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葡萄糖和乳酸对腹内侧下丘脑核团中葡萄糖感应神经元的不同作用。

Differential effects of glucose and lactate on glucosensing neurons in the ventromedial hypothalamic nucleus.

作者信息

Song Z, Routh V H

机构信息

Department of Pharmacology and Physiology, New Jersey Medical School, P.O. Box 1709, Newark, NJ 07101-1709, USA.

出版信息

Diabetes. 2005 Jan;54(1):15-22. doi: 10.2337/diabetes.54.1.15.

DOI:10.2337/diabetes.54.1.15
PMID:15616006
Abstract

Glucose directly alters the action potential frequency of glucosensing neurons in the ventromedial hypothalamic nucleus (VMN). Glucose-excited neurons increase, and glucose-inhibited neurons decrease, their action potential frequency as glucose increases from 0.1 to 2.5 mmol/l. Glucose-excited neurons utilize the ATP-sensitive K(+) channel (K(ATP) channel) to sense glucose, whereas glucose opens a chloride channel in glucose-inhibited neurons. We tested the hypothesis that lactate, an alternate energy substrate, also regulates the action potential frequency of VMN glucose-excited and -inhibited but not nonglucosensing neurons. As expected, lactate reversed the inhibitory effects of decreased glucose on VMN glucose-excited neurons via closure of the K(ATP) channel. Although increasing glucose from 2.5 to 5 mmol/l did not affect the activity of glucose-excited neurons, the addition of 0.5 mmol/l lactate or the K(ATP) channel blocker tolbutamide increased their action potential frequency. In contrast to the glucose-excited neurons, lactate did not reverse the effects of decreased glucose on VMN glucose-inhibited neurons. In fact, it increased their action potential frequency in both low and 2.5 mmol/l glucose. This effect was mediated by both K(ATP) and chloride channels. Nonglucosensing neurons were not affected by lactate. Thus, glucose and lactate have similar effects on VMN glucose-excited neurons, but they have opposing effects on VMN glucose-inhibited neurons.

摘要

葡萄糖可直接改变腹内侧下丘脑核(VMN)中葡萄糖感应神经元的动作电位频率。随着葡萄糖浓度从0.1毫摩尔/升增加到2.5毫摩尔/升,葡萄糖兴奋型神经元的动作电位频率增加,而葡萄糖抑制型神经元的动作电位频率降低。葡萄糖兴奋型神经元利用ATP敏感性钾通道(KATP通道)来感应葡萄糖,而葡萄糖则开启葡萄糖抑制型神经元中的氯离子通道。我们检验了这样一个假设,即乳酸作为一种替代能量底物,也调节VMN葡萄糖兴奋型和抑制型神经元而非非葡萄糖感应神经元的动作电位频率。正如预期的那样,乳酸通过关闭KATP通道逆转了葡萄糖降低对VMN葡萄糖兴奋型神经元的抑制作用。尽管将葡萄糖浓度从2.5毫摩尔/升提高到5毫摩尔/升并不影响葡萄糖兴奋型神经元的活性,但添加0.5毫摩尔/升乳酸或KATP通道阻滞剂甲苯磺丁脲会增加它们的动作电位频率。与葡萄糖兴奋型神经元不同,乳酸并没有逆转葡萄糖降低对VMN葡萄糖抑制型神经元的影响。事实上,在低葡萄糖浓度和2.5毫摩尔/升葡萄糖浓度下,它都增加了这些神经元的动作电位频率。这种作用是由KATP通道和氯离子通道共同介导的。非葡萄糖感应神经元不受乳酸的影响。因此,葡萄糖和乳酸对VMN葡萄糖兴奋型神经元有相似的作用,但它们对VMN葡萄糖抑制型神经元有相反的作用。

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