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N-甲基-D-天冬氨酸(NMDA)受体介导大鼠胚胎运动神经元中的多突触和单突触电位。

NMDA receptors mediate poly- and monosynaptic potentials in motoneurons of rat embryos.

作者信息

Ziskind-Conhaim L

机构信息

Department of Physiology, University of Wisconsin, Madison 53706.

出版信息

J Neurosci. 1990 Jan;10(1):125-35. doi: 10.1523/JNEUROSCI.10-01-00125.1990.

Abstract

We determined the contribution of glutamate receptor subtypes to developing excitatory synaptic transmission in isolated spinal cord of rat embryos. Using electrophysiological and morphological techniques, we studied the pattern of development of synapses between dorsal root afferents and motoneurons in lumbar spinal cords of 15- to 21-d-old rat embryos. Motoneuron dendritic fields and afferent projections onto motoneurons were identified by labeling with HRP. Afferents first entered the gray matter at Day 15 of gestation, and by Day 16 they terminated close to motoneuron dendritic trees. Afferent axons projected onto motoneuron dendritic fields at Day 17, when boutons were detected on motoneuron dendrites that were crossed by afferent axons. To determine the time course of formation of functional sensorimotor synapses and their pharmacological properties, a dorsal root was stimulated while recording intracellularly from segmental motoneurons. At Day 16, excitatory postsynaptic potentials (EPSPs) with long latencies, slow rates of rise, and long durations were recorded. The amplitudes of these EPSPs increased with membrane depolarization and in the absence of extracellular Mg2+. These EPSPs were blocked by D-2-amino-5-phosphonovalerate (APV) and ketamine, which are selective antagonists of N-methyl-D-aspartate (NMDA) receptors. These findings suggest that initial synaptic transmission in embryonic motoneurons is mediated solely by NMDA receptors. Short-latency EPSPs with fast rates of rise were first recorded in most motoneurons by Day 17. These EPSPs were composed of fast- and slow-rising potentials. The slow component was blocked by APV, while the fast component was eliminated by 6-cyano-7-nitroquinoxaline-2,3-dione and kynurenate. This indicates that the short-latency EPSPs are mediated by both NMDA and non-NMDA receptors. Dose-response curves of motoneurons to L-glutamate, NMDA, and kainate demonstrated that motoneurons are sensitive to these agonists prior to the formation of synapses between afferents and motoneurons. Motoneuron responses to NMDA and kainate increased immediately after the onset of short-latency EPSPs. This increased sensitivity could be due to extracellular factors influenced by growing sensory axons or intrinsic properties of differentiating motoneurons.

摘要

我们确定了谷氨酸受体亚型在大鼠胚胎离体脊髓兴奋性突触传递发育过程中的作用。运用电生理和形态学技术,我们研究了15至21日龄大鼠胚胎腰段脊髓背根传入纤维与运动神经元之间突触的发育模式。通过用辣根过氧化物酶(HRP)标记来识别运动神经元的树突野和投射到运动神经元上的传入纤维。传入纤维在妊娠第15天首次进入灰质,到第16天它们终止于靠近运动神经元树突树的位置。在第17天,传入轴突投射到运动神经元树突野上,此时在被传入轴突穿过的运动神经元树突上检测到了突触小体。为了确定功能性感觉运动突触形成的时间进程及其药理学特性,在对节段性运动神经元进行细胞内记录的同时刺激背根。在第16天,记录到潜伏期长、上升速率慢且持续时间长的兴奋性突触后电位(EPSP)。这些EPSP的幅度随膜去极化增加,且在细胞外无镁离子的情况下也会增加。这些EPSP被D - 2 - 氨基 - 5 - 磷酸戊酸(APV)和氯胺酮阻断,它们是N - 甲基 - D - 天冬氨酸(NMDA)受体的选择性拮抗剂。这些发现表明胚胎运动神经元中的初始突触传递仅由NMDA受体介导。到第17天,大多数运动神经元首次记录到上升速率快的短潜伏期EPSP。这些EPSP由快速上升和缓慢上升的电位组成。缓慢成分被APV阻断,而快速成分被6 - 氰基 - 7 - 硝基喹喔啉 - 2,3 - 二酮和犬尿烯酸消除。这表明短潜伏期EPSP由NMDA和非NMDA受体共同介导。运动神经元对L - 谷氨酸、NMDA和海人酸的剂量 - 反应曲线表明,在传入纤维与运动神经元之间形成突触之前,运动神经元对这些激动剂就很敏感。短潜伏期EPSP开始后,运动神经元对NMDA和海人酸的反应立即增强。这种敏感性增加可能是由于受生长中的感觉轴突影响的细胞外因素或分化中的运动神经元的内在特性所致。

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