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Publication : Unaltered pain-related behavior in mice lacking NMDA receptor GluRepsilon 1 subunit.

First Author  Petrenko AB Year  2003
Journal  Neurosci Res Volume  46
Issue  2 Pages  199-204
PubMed ID  12767483 Mgi Jnum  J:102778
Mgi Id  MGI:3608061 Doi  10.1016/s0168-0102(03)00061-0
Citation  Petrenko AB, et al. (2003) Unaltered pain-related behavior in mice lacking NMDA receptor GluRepsilon 1 subunit. Neurosci Res 46(2):199-204
abstractText  Noxious afferent input following tissue damage and inflammation triggers a state of neuronal hyperexcitability-a phenomenon of central sensitization-which manifests behaviorally as allodynia and hyperalgesia. At the molecular level, maintenance of central sensitization is largely dependent on the N-methyl-D-aspartate receptor (NMDAR) activation. NMDARs are composed of GluRzeta1 (NR1) and one of four GluRepsilon (NR2) subunits, which determine the functional properties of native NMDARs. Although there is accumulating evidence to implicate GluRepsilon 2-containing NMDARs in pain mechanisms, the functional significance of GluRepsilon 1-containing NMDARs in this setting has not been examined in detail. Here, we used hind paw injection of formalin, complete Freund's adjuvant and a nerve injury model to investigate the effects of GluRepsilon 1 subunit gene deletion on pain-related behavior in mice. In all of the models tested, GluRepsilon 1-deficient mice exhibited responses similar to wild-type controls. These results suggest that GluRepsilon 1 disruption does not result in altered nociceptive behavior in mice. Although the contribution of other nociceptive pathways cannot be ruled out, we speculate that the preserved function of GluRepsilon 2-containing NMDARs could explain unaltered nociceptive behavior in mutant mice.
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