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Aldehyde dehydrogenase-independent bioactivation of nitroglycerin in porcine and bovine blood vessels

The vascular bioactivation of the antianginal drug nitroglycerin (GTN), yielding 1,2-glycerol dinitrate and nitric oxide or a related activator of soluble guanylate cyclase, is catalyzed by aldehyde dehydrogenase-2 (ALDH2) in rodent and human blood vessels. The essential role of ALDH2 has been confi...

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Autores principales: Neubauer, Regina, Wölkart, Gerald, Opelt, Marissa, Schwarzenegger, Christine, Hofinger, Marielies, Neubauer, Andrea, Kollau, Alexander, Schmidt, Kurt, Schrammel, Astrid, Mayer, Bernd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4321882/
https://www.ncbi.nlm.nih.gov/pubmed/25576686
http://dx.doi.org/10.1016/j.bcp.2014.12.021
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author Neubauer, Regina
Wölkart, Gerald
Opelt, Marissa
Schwarzenegger, Christine
Hofinger, Marielies
Neubauer, Andrea
Kollau, Alexander
Schmidt, Kurt
Schrammel, Astrid
Mayer, Bernd
author_facet Neubauer, Regina
Wölkart, Gerald
Opelt, Marissa
Schwarzenegger, Christine
Hofinger, Marielies
Neubauer, Andrea
Kollau, Alexander
Schmidt, Kurt
Schrammel, Astrid
Mayer, Bernd
author_sort Neubauer, Regina
collection PubMed
description The vascular bioactivation of the antianginal drug nitroglycerin (GTN), yielding 1,2-glycerol dinitrate and nitric oxide or a related activator of soluble guanylate cyclase, is catalyzed by aldehyde dehydrogenase-2 (ALDH2) in rodent and human blood vessels. The essential role of ALDH2 has been confirmed in many studies and is considered as general principle of GTN-induced vasodilation in mammals. However, this view is challenged by an early report showing that diphenyleneiodonium, which we recently characterized as potent ALDH2 inhibitor, has no effect on GTN-induced relaxation of bovine coronary arteries (De La Lande et al., 1996). We investigated this issue and found that inhibition of ALDH2 attenuates GTN-induced coronary vasodilation in isolated perfused rat hearts but has no effect on relaxation to GTN of bovine and porcine coronary arteries. This observation is explained by low levels of ALDH2 protein expression in bovine coronary arteries and several types of porcine blood vessels. ALDH2 mRNA expression and the rates of GTN denitration were similarly low, excluding a significant contribution of ALDH2 to the bioactivation of GTN in these vessels. Attempts to identify the responsible pathway with enzyme inhibitors did not provide conclusive evidence for the involvement of ALDH3A1, cytochrome P450, or GSH-S-transferase. Thus, the present manuscript describes a hitherto unrecognized pathway of GTN bioactivation in bovine and porcine blood vessels. If present in the human vasculature, this pathway might contribute to the therapeutic effects of organic nitrates that are not metabolized by ALDH2.
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spelling pubmed-43218822015-02-15 Aldehyde dehydrogenase-independent bioactivation of nitroglycerin in porcine and bovine blood vessels Neubauer, Regina Wölkart, Gerald Opelt, Marissa Schwarzenegger, Christine Hofinger, Marielies Neubauer, Andrea Kollau, Alexander Schmidt, Kurt Schrammel, Astrid Mayer, Bernd Biochem Pharmacol Article The vascular bioactivation of the antianginal drug nitroglycerin (GTN), yielding 1,2-glycerol dinitrate and nitric oxide or a related activator of soluble guanylate cyclase, is catalyzed by aldehyde dehydrogenase-2 (ALDH2) in rodent and human blood vessels. The essential role of ALDH2 has been confirmed in many studies and is considered as general principle of GTN-induced vasodilation in mammals. However, this view is challenged by an early report showing that diphenyleneiodonium, which we recently characterized as potent ALDH2 inhibitor, has no effect on GTN-induced relaxation of bovine coronary arteries (De La Lande et al., 1996). We investigated this issue and found that inhibition of ALDH2 attenuates GTN-induced coronary vasodilation in isolated perfused rat hearts but has no effect on relaxation to GTN of bovine and porcine coronary arteries. This observation is explained by low levels of ALDH2 protein expression in bovine coronary arteries and several types of porcine blood vessels. ALDH2 mRNA expression and the rates of GTN denitration were similarly low, excluding a significant contribution of ALDH2 to the bioactivation of GTN in these vessels. Attempts to identify the responsible pathway with enzyme inhibitors did not provide conclusive evidence for the involvement of ALDH3A1, cytochrome P450, or GSH-S-transferase. Thus, the present manuscript describes a hitherto unrecognized pathway of GTN bioactivation in bovine and porcine blood vessels. If present in the human vasculature, this pathway might contribute to the therapeutic effects of organic nitrates that are not metabolized by ALDH2. Elsevier Science 2015-02-15 /pmc/articles/PMC4321882/ /pubmed/25576686 http://dx.doi.org/10.1016/j.bcp.2014.12.021 Text en © 2015 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Neubauer, Regina
Wölkart, Gerald
Opelt, Marissa
Schwarzenegger, Christine
Hofinger, Marielies
Neubauer, Andrea
Kollau, Alexander
Schmidt, Kurt
Schrammel, Astrid
Mayer, Bernd
Aldehyde dehydrogenase-independent bioactivation of nitroglycerin in porcine and bovine blood vessels
title Aldehyde dehydrogenase-independent bioactivation of nitroglycerin in porcine and bovine blood vessels
title_full Aldehyde dehydrogenase-independent bioactivation of nitroglycerin in porcine and bovine blood vessels
title_fullStr Aldehyde dehydrogenase-independent bioactivation of nitroglycerin in porcine and bovine blood vessels
title_full_unstemmed Aldehyde dehydrogenase-independent bioactivation of nitroglycerin in porcine and bovine blood vessels
title_short Aldehyde dehydrogenase-independent bioactivation of nitroglycerin in porcine and bovine blood vessels
title_sort aldehyde dehydrogenase-independent bioactivation of nitroglycerin in porcine and bovine blood vessels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4321882/
https://www.ncbi.nlm.nih.gov/pubmed/25576686
http://dx.doi.org/10.1016/j.bcp.2014.12.021
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