional validation using Von Frey and Hargreaves behavioral experiments indicated that cardamonin markedly reduced mechanical and thermal hypersensitivity in mouse models. Significantly, some analgesic effects were maintained even with specific CB1 or CB2 blockade, suggesting receptor-biased or multitarget action. The robust alignment between computational predictions and behavioral evidence identifies cardamonin as a receptor-selective, physically stabilizing, and functionally significant modulator of CB1, with potential implications in nonopioid pain treatment approaches.


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Official URL or Download Paper: https://pubs.acs.org/doi/10.1021/acsomega.5c10026

Additional Metadata

Item Type: Article
Subject: Chemistry (all)
Subject: Chemical Engineering (all)
Divisions: Faculty of Medicine and Health Science
Institute of Nanoscience and Nanotechnology
DOI Number: https://doi.org/10.1021/acsomega.5c10026
Publisher: American Chemical Society
Keywords: Cardamonin; Cannabinoid receptors; CB1; CB2; Endocannabinoid system; Molecular dynamics; Free energy calculations; Behavioral experiments; Pain relief; Receptor modulation
Sustainable Development Goals (SDGs): SDG 3: Good Health and Well-being, SDG 12: Responsible Consumption and Production, SDG 9: Industry, Innovation and Infrastructure
Depositing User: Ms. Siti Radziah Mohamed@mahmod
Date Deposited: 10 Jun 2026 08:18
Last Modified: 30 Jul 2026 02:32
Altmetrics: https://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1021/acsomega.5c10026
URI: http://psasir.upm.edu.my/id/eprint/125995
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