Impaired muscarinic endothelium-dependent relaxation and cyclic guanosine 5'-monophosphate formation in atherosclerotic human coronary artery and rabbit aorta.

C Bossaller, GB Habib, H Yamamoto… - The Journal of …, 1987 - Am Soc Clin Investig
C Bossaller, GB Habib, H Yamamoto, C Williams, S Wells, PD Henry
The Journal of clinical investigation, 1987Am Soc Clin Investig
The dependence of vascular relaxation on an intact endothelium and the relationship
between relaxation and cyclic GMP accumulation were determined in coronary arteries
isolated from cardiac transplantation patients with or without coronary atherosclerosis. In
nonatherosclerotic arteries, the endothelium-dependent agent acetylcholine produced
concentration-related relaxations. In atherosclerotic arteries, endothelium-dependent
relaxations were abolished with acetylcholine, partly suppressed with substance P and …
The dependence of vascular relaxation on an intact endothelium and the relationship between relaxation and cyclic GMP accumulation were determined in coronary arteries isolated from cardiac transplantation patients with or without coronary atherosclerosis. In nonatherosclerotic arteries, the endothelium-dependent agent acetylcholine produced concentration-related relaxations. In atherosclerotic arteries, endothelium-dependent relaxations were abolished with acetylcholine, partly suppressed with substance P and histamine, and completely preserved with the ionophore A23187. In these arteries, the endothelium-independent agent nitroglycerin remained fully active. Accumulation of cyclic GMP in atherosclerotic strips was suppressed with acetylcholine but unattenuated with A23187 and nitroglycerin. In aortas from rabbits with diet-induced atherosclerosis, there was likewise an impaired cholinergic relaxation and cyclic GMP accumulation in the presence of preserved responses to A23187 and nitroglycerin. The results demonstrate that impaired cholinergic responses in atherosclerotic arteries reflect a muscarinic defect and not an inability of endothelium to release endothelial factor or smooth muscle to respond to it.
The Journal of Clinical Investigation