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胆囊收缩素引起的进食反应是通过迷走神经和内脏神经介导的。

The feeding responses evoked by cholecystokinin are mediated by vagus and splanchnic nerves.

机构信息

Gastroenterology Laboratory, Department of Biomedical Sciences, College of Veterinary Medicine, Tuskegee University, Tuskegee, AL, USA.

出版信息

Peptides. 2011 Aug;32(8):1581-6. doi: 10.1016/j.peptides.2011.06.024. Epub 2011 Jul 2.

Abstract

Total or selective branch vagotomy attenuates the reduction of cumulative food intake by cholecystokinin (CCK)-8 and CCK-33 respectively. However, the role of the sympathetic innervation of the gut and the role of the vagus nerve in feeding responses, which include meal size (MS) and intermeal interval (IMI), evoked by CCK-8 and CCK-33 have not been evaluated. Here, we tested the effects of total subdiaphragmatic vagotomy (VGX) and celiaco-mesenteric ganglionectomy (CMGX) on the previous feeding responses by CCK-8 and CCK-33 (0, 1, 3, and 5 nmol/kg given intraperitoneally). We found (1) that both peptides reduced meal size and CCK-8 (5 nmol) and CCK-33 (1 and 3 nmol) prolonged IMI, (2) that VGX attenuated the reduction of MS but failed to attenuate the prolongation of IMI by both peptides and (3) that CMGX attenuated the reduction of meal size by CCK-8 and the prolongation of IMI by both peptides. Therefore, the feeding responses evoked by CCK-8 require intact vagus and splanchnic nerves: the reduction of MS by CCK-33 requires an intact vagus nerve, and the prolongation of IMI requires the splanchnic nerve. These findings demonstrate the differential peripheral neuronal mediation of the feeding responses evoked by CCK-8 and CCK-33.

摘要

全或选择性迷走神经切断术可分别减弱胆囊收缩素(CCK)-8 和 CCK-33 引起的累积食物摄入量减少。然而,尚未评估肠道交感神经支配和迷走神经在 CCK-8 和 CCK-33 引起的进食反应(包括餐量(MS)和进食间隔(IMI))中的作用。在这里,我们测试了全膈下迷走神经切断术(VGX)和腹腔肠系膜神经节切除术(CMGX)对 CCK-8 和 CCK-33 先前的进食反应的影响(分别腹腔内给予 0、1、3 和 5 nmol/kg)。我们发现:(1)两种肽均减少了餐量,CCK-8(5 nmol)和 CCK-33(1 和 3 nmol)延长了 IMI;(2)VGX 减弱了 MS 的减少,但未能减弱两种肽引起的 IMI 的延长;(3)CMGX 减弱了 CCK-8 引起的餐量减少和两种肽引起的 IMI 的延长。因此,CCK-8 引起的进食反应需要完整的迷走神经和内脏神经:CCK-33 引起的 MS 减少需要完整的迷走神经,而 IMI 的延长需要内脏神经。这些发现表明 CCK-8 和 CCK-33 引起的进食反应的外周神经元介导存在差异。

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