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小鼠脊髓神经元培养物中的突触兴奋:受体药理学与突触电流行为

Synaptic excitation in cultures of mouse spinal cord neurones: receptor pharmacology and behaviour of synaptic currents.

作者信息

Nelson P G, Pun R Y, Westbrook G L

出版信息

J Physiol. 1986 Mar;372:169-90. doi: 10.1113/jphysiol.1986.sp016003.

Abstract

Fast monosynaptic excitatory post-synaptic potentials between spinal cord neurones in cell culture (s.c.-s.c. e.p.s.p.s) were studied with current-clamp and two-electrode voltage-clamp methods. The reversal potential, response to acidic amino acid antagonists, and behaviour of the synaptic current were examined. The amplitude of the e.p.s.p. increased with membrane potential hyperpolarization and decreased with depolarization. The reversal potential of the e.p.s.p. was +3.8 +/- 2.5 mV (mean +/- S.E. of mean). The reversal potential for responses to ionophoretically applied L-glutamate and L-aspartate was also near 0 mV. The acidic amino acid antagonist, cis-2,3-piperidine dicarboxylic acid (PDA, 0.25-1.0 mM) reversibly antagonized the monosynaptic e.p.s.p.s as well as responses to kainate (KA) or quisqualate (QA). The selective N-methyl-D-aspartate antagonist, (+/-) 2-amino-5-phosphonovaleric acid (APV), had little effect on either the monosynaptic e.p.s.p.s or responses to QA or KA at concentrations that abolished responses to L-aspartate. Under voltage clamp, the peak synaptic current (e.p.s.c.) was linearly related to the membrane potential, increasing in amplitude with hyperpolarization and decreasing with depolarization from the resting potential. The decay of a somatic e.p.s.c. was well fitted by a single exponential function with a time constant of 0.6 ms at 25 degrees C. E.p.s.c.s which had proximal dendritic locations had decay time constants of 1-2 ms. The decay time constant was voltage-insensitive between -80 and +10 mV. We suggest that an acidic amino acid receptor other than that for NMDA mediates excitatory transmission at the s.c.-s.c. synapse; and that the underlying conductance mechanism is voltage insensitive with an estimated mean channel lifetime of less than 1 ms.

摘要

采用电流钳和双电极电压钳方法,研究了细胞培养脊髓神经元之间的快速单突触兴奋性突触后电位(脊髓 - 脊髓兴奋性突触后电位,s.c.-s.c. e.p.s.p.s)。检测了其反转电位、对酸性氨基酸拮抗剂的反应以及突触电流的特性。兴奋性突触后电位的幅度随膜电位超极化而增加,随去极化而降低。兴奋性突触后电位的反转电位为+3.8±2.5 mV(平均值±平均标准误)。离子电泳施加L - 谷氨酸和L - 天冬氨酸时的反应反转电位也接近0 mV。酸性氨基酸拮抗剂顺式 - 2,3 - 哌啶二羧酸(PDA,0.25 - 1.0 mM)可逆性拮抗单突触兴奋性突触后电位以及对海人藻酸(KA)或quisqualate(QA)的反应。选择性N - 甲基 - D - 天冬氨酸拮抗剂(±)2 - 氨基 - 5 - 磷酸戊酸(APV)在消除对L - 天冬氨酸反应的浓度下,对单突触兴奋性突触后电位或对QA或KA的反应几乎没有影响。在电压钳下,突触电流峰值(兴奋性突触后电流,e.p.s.c.)与膜电位呈线性关系,幅度随超极化而增加,从静息电位去极化时幅度降低。在25℃时,体细胞兴奋性突触后电流的衰减很好地拟合为单指数函数,时间常数为0.6 ms。位于近端树突的兴奋性突触后电流的衰减时间常数为1 - 2 ms。衰减时间常数在 - 80至+10 mV之间对电压不敏感。我们认为,除NMDA受体外的酸性氨基酸受体介导脊髓 - 脊髓突触处的兴奋性传递;并且潜在的电导机制对电压不敏感,估计平均通道寿命小于1 ms。

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