Abstract
The synthetic prostaglandin analog 9,11-azoprosta-5,13-dienoic acid (azo analog I) has been found to be a potent inhibitor of human platelet thromboxane synthetase by three independent analytical methods: electron-capture gas chromatography, radioisotopic thin-layer chromatography, and radioimmunoassay. In the presence of azo analog I, human platelet aggregation induced by either the prostaglandin endoperoxide PGH2 or arachidonic acid was antagonized. The addition of azo analog I shifted the transformation of endoperoxides away from thromboxane synthesis and toward prostaglandin E2 synthesis. The specificity of azo analog I is demonstrated by its selective inhibition of the second wave of either ADP- or epinephrine-induced platelet aggregation. These data indicate that PGH2 must be converted to thromboxane A2 in order to induce human platelet aggregation.
MeSH Terms
Arachidonic Acids/pharmacology
Azo Compounds/pharmacology
Blood Platelets/enzymology
Humans
Kinetics
Microsomes/enzymology
Oxidoreductases/antagonists & inhibitors
Platelet Aggregation/drug effects
Prostaglandins/pharmacology
Prostaglandins H
Radioimmunoassay
Thromboxane-A Synthase/antagonists & inhibitors,blood
Chemicals
Arachidonic Acids
Azo Compounds
Prostaglandins
Prostaglandins H
azo analog I
Oxidoreductases
Thromboxane-A Synthase
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Gorman R R
Bundy G L
Peterson D C
Sun F F
Miller O V
Fitzpatrick F A
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