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μ-Opioid receptor stimulation in the medial subnucleus of the tractus solitarius inhibits gastric tone and motility by reducing local GABA activity

Authors :
Melissa A. Herman
Alisa Alayan
Richard A. Gillis
Niaz Sahibzada
Kenneth L. Dretchen
Barbara M. Bayer
Joseph G. Verbalis
Source :
American Journal of Physiology-Gastrointestinal and Liver Physiology. 299:G494-G506
Publication Year :
2010
Publisher :
American Physiological Society, 2010.

Abstract

We examined the effects of altering μ-opioid receptor (MOR) activity in the medial subnucleus of the tractus solitarius (mNTS) on several gastric end points including intragastric pressure (IGP), fundus tone, and the receptive relaxation reflex (RRR). Microinjection of the MOR agonist [d-Ala2,MePhe4,Gly(ol)5]enkephalin (DAMGO; 1–10 fmol) into the mNTS produced dose-dependent decreases in IGP. Microinjection of the endogenous MOR agonists endomorphin-1 and endomorphin-2 (20 fmol) into the mNTS mimicked the effects of 10 fmol DAMGO. Microinjection of 1 and 100 pmol DAMGO into the mNTS produced a triphasic response consisting of an initial decrease, a transient increase, and a persistent decrease in IGP. The increase in IGP appeared to be due to diffusion to the dorsal motor nucleus of the vagus. The effects of 10 fmol DAMGO in the mNTS were blocked by vagotomy and by blockade of MORs, GABAAreceptors, and ionotropic glutamate receptors in the mNTS. The RRR response was abolished by bilateral microinjection of the opioid receptor antagonist naltrexone into the mNTS and reduced by intravenous administration of naltrexone. Our data demonstrate that 1) activation of MORs in the mNTS with femtomole doses of agonist inhibits gastric motility, 2) the mechanism of MOR effects in the mNTS is through suppression of local GABA activity, and 3) blockade of MORs in the mNTS prevents the RRR response. These data suggest that opioids play an important role in mediating a vagovagal reflex through release of an endogenous opioid in the mNTS, which, in turn, inhibits ongoing local GABA activity and allows vagal sensory input to excite second-order mNTS neurons.

Details

ISSN :
15221547 and 01931857
Volume :
299
Database :
OpenAIRE
Journal :
American Journal of Physiology-Gastrointestinal and Liver Physiology
Accession number :
edsair.doi.dedup.....35c2e9c99c11ed7b69c31da48a015219
Full Text :
https://doi.org/10.1152/ajpgi.00038.2010