Literature DB >> 11346310

The gamma(2)-MSH peptide mediates a central analgesic effect via a GABA-ergic mechanism that is independent from activation of melanocortin receptors.

V Klusa1, S Germane, S Svirskis, B Opmane, J E Wikberg.   

Abstract

Using the latency for tail-flick after thermal stimulation we have assessed the effects of alpha-, gamma(1)- and gamma(2)-MSH on nociceptive threshold in the mice. Intracisternal injections of gamma(2)-MSH induced a distinct analgesia, while gamma(1)-MSH in the same doses gave only a minor analgesia. Intracisternal alpha-MSH instead gave a short-term hyperalgesia. The effect of gamma(2)-MSH was not blocked by any of the MC(4)/MC(3)receptor antagonist HS014, naloxone or by the prior intracisternal administrations of gamma(1)-MSH. However, the gamma(2)-MSH analgesic response was completely attenuated by treating animals with the GABA(A)antagonist bicuculline. The gamma(2)-MSH analgesic effect was moreover additive to the analgesia afforded by muscimol and ethanol, but not to that afforded by diazepam. In addition both gamma(1)- and gamma(2)-MSH induced moderate catalepsy, but could at the same time attenuate haloperidol induced catalepsia. We conclude that gamma(2)-MSH mediates a central analgesic effect via GABA-receptor dependent pathway that is distinct from melanocortic- and opioid-receptors. Moreover, the mechanism for gamma(2)-MSH's analgesic effect appears to be distinct from that causing moderate catalepsia by gamma-MSH's. Copyright 2001 Harcourt Publishers Ltd.

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Year:  2001        PMID: 11346310     DOI: 10.1054/npep.2000.0843

Source DB:  PubMed          Journal:  Neuropeptides        ISSN: 0143-4179            Impact factor:   3.286


  2 in total

1.  The effect of semax on animal pain sensitivity in various experimental models.

Authors:  D M Ivanova; N G Levitskaya; L A Andreeva; L Yu Alfeeva; A A Kamenskii; N F Myasoedov
Journal:  Dokl Biol Sci       Date:  2003 Jan-Feb

2.  Melanocortin type 4 receptor-mediated inhibition of A-type K+ current enhances sensory neuronal excitability and mechanical pain sensitivity in rats.

Authors:  Yuan Zhang; Dongsheng Jiang; Hua Li; Yufang Sun; Xinghong Jiang; Shan Gong; Zhiyuan Qian; Jin Tao
Journal:  J Biol Chem       Date:  2019-02-11       Impact factor: 5.157

  2 in total

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