Key result
High-dose insulin dose-dependently inhibited agonist-induced intracellular calcium increases in porcine coronary endothelial cells and attenuated agonist-induced coronary vasodilatation.
Why the study?
Does high-dose insulin inhibit agonist-induced calcium entry and coronary relaxation in porcine coronary endothelial cells?
Does high-dose insulin inhibit agonist-induced calcium entry and coronary relaxation in porcine coronary endothelial cells?
High-dose insulin acutely impairs agonist-induced calcium entry and vasodilation in coronary endothelial cells, providing a potential mechanistic link between hyperinsulinemia and coronary artery disease.
May link hyperinsulinemia to coronary endothelial impairment; animal data leaves open in vivo relevance and clinical translation.
Hyperinsulinemia is closely related to coronary artery disease. Endothelial cells are important for the control of vascular tone, and dysfunction of endothelial cells has been implicated in coronary artery disease. The direct effects of insulin on coronary endothelial cells are nonetheless unknown. In this study, the acute effects of high-dose insulin were investigated on agonist-induced intracellular Ca(2+) concentration ([Ca(2+)](i)) in porcine coronary endothelial cells and coronary relaxation. Bradykinin (10 n M ) and cyclopiazonic acid (100 microM), an inhibitor of the endoplasmic reticulum Ca(2+)-ATPase, provoked large increases in [Ca(2+)](i) in coronary endothelial cells. This increase was dose-dependently inhibited by a 10-min preincubation with high doses of insulin (10, 30, 100 mU/ml). Under Ca(2+)-free conditions, bradykinin and cyclopiazonic acid provoked transient, small increases in [Ca(2+)](i). These increases were not affected by pretreatment with insulin (100 mU/ml). Bradykinin (1, 10, 100, 1,000 n M ) and cyclopiazonic acid (10 microM) significantly relaxed porcine coronary artery rings precontracted with histamine (1 microM). The vasodilator effects of bradykinin and cyclopiazonic acid were dose-dependently inhibited by insulin. These acute effects were not observed at physiologic concentrations. Our data indicate that high-dose insulin inhibits agonist-induced Ca(2+) response in coronary endothelial cells and attenuates agonist-induced coronary vasodilatation. The study suggests that hyperinsulinemia might be associated with coronary artery disease via derangement of endothelial Ca(2+)-dependent functions.
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Tran et al. (2001) studied Hyperinsulinemia. High-dose insulin was evaluated on Agonist-induced intracellular Ca(2+) concentration and coronary relaxation. High-dose insulin dose-dependently inhibited agonist-induced intracellular calcium increases in porcine coronary endothelial cells and attenuated agonist-induced coronary vasodilatation.
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