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L-NAME releases nitric oxide and potentiates subsequent nitroglycerin-mediated vasodilation.


ABSTRACT: L-NG-Nitro arginine methyl ester (L-NAME) has been widely applied for several decades in both basic and clinical research as an antagonist of nitric oxide synthase (NOS). Herein, we show that L-NAME slowly releases NO from its guanidino nitro group. Daily pretreatment of rats with L-NAME potentiated mesenteric vasodilation induced by nitrodilators such as nitroglycerin, but not by NO. Release of NO also occurred with the NOS-inactive enantiomer D-NAME, but not with L-arginine or another NOS inhibitor L-NMMA, consistent with the presence or absence of a nitro group in their structure and their nitrodilator-potentiating effects. Metabolic conversion of the nitro group to NO-related breakdown products was confirmed using isotopically-labeled L-NAME. Consistent with Fenton chemistry, transition metals and reactive oxygen species accelerated the release of NO from L-NAME. Both NO production from L-NAME and its nitrodilator-potentiating effects were augmented under inflammation. NO release by L-NAME can confound its intended NOS-inhibiting effects, possibly by contributing to a putative intracellular NO store in the vasculature.

SUBMITTER: Liu T 

PROVIDER: S-EPMC6565607 | biostudies-literature | 2019 Sep

REPOSITORIES: biostudies-literature

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L-NAME releases nitric oxide and potentiates subsequent nitroglycerin-mediated vasodilation.

Liu Taiming T   Zhang Meijuan M   Mukosera George T GT   Borchardt Dan D   Li Qian Q   Tipple Trent E TE   Ishtiaq Ahmed Abu Shufian AS   Power Gordon G GG   Blood Arlin B AB  

Redox biology 20190604


L-N<sup>G</sup>-Nitro arginine methyl ester (L-NAME) has been widely applied for several decades in both basic and clinical research as an antagonist of nitric oxide synthase (NOS). Herein, we show that L-NAME slowly releases NO from its guanidino nitro group. Daily pretreatment of rats with L-NAME potentiated mesenteric vasodilation induced by nitrodilators such as nitroglycerin, but not by NO. Release of NO also occurred with the NOS-inactive enantiomer D-NAME, but not with L-arginine or anoth  ...[more]

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