Galanin is a modulator of eccrine sweat gland secretion
EXPERIMENTAL DERMATOLOGY
Authors: Bovell, Douglas L.; Holub, Barbara S.; Odusanwo, Olutayo; Brodowicz, Bernhard; Rauch, Isabella; Kofler, Barbara; Lang, Roland
Abstract
The neuropeptide galanin has been ascribed different roles in modulating physiological functions in the skin. The present study examined the function of galanin in eccrine sweat gland physiology. We demonstrated secretion of galanin by sweat glands in vivo by radioimmunoassay of human sweat (20192fmol galanin/ml). Furthermore, human sweat glands expressed galanin receptors GalR2 and GalR3. Using chamber short-circuit current (Isc) measurements showed that application of galanin to human NCL-SG3 cells led to a significant increase in Isc, which was inhibited by the presence of chloride channel blockers and in chloride-free Krebs solution. Additionally, application of SNAP 37889, a non-peptidergic selective antagonist of GalR3, abolished the effect of galanin on Isc. In summary, our results show that galanin can regulate transepithelial chloride ion transport and fluid secretion by stimulating GalR3 in NCL-SG3 cells and demonstrate a possible important extraneural function of galanin in sweat gland physiology.
Galanin, galanin receptor subtypes and depression-like behaviour
CELLULAR AND MOLECULAR LIFE SCIENCES
Authors: Kuteeva, E.; Hokfelt, T.; Wardi, T.; Ogren, S. O.
Abstract
The pathophysiology of depression remains unclear, but involves disturbances in brain monoaminergic transmission. Current antidepressant drugs, which act by enhancing this type of transmission, have limited therapeutic efficacy in a number of patients, and not rarely serious side-effects. Increasing evidence suggests that neuropeptides, including galanin, can be of relevance in mood disorders. Galanin is coexpressed with and modulates noradrenaline and serotonin systems, both implicated in depression. Pharmacological and genetic studies have suggested a role for galanin in depression-like behaviour in rodents, whereby the receptor subtype involved appears to play an important role. Thus, stimulation of GalR1 and/or GalR3 receptors results in depression-like phenotype, while activation of the GalR2 receptor attenuates depression-like behaviour. These findings suggest that galanin receptor subtypes represent targets for development of novel antidepressant drugs.