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下丘脑对大鼠胰高血糖素和胰岛素分泌的调节作用。

The modulatory effect of the hypothalamus on glucagon and insulin secretion in the rat.

作者信息

Steffens A B

出版信息

Diabetologia. 1981 Mar;20 Suppl:411-6.

PMID:7014337
Abstract

Rats were provided both with brain cannulas, to permit infusion in the ventromedial and lateral hypothalamic areas (resp. VMH and LH), and with two heart catheters. In this way infusions of fluids and withdrawal of blood could be done in unanesthetized free moving animals. Infusion of norepinephrine (NE) in the VMH elicited glucagon release during the whole period of NE infusion whereas insulin levels did not change. This glucagon release could not be suppressed by alpha- and beta-receptor blockade but it was suppressed by hexamethonium, a blocking agent of signal transmission in peripheral ganglia of the autonomic nervous system. On the other hand, infusion of NE in the LH elicited insulin release during the whole period of NE infusion whereas glucagon levels remained unchanged. It is argued that [1] the sympathetic nervous system is involved in glucagon release, [2] no alpha- and beta-receptor mechanisms are involved during this glucagon release, [3] the parasympathetic nervous system is involved in insulin release during noradrenergic LH stimulation.

摘要

给大鼠植入脑套管,以便向腹内侧下丘脑区域和外侧下丘脑区域(分别为VMH和LH)注入物质,同时植入两根心脏导管。通过这种方式,可以在未麻醉的自由活动动物身上进行液体注入和血液抽取。向VMH注入去甲肾上腺素(NE)在整个NE注入期间引发胰高血糖素释放,而胰岛素水平没有变化。这种胰高血糖素释放不能被α和β受体阻断所抑制,但可被六甲铵抑制,六甲铵是自主神经系统外周神经节信号传递的阻断剂。另一方面,向LH注入NE在整个NE注入期间引发胰岛素释放,而胰高血糖素水平保持不变。有人认为:[1]交感神经系统参与胰高血糖素释放;[2]在此胰高血糖素释放过程中不涉及α和β受体机制;[3]副交感神经系统在去甲肾上腺素能刺激LH期间参与胰岛素释放。

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