Antihypertensive and vasorelaxant effects of 2-methoxystypandrone mediated via multiple vascular mechanisms.
A, J., A, A.K.K., T, A., MJ, A., M, I., & A, J.S. (2026). Antihypertensive and vasorelaxant effects of 2-methoxystypandrone mediated via multiple vascular mechanisms.. Pakistan journal of pharmaceutical sciences. https://doi.org/10.36721/PJPS.2026.39.10.279.1
A J, A AKK, T A, MJ A, M I, A JS. Antihypertensive and vasorelaxant effects of 2-methoxystypandrone mediated via multiple vascular mechanisms.. Pakistan journal of pharmaceutical sciences. 2026; doi: 10.36721/PJPS.2026.39.10.279.1
A J, A AKK, T A, et al. Antihypertensive and vasorelaxant effects of 2-methoxystypandrone mediated via multiple vascular mechanisms.[J]. Pakistan journal of pharmaceutical sciences. 2026. DOI: 10.36721/PJPS.2026.39.10.279.1.
@article{a2026,
author = {Javed A and Ali Khan Khalil A and Ahmad T and Ahn MJ and Ikram M and Jabbar Shah A},
title = {Antihypertensive and vasorelaxant effects of 2-methoxystypandrone mediated via multiple vascular mechanisms.},
journal = {Pakistan journal of pharmaceutical sciences},
year = {2026},
doi = {10.36721/PJPS.2026.39.10.279.1},
note = {PMID: 42474158},
}
TY - JOUR AU - Javed A AU - Ali Khan Khalil A AU - Ahmad T AU - Ahn MJ AU - Ikram M AU - Jabbar Shah A TI - Antihypertensive and vasorelaxant effects of 2-methoxystypandrone mediated via multiple vascular mechanisms. T2 - Pakistan journal of pharmaceutical sciences PY - 2026 DO - 10.36721/PJPS.2026.39.10.279.1 AN - PMID:42474158 ER -
BACKGROUND: 2-Methoxystypandrone (2-MS), a naphthoquinone from Reynoutria japonica Houtt., has diverse pharmacological activities. However, its antihypertensive and vascular effects remain unexplored. OBJECTIVES: This study investigated the antihypertensive and vasorelaxant potential of 2-MS. METHODS: In vivo, invasive and in vitro approaches were employed to study the antihypertensive potential of 2-MS in normotensive and high salt-induced hypertensive rats. The responses were recorded and analyzed using the PowerLab Data Acquisition system. In-silico docking predicted potential cardiovascular targets and binding interactions. RESULTS: Intraperitoneal administration of 2-MS (1,3 and 5 mg/kg/day) for 28 days significantly prevented the rise in mean arterial pressure (MAP) and heart rate in hypertensive rats. Intravenous administration in normotensive rats produced a dose-dependent fall in MAP. Pretreatment with L-NAME and atropine attenuated the hypotensive response, suggesting involvement of the endothelial nitric oxide (NO)-linked muscarinic pathway, whereas pretreatment with indomethacin did not alter it. In-vitro, 2-MS relaxed the aortic rings precontracted with phenylephrine. This relaxation to 2-MS was abolished with endothelial removal or L-NAME and atropine pretreatment. 2-MS inhibited both voltage- and receptor-operated Ca²+ channels and activated TEA- and 4-minopyridine-sensitive K+ channels. Molecular docking revealed strong affinity towards muscarinic M2 receptors, supporting endothelial and smooth muscle actions. CONCLUSION: These findings demonstrate that the antihypertensive and vasorelaxant effects of 2-MS are mediated by both endothelium-dependent and endothelium-independent pathways.