Roles of extrajunctional receptors in the response of guinea‐pig mesenteric and rat tail arteries to adrenergic nerves.
- 1 December 1983
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 345 (1) , 409-422
- https://doi.org/10.1113/jphysiol.1983.sp014985
Abstract
Studies of the electrical response of isolated guinea pig mesenteric and rat tail arteries to perivascular nerve stimulation were made by micro-electrodes inserted from the outer surface of the vessels. Membrane potential of both arteries was -68 to -69 mV and usually stable, with occasional miniature excitatory junction potentials (MEJP). Perviascular nerve stimulation produced excitatory junction potentials (EJP) which usually increased in size with repetitive stimulation, particularly in the mesenteric artery, but rarely triggered a spike or other regenerative response. Phentolamine and yohimbine in low concentrations increased the size of the EJP in both arteries, and increased the mechanical response of the mesenteric artery, probably by blocking prejunctional .alpha.2 receptors which depress release of noradrenaline [norepinephrine] by the nerves; they reduced the mechanical response of the tail artery, probably by blocking .alpha.2 receptors of the smooth muscle. Prazosin in low concentration had no effect on the EJP but inhibited contraction in both arteries, probably by blocking .alpha.1 receptors of the smooth muscle. In the tail artery, but not the mesenteric artery, EJP produced by repetitive perivascular nerve stimulation were followed by a slow depolarization reaching a maximum at .apprx. 20 s and then decaying over 1-3 min; it did not reach the threshold for contraction, assessed by K depolarization. Yohimbine reduced the size and duration of the slow depolarization. High concentrations of noradrenaline (10-5 M) caused depolarization and contraction of the mesenteric artery, both of which were blocked by prazosin and little affected by yohimbine. In the tail artery, yohimibine did but prazosin did not block the depolarization produced by any concentration of noradrenaline, although yohimbine was almost as effective as prazosin in blocking the contraction produced by low concentrations of noradrenaline. Extrajunctional adrenoceptors in the mesenteric artery therefore included high sensitivity types of .alpha.1 receptor, and in the tail artery high sensitivity types of .alpha.1 and .alpha.2 receptor. Some of the extrajunctional receptors, as well as the junctional receptors responsible for EJP in both arteries, produced depolarization. Most of the contraction induced by either nerves or exogenous noradrenaline was producted by the extrajunctional receptors, and was not dependent on the depolarization which some of these receptors induced.This publication has 30 references indexed in Scilit:
- Local modulation of adrenergic neuroeffector interaction in the blood vessel well.Physiological Reviews, 1981
- Evoked release of endogenous norepinephrine in the canine saphenous vein. Inhibition by acetylcholine.Circulation Research, 1979
- BLOOD-VESSELSBritish Medical Bulletin, 1979
- Excitation—contraction coupling in the smooth muscle cells of the rabbit main pulmonary arteryThe Journal of Physiology, 1977
- The membrane properties of the smooth muscle cells of the rabbit main pulmonary arteryThe Journal of Physiology, 1977
- SIXTH GADDUM MEMORIAL LECTURE NATIONAL INSTITUTE FOR MEDICAL RESEARCH, MILL HILL, JANUARY 1977British Journal of Pharmacology, 1977
- Electro- and pharmacomechanical coupling in the smooth muscle cells of the rabbit ear artery.The Journal of general physiology, 1977
- Action of sympathetic nerves of inner and outer muscle of sheep carotid artery, and effect of pressure on nerve distribution.The Journal of Physiology, 1976
- Differences in sensitivity to vasoconstrictor drugs within the wall of the sheep carotid arteryThe Journal of Physiology, 1972
- Vascular smooth muscle. I. Normal structure, pathology, biochemistry, and biophysics.1968