首页> 外文期刊>American Journal of Physiology >Brain activation following peripheral administration of the GLP-1 receptor agonist exendin-4.
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Brain activation following peripheral administration of the GLP-1 receptor agonist exendin-4.

机译:外周给药GLP-1受体激动剂exendin-4后的大脑激活。

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The aim of our study was to investigate the anorectic and brain stimulatory effects of various doses of exendin-4 (Ex-4) and to investigate the role of the vagus nerve in Ex-4-induced brain activation. A dose-related increase in c-fos mRNA expression was observed following Ex-4 administration (0.155-15.5 mug/kg). Doses of Ex-4 that caused anorexia without aversive effects (0.155, 0.775 mug/kg) induced c-fos expression in the hypothalamic arcuate and paraventricular (PVH; parvocellular) nuclei as well as in the limbic and brainstem structures. Doses of Ex-4 that caused aversion (1.55, 15.5 mug/kg) stimulated the same regions (in a more intense way) and additionally activated the magnocellular hypothalamic structures (supraoptic nucleus and PVH magnocellular). The brain c-fos pattern induced by Ex-4 showed both similarities and differences with that induced by refeeding. Subdiaphragmatic vagotomy significantly blunted the stimulation of c-fos mRNA expression induced by Ex-4 in the nodose ganglion, the medial part of nucleus of the solitary tract, and the parvocellular division of the PVH. Pretreatment with Ex-9-39 (330 mug/kg ip) impaired the neuronal activation evoked by Ex-4 in all brain regions and in the nodose ganglion. Effects of Ex-4 on hypothalamic-pituitary-adrenal axis activity were not altered by vagotomy. Results of this study demonstrate and relate the anorectic and brain stimulatory effects of aversive and nonaversive doses of Ex-4 and indicate that the activation of specific central regions induced by the peripheral administration of Ex-4 is, at least in part, dependent on the integrity of the vagus nerve.
机译:我们研究的目的是研究各种剂量的exendin-4(Ex-4)的厌食和大脑刺激作用,并研究迷走神经在Ex-4诱导的大脑激活中的作用。在Ex-4给药后,观察到c-fos mRNA表达的剂量相关增加(0.155-15.5杯/千克)。引起厌食而没有厌恶效应的Ex-4剂量(0.155,0.775杯/千克)在下丘脑弓状和室旁(PVH;小细胞)核以及边缘和脑干结构中诱导c-fos表达。引起厌恶的Ex-4剂量(1.55、15.5杯/千克)刺激相同区域(以更强烈的方式),并额外激活了巨细胞下丘脑结构(视上核和PVH巨细胞)。 Ex-4诱导的脑c-fos模式与补料诱导的脑c-fos模式既相似又不同。 dia下迷走神经切断术明显抑制了由Ex-4诱导的结节神经节,孤立道核的内侧部分和PVH的小细胞分裂对c-fos mRNA表达的刺激。用Ex-9-39(330杯/千克ip ip)进行的预处理损害了Ex-4在所有脑区和结节神经节中引起的神经元活化。迷走神经切断术并没有改变Ex-4对下丘脑-垂体-肾上腺轴活动的影响。这项研究的结果证明了与厌恶性和非厌恶性剂量的Ex-4的厌食和脑刺激作用有关,并表明,外围施用Ex-4诱导的特定中央区域的激活至少部分依赖于Ex-4。迷走神经的完整性。

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