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负责大鼠低血糖诱发的迷走神经向胰腺传出信号的下丘脑 - 脑干神经回路。

Hypothalamus-brain stem circuitry responsible for vagal efferent signaling to the pancreas evoked by hypoglycemia in rat.

作者信息

Wu Xiaoyin, Gao Jun, Yan Jin, Owyang Chung, Li Ying

机构信息

Gastroenterology Research Unit, Department of Internal Medicine, University of Michigan Health System, Ann Arbor, Michigan 48109, USA.

出版信息

J Neurophysiol. 2004 Apr;91(4):1734-47. doi: 10.1152/jn.00791.2003. Epub 2003 Nov 26.

Abstract

Circulating glucose levels significantly affect vagal neural activity, which is important in the regulation of pancreatic functions. Little is known about the mechanisms involved. This study investigates the neural pathways responsible for hypoglycemia-induced vagal efferent signaling to the pancreas and identifies the neurotransmitters involved. Vagal pancreatic efferent nerve activities were recorded in anesthetized rats. Insulin-induced hypoglycemia, a decrease of blood glucose levels from 114 +/- 5 to 74 +/- 6 mg dl(-1), stimulated an increase in pancreatic efferent nerve firing from a basal rate of 1.1 +/- 0.3 to 19 +/- 3 impulses 30 s(-1). In contrast, vagal primary afferent neuronal discharges recorded in the nodose ganglia were unaltered by systemic hypoglycemia. Vagal afferent rootlet section plus splanchnicotomy had no effect on hypoglycemia-induced vagal efferent firing, suggesting a central site of action. Decerebration reduced the increase in nerve firing stimulated by hypoglycemia from 21 +/- 4 to 9.6 +/- 2 impulses 30 s(-1). Chemical ablation of the lateral hypothalamic area, but not the arcuate nucleus, inhibited pancreatic nerve firing evoked by hypoglycemia. Microinjection of the orexin-A receptor antagonist SB-334867 into the dorsal motor nucleus of the vagus (DMV) inhibited pancreatic nerve firing evoked by insulin-induced hypoglycemia by 56%. In contrast, injection of orexin-A (20 pmol) into the DMV elicited a 30-fold increase in pancreatic nerve firing. We concluded that systemic hypoglycemia stimulates pancreatic efferent nerve firing through a central mechanism. Full expression of pancreatic nerve activities during hypoglycemia requires both the forebrain and the brain stem. In addition to activating neurons in the brain stem, central neuroglucopenia activates subpopulations of neurons in the lateral hypothalamic area that contain orexin. The released orexin acts on DMV neurons to stimulate pancreatic efferent nerve activities and thus regulate pancreatic functions.

摘要

循环葡萄糖水平显著影响迷走神经活动,这在胰腺功能调节中很重要。目前对其中涉及的机制了解甚少。本研究调查了低血糖诱导的迷走神经向胰腺传出信号的神经通路,并确定了其中涉及的神经递质。在麻醉大鼠中记录迷走神经胰腺传出神经活动。胰岛素诱导的低血糖,即血糖水平从114±5降至74±6mg dl⁻¹,刺激胰腺传出神经放电从基础频率1.1±0.3增加至19±3次冲动30秒⁻¹。相比之下,在结状神经节记录的迷走神经初级传入神经元放电不受全身性低血糖影响。切断迷走神经传入小根加内脏神经切断术对低血糖诱导的迷走神经传出放电无影响,提示作用部位在中枢。去大脑状态使低血糖刺激的神经放电增加从21±4降至9.6±2次冲动30秒⁻¹。化学损毁下丘脑外侧区而非弓状核,可抑制低血糖诱发的胰腺神经放电。向迷走神经背核(DMV)微量注射食欲素-A受体拮抗剂SB-334867可使胰岛素诱导的低血糖诱发的胰腺神经放电抑制56%。相反,向DMV注射食欲素-A(20pmol)可使胰腺神经放电增加30倍。我们得出结论,全身性低血糖通过中枢机制刺激胰腺传出神经放电。低血糖期间胰腺神经活动的充分表达需要前脑和脑干。除了激活脑干中的神经元外,中枢神经低血糖还激活下丘脑外侧区含有食欲素的神经元亚群。释放的食欲素作用于DMV神经元以刺激胰腺传出神经活动,从而调节胰腺功能。

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