...
首页> 外文期刊>American Journal of Physiology >Activation of NPY receptors suppresses excitatory synaptic transmission In a taste-feeding network in the lower brain stem
【24h】

Activation of NPY receptors suppresses excitatory synaptic transmission In a taste-feeding network in the lower brain stem

机译:NPY受体的激活抑制兴奋性突触传递,位于下脑干的滋味网络中

获取原文
获取原文并翻译 | 示例
           

摘要

Consummatory responses to taste stimuli are modulated by visceral signals processed in the caudal nucleus of the solitary tract (cNST) and ventrolateral medulla. On the basis of decerebrate preparations, this modulation can occur through local brain stem pathways. Among the large number of neuropeptides and neuromodulators implicated in these visceral pathways is neuro-peptide Y (NPY), which is oftentimes colocalized in catecholaminer-gic neurons themselves implicated in glucoprivic-induced feeding and satiety. In addition to the cNST and ventrolateral medulla, noradren-ergic and NPY receptors are found in circumscribed regions of the medullary reticular formation rich in preoromotor neurons. To test the hypothesis that NPY may act as a neuromodulator on preoromotor neurons, we recorded the effects of bath application of NPY and specific Y1 and Y2 agonists on currents elicited from electrical stimulation of the rostral (taste) NST in prehypoglossal neurons in a brain stem slice preparation. A high proportion of NST-driven responses were suppressed by NPY, as well as Y1 and Y2 agonists. On the basis of paired pulse ratios and changes in membrane resistance, we concluded that Y1 receptors influence these neurons both presyn-aptically and postsynaptically and that Y2 receptors have a presyn-aptic locus. To test the hypothesis that NPY may act in concert with norepinephrine (NE), we examined neurons showing suppressed responses in the presence of a Y2 agonist and demonstrated a greater degree of suppression to a Y2 agonist/NE cocktail. These suppressive effects on preoromotoneurons may reflect a satiety pathway originating from A2 neurons in the caudal brain stem.
机译:消费刺激对味觉刺激的反应是通过在孤立道(cNST)和腹外侧延髓的尾状核中处理的内脏信号来调节的。在去脑准备的基础上,这种调节可通过局部脑干途径发生。在这些内脏途径中涉及的大量神经肽和神经调节剂中,有神经肽Y(NPY),其通常共定位在儿茶酚胺能神经元本身中,这些神经元本身与糖缺乏引起的进食和饱腹有关。除了cNST和腹外侧延髓外,在富含原运动神经元的延髓网状结构的边界区域还发现了去甲肾上腺素能受体和NPY受体。为了检验NPY可能对前运动神经元起神经调节剂的假设的作用,我们记录了NPY浴和特定Y1和Y2激动剂的沐浴应用对电刺激脑干前舌下神经元的有色(味觉)NST引起的电流的影响。切片准备。 NPY以及Y1和Y2激动剂抑制了很大一部分NST驱动的反应。基于成对的脉冲比率和膜电阻的变化,我们得出结论,Y1受体在突触前和突触后均影响这些神经元,并且Y2受体具有突触前的位点。为了检验NPY可能与去甲肾上腺素(NE)协同作用的假说,我们检查了在存在Y2激动剂的情况下显示抑制反应的神经元,并证明了对Y2激动剂/ NE混合物的抑制程度更高。这些对前体激素的抑制作用可能反映了源自尾脑干中A2神经元的饱腹感途径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号