Failure to Demonstrate Monoamine Oxidase Inhibition by Glyceryl Trinitrate in Vivo
Author:
Publisher
Wiley
Subject
Pharmacology,Toxicology
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/j.1600-0773.1970.tb00566.x/fullpdf
Reference11 articles.
1. The oxidation of adrenaline and other amines;Blaschko;Biochem. J.,1937
2. On the role of the liver catechol-0-methyl transferase in the metabolism of circulating catecholamines;Carlsson;Acta pharmacol. et toxicol.,1963a
3. β-hydroxylation of tyramine in vivo;Carlsson;Acta pharmacol. Et toxicol.,1963b
4. Mechanism of amine transport in the cell membranes of the adrenergic nerves;Carlsson;Acta pharmacol. et toxicol.,1965
5. Effects of denervation on the uptake and β-hydroxylation of tyramine in the rat salivary gland;Fischer;Life Sci.,1964
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1. Study on Adrenergic Function after Development of Tolerance to Ethylene Glycol Dinitrate (EGDN) in Rats;Pharmacology & Toxicology;1987-09
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3. Influence of glyceryl trinitrate on force of contraction and action potential of guinea-pig myocardium;Naunyn-Schmiedeberg's Archives of Pharmacology;1975
4. The Pharmacological and Biochemical Interaction of Organic Nitrates with Sulfhydryls: Possible Correlations with the Mechanism for Tolerance Development, Vasodilation, and Mitochondrial and Enzyme Reactions;Organic Nitrates;1975
5. Adrenergic False Transmitters;Catecholamines;1972
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