Yannielli P C, Brewer J McKinley, Harrington M E
Department of Psychology and Neuroscience Program, Smith College, Northampton, MA 01063, USA.
Eur J Neurosci. 2004 Feb;19(4):891-7. doi: 10.1111/j.0953-816x.2004.03098.x.
Neuropeptide Y (NPY) is delivered to the suprachiasmatic nuclei (SCN) circadian pacemaker via an input from the thalamic intergeniculate leaflet. NPY can inhibit light-induced responses of the circadian system of Syrian hamsters. Here we studied whether an antagonist to NPY receptors can be used to potentiate photic phase shifts late in the subjective night. First we determined by in situ hybridization that both NPY Y1 and Y5 receptor mRNA are expressed in the SCN of Syrian hamsters. Second, similar to our previous findings at Zeitgeber time 14 (ZT 14, where ZT 12 was the time of lights off), we found that NPY applied at ZT 18.5 onto the SCN region of brain slices maintained in vitro could block NMDA-induced phase advances of the spontaneous firing rate rhythm, and this blocking effect was probably mediated by the Y5 receptor, since co-application of Y5 receptor antagonists completely reversed the effect of NPY, while application of a Y1 receptor antagonist had no effect under the same conditions. Third, we found that co-treatment with a Y5 receptor antagonist in vivo (s.c., 10 mg/kg) not only reversed the effect of NPY applied to the SCN in vivo through a cannula but also significantly potentiated the light-induced phase advance in the absence of NPY. This is the first report of a NPY receptor antagonist having such an effect, and indicates that NPY Y5 receptor antagonists could be clinically useful for potentiating circadian system responses to light.
神经肽Y(NPY)通过来自丘脑间膝叶的输入传递至视交叉上核(SCN)昼夜节律起搏器。NPY可抑制叙利亚仓鼠昼夜节律系统的光诱导反应。在此,我们研究了NPY受体拮抗剂是否可用于在主观夜间后期增强光诱导的相位偏移。首先,我们通过原位杂交确定NPY Y1和Y5受体mRNA均在叙利亚仓鼠的SCN中表达。其次,与我们之前在时间信号14(ZT 14,其中ZT 12为熄灯时间)的研究结果相似,我们发现,在体外维持的脑片的SCN区域于ZT 18.5施加NPY,可阻断NMDA诱导的自发放电频率节律的相位提前,且这种阻断作用可能由Y5受体介导,因为共同施加Y5受体拮抗剂可完全逆转NPY的作用,而在相同条件下施加Y1受体拮抗剂则无作用。第三,我们发现,在体内(皮下注射,10 mg/kg)与Y5受体拮抗剂共同处理,不仅可逆转通过套管在体内向SCN施加NPY的作用,还可在无NPY的情况下显著增强光诱导的相位提前。这是关于NPY受体拮抗剂具有这种作用的首次报道,表明NPY Y5受体拮抗剂在临床上可能有助于增强昼夜节律系统对光的反应。