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Department of Pharmacology

 
Author(s): 
Taylor, T, Konda, P, John, S, Bulmer, D, Hockley, JRF, Smith, ESJ
Abstract: 

Galanin is a neuropeptide expressed by sensory neurones innervating the gastrointestinal (GI) tract. Galanin displays inhibitory effects on vagal afferent signalling within the upper GI tract, and the goal of this study was to determine the actions of galanin on colonic spinal afferent function. Specifically, we sought to evaluate the effect of galanin on lumbar splanchnic nerve (LSN) mechanosensitivity to noxious distending pressures and the development of hypersensitivity in the presence of inflammatory stimuli and colitis. Using ex vivo electrophysiological recordings we show that galanin produces a dose-dependent inhibition of colonic LSN responses to mechanical stimuli and prevents the development of hypersensitivity to acutely administered inflammatory mediators. Using galanin receptor (GalR) agonists, we show that GalR1 activation, but not GalR2/3 activation, inhibits mechanosensitivity. The inhibitory effect of galanin on colonic afferent activity was not observed in tissue from mice with dextran sodium sulphate-induced colitis. We conclude that galanin has a marked inhibitory effect on colonic mechanosensitivity at noxious distending pressures and prevents the acute development of mechanical hypersensitivity to inflammatory mediator, an effect not seen in the inflamed colon. These actions highlight a potential role for galanin in the regulation of mechanical nociception from the bowel and the therapeutic potential of targeting galaninergic signalling to treat visceral hypersensitivity. <h4>Key point summary</h4> Galanin inhibits visceral afferent mechanosensitivity to noxious phasic distension of the colon via GalR1. Galanin attenuates afferent mechanical hypersensitivity induced by the application of inflammatory mediators. Inhibition of afferent mechanosensitivity by galanin is not observed in tissues isolated from mice undergoing DSS-induced colitis Galanin inhibits the transmission of noxious mechanical stimuli by colonic afferents and its sensitisation by inflammatory mediators highlighting an antinociceptive role for galanin in the colon.

Publication ID: 
1190486
Published date: 
December 2019
Publication source: 
epmc
Publication type: 
Internet publications
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