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Coronary artery spasm in intact dogs induced by potassium and serotonin. | LitMetric

AI Article Synopsis

  • A new animal model was developed to study coronary artery spasm using open-chest dogs, applying vasoconstricting agents to assess localized drug effects.
  • Potassium and serotonin were effective in causing sustained arterial constriction, significantly reducing blood flow, while other constrictors did not have the same effect.
  • The spasms could be relieved with nitroglycerin and calcium antagonists, and the study found no evidence of thrombus formation in the arteries, suggesting these spasms may regulate blood flow in ischemic heart conditions.

Article Abstract

Although coronary artery spasm has been implicated as an important cause of myocardial ischemia in humans, an animal model of reversible segmental coronary constriction has not been described. To provoke coronary spasm in open-chest dogs, selected vasoconstricting agents adsorbed to viscous ion exchange gels were applied topically to the surface of epicardial coronary arteries. The procedure provided a sustained localized release of drug, and minimized effects on contiguous myocardium or on the systemic circulation. Segmental arterial constrictor responses were evaluated by sonomicrometry, arteriography, and electromagnetic flow measurements. Potassium evoked sustained constrictions or spasms, and concomitantly reduced flow by -42 +/- 4% (SE; n = 34). Serotonin likewise produced sustained decreases in flow of -22 +/- 6% (SE; n = 5). Other constrictors, including norepinephrine and angiotensin, failed to evoke sustained constrictions. Spasms nearly abolished reactive hyperemic responses elicited by temporary complete occlusion of the artery. Intravenous nitroglycerin and dihydropyridine calcium antagonists promptly relieved the spasms. Scanning electronmicroscopic examination of the intimal surface of arteries undergoing sustained spasm revealed no platelet thrombi. Thus, nonthrombotic, vasodilator-sensitive segmental coronary spasms were elicited by endogenous constrictors which may play a role in regulating flow to ischemic myocardium.

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Source
http://dx.doi.org/10.1161/01.res.52.4.423DOI Listing

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