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Article has an altmetric score of 15

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Referenced in 45 patents
Referenced in 2 clinical guideline sources
216 readers on Mendeley
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Research Article Free access | 10.1172/JCI114081

Nitric oxide-generating vasodilators and 8-bromo-cyclic guanosine monophosphate inhibit mitogenesis and proliferation of cultured rat vascular smooth muscle cells.

U C Garg and A Hassid

Department of Pharmacology, University of Tennessee, Memphis 38163.

Find articles by Garg, U. in: JCI | PubMed | Google Scholar

Department of Pharmacology, University of Tennessee, Memphis 38163.

Find articles by Hassid, A. in: JCI | PubMed | Google Scholar

Published May 1, 1989 - More info

Published in Volume 83, Issue 5 on May 1, 1989
J Clin Invest. 1989;83(5):1774–1777. https://doi.org/10.1172/JCI114081.
© 1989 The American Society for Clinical Investigation
Published May 1, 1989 - Version history
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Abstract

Endothelium-derived relaxing factor has been recently identified as nitric oxide. The purpose of this study was to determine if vasodilator drugs that generate nitric oxide inhibit vascular smooth muscle mitogenesis and proliferation in culture. Three chemically dissimilar vasodilators, sodium nitroprusside, S-nitroso-N-acetylpenicillamine and isosorbide dinitrate, dose-dependently inhibited serum-induced thymidine incorporation by rat aortic smooth muscle cells. Moreover, 8-bromo-cGMP mimicked the antimitogenic effect of the nitric oxide-generating drugs. The antimitogenic effect of S-nitroso-N-acetylpenicillamine was inhibited by hemoglobin and potentiated by superoxide dismutase, supporting the view that nitric oxide was the ultimate effector. Sodium nitroprusside and S-nitroso-N-acetylpenicillamine significantly decreased the proliferation of vascular smooth muscle cells. Moreover, the inhibition of mitogenesis and proliferation was shown to be independent of cell damage, as documented by several criteria of cell viability. These results suggest that endogenous nitric oxide may function as a modulator of vascular smooth muscle cell mitogenesis and proliferation, by a cGMP-mediated mechanism.

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Referenced in 45 patents
Referenced in 2 clinical guideline sources
216 readers on Mendeley
See more details