Non-neural electrical responses of smooth muscle cells of the rabbit basilar artery to electrical field stimulation.
- 1 January 1987
- journal article
- research article
- Published by Physiological Society of Japan in The Japanese Journal of Physiology
- Vol. 37 (3) , 497-513
- https://doi.org/10.2170/jjphysiol.37.497
Abstract
In smooth muscle cells of the rabbit basilar artery, field stimulation evoked a depolarizing response which consisted of a fast (1-3 s duration) and a following slow (1-4 min duration) component. The amplitude of these responses increased in an intensity-dependent manner and, when exceeding 10-15 mV, a spike potential was generated. During generation of the slow depolarization, ionic conductances of the membrane were increased. When outward current pulses with long duration (2-3 s) were applied to the smooth muscle using the partition stimulating method, electrotonic potentials and spike potentials were generated. The cessation of the current pulse caused repolarization of the membrane with time constant of 250-350 ms. The depolarizing responses were resistant to tetrodotoxin, sympathetic transmission blocking agents (guanethidine, bretylium, or 6-hydroxydopamine treatment), receptor antagonists for 5-hydroxytryptamine (methysergide), dopamine (haloperidol), ACh (atropine), noradrenaline (phentolamine), ATP (.alpha.,.beta.-mATP) or histamine (mepyramine), blockade of synthesis of prostaglandins or thromboxane A2 (indomethacin) or high Mg2+, low Ca2+ solution. Smooth muscle cell membrane of the basilar artery was depolarized by 5-hydroxytryptamine (above 0.1 .mu.M) or histamine (above 10 .mu.M) but not by ACh (up to 100 .mu.M) or noradrenaline (up to 10 .mu.M). The depolarization induced by 5-hydroxytryptamine or histamine was antagonized by methysergide or mepyramine, respectively. Denervation of the vessel by storing in a cold condition (4.degree.C) decreased but did not abolish the depolarizing response. The decrease in amplitude of the depolarizing response during cold storage was attributed to associated depolarization of the smooth muscle membrane. Internal perfusion of the vessel with distilled water abolished generation of the depolarizing response, and this procedure also abolished the endothelium-dependent relaxation induced by ACh during the potassium contraction. The results suggest that the depolarizng response evoked by field stimulation is generated by substances released from non-neural components, possibly from the endothelial cells.Keywords
This publication has 24 references indexed in Scilit:
- Substance P: immunohistochemical localization and effect upon cat pial arteries in vitro and in situ.The Journal of Physiology, 1981
- Adrenergic transmissions in the guinea‐pig mesenteric artery and their cholinergic modulations.The Journal of Physiology, 1981
- Membrane activation of smooth muscle from rabbit basilar artery by dopaminePflügers Archiv - European Journal of Physiology, 1981
- POSSIBLE INVOLVEMENT OF ADENINE-NUCLEOTIDES IN SYMPATHETIC NEUROEFFECTOR MECHANISMS OF DOG BASILAR ARTERY1981
- The obligatory role of endothelial cells in the relaxation of arterial smooth muscle by acetylcholineNature, 1980
- Some properties of the excitatory junction potentials recorded from saphenous arteries of rabbits.The Journal of Physiology, 1979
- Do vasomotor nerves significantly regulate cerebral blood flow?Circulation Research, 1978
- INVITRO DENERVATION OF PORTAL-VEIN AND CAUDAL ARTERY OF RAT1976
- Cable properties of smooth muscleThe Journal of Physiology, 1968
- Tetrodotoxin and neuromuscular transmissionProceedings of the Royal Society of London. B. Biological Sciences, 1967