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R F Furchgott

Publications and source records attributed to R F Furchgott.

49 records · Page 3Linked to original sources

Vasoconstriction of the isolated rabbit ear artery caused by nicotinic agonists acting on adrenergic neurons.

In the perfused isolated central ear artery of the rabbit, nicotine, acetylcholine (ACh), tetramethylammonium (TMA) and carbachol (CCh) at high concentrations (greater than 1 mug/ml) produced transient vasoconstriction. The order of potency was: nicotine greater than ACh greater than TMA greater than CCh. Over the concentration range used, all of the agonists except ACh gave bell-shaped log concentration-response curves. Methacholine did not cause vasoconstriction. The response to ACh, TMA or CCh, but not to nicotine, was potentiated by atropine (0.1-1.0 mug/ml). Tetraethylammonium, hexamethonium, mecamylamine and d-tubocurarine blocked the response to the nicotinic agonists and to nerve stimulation. Ear arteries from reserpine-treated rabbits gave no, or very little, constrictor response to the nicotinic agonists or to nerve stimulation. These findings support the conclusion that the vasoconstriction produced by the nicotinic agonists is mediated by norepinephrine released from adrenergic nerve terminals as a result of the action of the agents on neuronal nicotinic receptors located at or near the terminals. The potentiation by atropine of the constrictor response to ACh, TMA and CCh is attributed to the blockade by atropine of neuronal muscarinic receptors on which these agonists act to inhibit the release of norepinephrine.

Acetylcholine↗

Vasodilation induced by acetylcholine and by glyceryl trinitrate in rat aortic and mesenteric vasculature.

In endothelium-containing rings of rat aorta which had been precontracted with phenylephrine, addition of acetylcholine (ACh) (0.010-10 microM) resulted in concentration-dependent, graded relaxation through the release of endothelium-derived relaxing factor (EDRF). Hemoglobin (3 and 10 microM) and methylene blue (10 microM) both produced marked inhibition of this EDRF-mediated relaxation. In the perfused mesenteric arterial vasculature of the rat, ACh-induced vasodilation was also inhibited by hemoglobin and by methylene blue, although to a lesser extent than was ACh-induced relaxation of aortic rings by these two agents. These findings indicate that EDRF mediates in large part ACh-induced relaxation of resistance vessels in the mesenteric vascular bed as well as large arteries. The nitrovasodilator glyceryl trinitrate (GTN) caused endothelium-independent relaxation of aortic rings as well as vasodilation of mesenteric arterial vasculature. GTN-induced relaxation of aortic rings was antagonized by hemoglobin as well as methylene blue, but to a lesser extent than was ACh-induced relaxation. However, hemoglobin did not inhibit and methylene blue actually potentiated GTN-induced vasodilation in the perfused mesenteric vasculature. Possible explanations of these paradoxical results are discussed.

Acetylcholine↗