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甘丙肽抑制大鼠肠道相关迷走神经元。

Galanin inhibits gut-related vagal neurons in rats.

作者信息

Tan Zhenjun, Fogel Ronald, Jiang Chunhui, Zhang Xueguo

机构信息

Laboratory of Neurogastroenterology Research, Henry Ford Health System, Detroit, Michigan 48202, USA.

出版信息

J Neurophysiol. 2004 May;91(5):2330-43. doi: 10.1152/jn.00869.2003. Epub 2003 Dec 24.

Abstract

Galanin plays an important role in the regulation of food intake, energy balance, and body weight. Many galanin-positive fibers as well as galanin-positive neurons were seen in the dorsal vagal complex, suggesting that galanin produces its effects by actions involving vagal neurons. In the present experiment, we used tract-tracing and neurophysiological techniques to evaluate the origin of the galaninergic fibers and the effect of galanin on neurons in the dorsal vagal complex. Our results reveal that the nucleus of the solitary tract is the major source of the galanin terminals in the dorsal vagal complex. In vivo experiments demonstrated that galanin inhibited the majority of gut-related neurons in the dorsal motor nucleus of the vagus. In vitro experiments demonstrated that galanin inhibited the majority of stomach-projecting neurons in the dorsal motor nucleus of the vagus by suppressing spontaneous activity and/or producing a fully reversible dose-dependent membrane hyperpolarization and outward current. The galanin-induced hyperpolarization and outward current persisted after synaptic input was blocked, suggesting that galanin acts directly on receptors of neurons in the dorsal motor nucleus of the vagus. The reversal potential induced by galanin was close to the potassium ion potentials of the Nernst equation and was prevented by the potassium channel blocker tetraethylammonium, indicating that the inhibitory effect of galanin was mediated by a potassium channel. These results indicate that the dorsal motor nucleus of the vagus is inhibited by galanin derived predominantly from neurons in the nucleus of the solitary tract projecting to the dorsal motor nucleus of the vagus nerve. Galanin is one of the neurotransmitters involved in the vago-vagal reflex.

摘要

甘丙肽在食物摄入、能量平衡和体重调节中发挥着重要作用。在迷走神经背侧复合体中可见许多甘丙肽阳性纤维以及甘丙肽阳性神经元,这表明甘丙肽通过涉及迷走神经神经元的作用来产生其效应。在本实验中,我们使用了示踪和神经生理学技术来评估甘丙肽能纤维的起源以及甘丙肽对迷走神经背侧复合体中神经元的影响。我们的结果表明,孤束核是迷走神经背侧复合体中甘丙肽终末的主要来源。体内实验表明,甘丙肽抑制了迷走神经背运动核中大多数与肠道相关的神经元。体外实验表明,甘丙肽通过抑制自发活动和/或产生完全可逆的剂量依赖性膜超极化和外向电流,抑制了迷走神经背运动核中大多数投射到胃的神经元。在突触输入被阻断后,甘丙肽诱导的超极化和外向电流仍然存在,这表明甘丙肽直接作用于迷走神经背运动核中神经元的受体。甘丙肽诱导的反转电位接近能斯特方程的钾离子电位,并被钾通道阻滞剂四乙铵所阻断,这表明甘丙肽的抑制作用是由钾通道介导的。这些结果表明,迷走神经背运动核受到主要来自孤束核中投射到迷走神经背运动核的神经元所释放的甘丙肽的抑制。甘丙肽是参与迷走-迷走反射的神经递质之一。

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