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向大鼠内侧前额叶皮质微量注射链脲佐菌素后葡萄糖耐量受损。

Impaired glucose tolerance after streptozotocin microinjection into the mediodorsal prefrontal cortex of the rat.

作者信息

Nagy B, Szabó I, Takács G, Csetényi B, Hormay E, Karádi Z

机构信息

1 Institute of Physiology, School of Medicine, University of Pécs , Pécs, Hungary.

出版信息

Physiol Int. 2016 Dec;103(4):403-412. doi: 10.1556/2060.103.2016.4.5.

Abstract

The mediodorsal prefrontal cortex (mdPFC) is a key structure of the central glucose-monitoring (GM) neural network. Previous studies indicate that intracerebral streptozotocin (STZ) microinjection-induced destruction of local chemosensory neurons results in feeding and metabolic alterations. The present experiments aimed to examine whether STZ microinjection into the mdPFC causes metabolic deficits. To do so, glucose tolerance test (GTT) and measurements of plasma metabolites were performed in STZ-treated or control rats. Intraperitoneal D-glucose load was delivered 20 min or 4 weeks following the intracerebral microinjection of STZ or saline (acute or subacute GTT, respectively). The STZ-treated rats displayed acute glucose intolerance: at the 120th min of the test, blood glucose level of these rats was significantly higher than that of the ones in the control group. When determining the plasma level of various metabolites, 30 min following the intracerebral STZ or saline microinjection, the triglyceride concentration of the STZ-treated rats was found to be reduced compared with that of the control rats. The GM neurons of the mdPFC are suggested to be involved in the organization of complex metabolic processes by which these chemosensory cells contribute to adaptive control mechanisms of the maintenance of homeostasis.

摘要

内侧前额叶皮质(mdPFC)是中枢葡萄糖监测(GM)神经网络的关键结构。先前的研究表明,脑室内注射链脲佐菌素(STZ)导致局部化学感觉神经元破坏会引起进食和代谢改变。本实验旨在研究向mdPFC内微量注射STZ是否会导致代谢缺陷。为此,对经STZ处理的大鼠或对照大鼠进行了葡萄糖耐量试验(GTT)和血浆代谢物测量。在脑室内微量注射STZ或生理盐水后20分钟或4周给予腹腔注射D-葡萄糖负荷(分别为急性或亚急性GTT)。经STZ处理的大鼠表现出急性葡萄糖不耐受:在试验的第120分钟,这些大鼠的血糖水平显著高于对照组。在脑室内注射STZ或生理盐水30分钟后测定各种代谢物的血浆水平时,发现经STZ处理的大鼠的甘油三酯浓度低于对照大鼠。提示mdPFC的GM神经元参与复杂代谢过程的组织,通过这些化学感觉细胞有助于维持体内稳态的适应性控制机制。

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