Nature of the vagal inhibitory innervation to the lower esophageal sphincter.
Open Access
- 1 May 1975
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 55 (5), 1119-1126
- https://doi.org/10.1172/jci108013
Abstract
The purpose of the present study was to investigate the nature of the vagal inhibitory innervation to the lower esophageal sphincter in the anesthetized opossum. Sphincter relaxation with electrical stimulation of the vagus was not antagonized by atropine, propranolol, phentolamine, or by catechloamine depletion with reserpine. A combination of atropine and propranolol was also ineffective, suggesting that the vagal inhibitory influences may be mediated by the noncholinergic, nonadrenergic neurons. To determine whether a synaptic link with nicotinic transmission was present, we investigated the effect of hexamethonium on vagal-stimulated lower esophageal sphincter relaxation. Hexamethonium in doses that completely antagonized the sphincter relaxation in response to a ganglionic stimulant, 1,1-dimethyl-4-phenylpiperazinium iodide (DMPP), did not block the sphincter relaxation in response to vagal stimulation at 10 pulses per second, and optimal frequency of stimulation. A combination of hexamethonium and catecholamine depletion was also ineffective, but hexamethonium plus atropine markedly antagonized sphincter relaxation (P less than 0.001). Moreover, 4-(m-chlorophenyl carbamoyloxy)-2-butyltrimethylammonium chloride (McN-A-343), a muscarinic ganglionic stimulant, also caused relaxation of the lower esophageal sphincter. We suggest from these results that: (a) pthe vagal inhibitory pathway to the sphincter consists of preganglionic fibers which synapse with postganglionic neurons: (b) the synaptic transmission is predominantly cholinergic and utilizes nicotinic as well as muscarinic receptors on the postganglionic neuron, and; (c) postganglionic neurons exert their influence on the sphincter by an unidentified inhibitory transmitter that is neither adrenergic nor cholinergic.This publication has 26 references indexed in Scilit:
- Neural Control of the Lower Esophageal Sphincter INFLUENCE OF THE VAGUS NERVESJournal of Clinical Investigation, 1974
- The Adrenergic Control of Lower Esophageal Sphincter FunctionJournal of Clinical Investigation, 1973
- Pharmacological characteristics of the non-striated anorectal musculature in catsGut, 1973
- Mechanism of the Lower Esophageal Sphincter Relaxation ACTION OF PROSTAGLANDIN E1 AND THEOPHYLLINEJournal of Clinical Investigation, 1973
- Lower Esophageal Sphincter Relaxation: Studies on the Neurogenic Inhibitory MechanismJournal of Clinical Investigation, 1973
- Ganglionic TransmissionAnnual Review of Pharmacology, 1969
- Esophageal responses to distension and electrical stimulationJournal of Clinical Investigation, 1969
- ELECTRICAL AND CONTRACTILE RESPONSES OF THE PYLORIC REGION TO ADRENERGIC AND CHOLINERGIC DRUGSCanadian Journal of Physiology and Pharmacology, 1966
- The cardiac sphincter in the catGut, 1961
- The innervation of the cardia and lower œsophagus in manBritish Journal of Surgery, 1960