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谷氨酸对视交叉上核神经元膜电位和放电率的影响。

The effects of glutamate on membrane potential and discharge rate of suprachiasmatic neurons.

作者信息

Meijer J H, Albus H, Weidema F, Ravesloot J H

机构信息

Department of Physiology, Leiden, The Netherlands.

出版信息

Brain Res. 1993 Feb 19;603(2):284-8. doi: 10.1016/0006-8993(93)91249-r.

Abstract

The suprachiasmatic nucleus (SCN) is a major pacemaker for circadian rhythms in mammals. Photic entrainment of the circadian pacemaker is mediated by the retinohypothalamic tract (RHT). Most likely, excitatory amino acids function as neurotransmitters in this pathway. We have now investigated the effect of glutamate on the membrane potential of cultured SCN cells of the rat with the aid of the patch clamp technique. It was found that 1 mM glutamate depolarizes the cells by about +44 mV. In spontaneously active neurons, the glutamate induced depolarization caused either an increase in discharge or a depolarization block. We then investigated the effect of 1 mM glutamate on SCN discharge in the acutely prepared hypothalamic slice of the hamster. In most cells glutamate induced an increase in discharge whilst in a few cells discharge was suppressed. Both series of experiments indicate that glutamate in the used dosage was effective and its effect reversible. The data are discussed with respect to the failure of 1 mM glutamate injections to mimic the effect of light on the circadian activity rhythm of the hamster.

摘要

视交叉上核(SCN)是哺乳动物昼夜节律的主要起搏器。昼夜节律起搏器的光诱导同步是由视网膜下丘脑束(RHT)介导的。在这条通路中,兴奋性氨基酸很可能作为神经递质发挥作用。我们现在借助膜片钳技术研究了谷氨酸对培养的大鼠SCN细胞膜电位的影响。结果发现,1 mM谷氨酸使细胞去极化约 +44 mV。在自发活动的神经元中,谷氨酸诱导的去极化要么导致放电增加,要么导致去极化阻滞。然后我们研究了1 mM谷氨酸对急性制备的仓鼠下丘脑切片中SCN放电的影响。在大多数细胞中,谷氨酸诱导放电增加,而在少数细胞中放电受到抑制。这两组实验均表明,所用剂量的谷氨酸是有效的,且其作用是可逆的。针对1 mM谷氨酸注射未能模拟光对仓鼠昼夜活动节律的影响这一情况,对这些数据进行了讨论。

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