Key result
Glucagon reverses CCB-induced myocardial depression, fully restoring baseline contractility at higher doses.
Why the study?
Glucagon's ability to antagonize myocardial depression induced by different classes of calcium channel blockers beyond verapamil was unexplored.
Does glucagon reverse myocardial depression induced by different classes of calcium channel blockers in isolated rat hearts?
Does glucagon reverse myocardial depression induced by different classes of calcium channel blockers in isolated rat hearts?
Glucagon directly reverses myocardial depression caused by multiple classes of calcium channel blockers at clinically relevant concentrations, suggesting utility in treating CCB toxicity.
May support glucagon for CCB toxicity reversal; hypothesis-generating in rat model, leaves clinical translation open.
Calcium channel blockers (CCBs) may produce profound myocardial depression. Glucagon antagonized verapamil-induced hypotension and bradycardia in rats; however, glucagon's ability to antagonize other CCBs is unexplored. This study determined: a) if glucagon reverses verapamil-induced depression by a direct cardiac effect, b) if myocardial depression induced by diltiazem and nifedipine (representing different classes of CCBs) is also reversed by glucagon, and c) the glucagon concentration needed to reverse myocardial depression. Isolated rat hearts were perfused at a constant flow rate in a Langendorff preparation. Developed pressure (dP), contractility (+dP/dtmax), relaxation (-dP/dtmax), heart rate, and coronary vascular resistance were recorded. A CCB (n = 6, each blocker) was infused until greater than 50% depression of contractility was achieved. Glucagon was then simultaneously infused (perfusion concentration of 0.6-1.1 x 10(-7) M), and repeat cardiac variables were recorded. In a separate group of 36 hearts, glucagon dose response was determined. After producing a greater than 50% depression in dP/dtmax with 3 mumol of diltiazem, a single concentration of glucagon was infused simultaneously into each heart (perfusion concentrations between 10(-6) and 10(-9) M) and percent recovery of baseline function was determined. Glucagon restored baseline contractility and dP with all three CCBs. Complete reversal of diltiazem-induced myocardial depression occurs at glucagon concentrations greater than or equal to 5 x 10(-7) M. We conclude that a) glucagon directly reverses myocardial depression from three classes of CCBs at concentrations achieved in vivo, and b) glucagon may be useful in the treatment of CCB-induced myocardial toxicity.
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ZARITSKY et al. (1988) studied Calcium channel blocker-induced myocardial depression (n=54). Glucagon was evaluated on Recovery of baseline contractility and developed pressure. Glucagon restored baseline contractility and developed pressure in isolated rat hearts depressed by verapamil, diltiazem, and nifedipine, with complete reversal at concentrations ≥5 x 10(-7) M.
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