首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Co-distribution of Fos- and mu opioid receptor immunoreactivity within the rat septopreoptic area and hypothalamus during acute glucose deprivation: effects of the mu receptor antagonist CTOP.
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Co-distribution of Fos- and mu opioid receptor immunoreactivity within the rat septopreoptic area and hypothalamus during acute glucose deprivation: effects of the mu receptor antagonist CTOP.

机译:急性葡萄糖剥夺过程中大鼠中视视区和下丘脑内Fos和mu阿片受体免疫反应性的共同分布:mu受体拮抗剂CTOP的作用。

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Mu opioid receptors occur throughout the brain, but central sites where ligand neuromodulatory effects occur during glucopenia have not been identified. The present studies investigated whether septal, preoptic, and hypothalamic neurons that express immunoreactivity for this receptor are transcriptionally activated in response to the glucose antimetabolite, 2-deoxy-D-glucose (2DG), and if intracerebroventricular (icv) administration of the selective mu receptor antagonist, CTOP, modifies this functional response to glucose substrate imbalance. Neurons labeled for mu receptor-immunoreactivity (-ir) were observed in the lateral septal nucleus (LS), medial septum (MS), anterior division of the stria terminalis (BSTa), median preoptic nucleus (MEPO), medial preoptic nucleus (MPN), parastrial nucleus (PS), anterior hypothalamic periventricular nucleus (PVa), and lateral hypothalamic area (LPO). 2DG injection (400 mg/kg i.p.) resulted in co-labeling of mu receptor-positive neurons in the LS, MS, BSTa, MEPO, PVa, and LPO for nuclear Fos-ir. Icv delivery of CTOP decreased mean numbers of co-labeled neurons in the LS, MS, BSTa, and MEPO. These results provide evidence for transactivational effects of glucopenia on mu opioid receptor-expressing neurons within the septum, preoptic area, and hypothalamus, and suggest that the functional status of these receptors within discrete septopreoptic sites may be critical for maximal glucoprivic induction of the Fos stimulus-transcription cascade within local cells. These results thus support the view that the neural loci described above may serve as substrates for regulatory effects of mu opioid receptor ligands on central compensatory activities during acute glucose deprivation.
机译:Mu阿片样物质受体遍布整个大脑,但尚未确定在糖尿期间发生配体神经调节作用的中心部位。本研究调查了针对该受体表达免疫反应性的间隔,视前和下丘脑神经元是否在葡萄糖抗代谢物,2-脱氧-D-葡萄糖(2DG)的应答以及是否在脑室内(icv)施用选择性mu而被转录激活受体拮抗剂CTOP改变了这种对葡萄糖底物失衡的功能反应。在外侧中隔核(LS),内侧中隔(MS),终末纹状体前区(BSTa),正视前核(MEPO),视前中核(MPN)中观察到标记有mu受体免疫反应性(-ir)的神经元),皮层旁核(PS),下丘脑前脑室周围核(PVa)和下丘脑外侧区域(LPO)。 2DG注射(400 mg / kg i.p.)导致LS,MS,BSTa,MEPO,PVa和LPO中mu受体阳性神经元的共标记为核Fos-ir。 CTOP的Iv传递减少了LS,MS,BSTa和MEPO中共标记神经元的平均数量。这些结果提供了糖原减少对中隔,视前区和下丘脑中表达μ阿片受体的神经元的反式激活作用的证据,并表明这些受体在离散的视光部位内的功能状态可能对最大的糖皮质激素诱导的Fos刺激至关重要。转录在局部细胞内级联。因此,这些结果支持这样的观点,即上述神经基因座可以用作μ阿片受体配体对急性葡萄糖剥夺过程中中央代偿活动的调节作用的底物。

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