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兴奋性递质释放的动力学:传入纤维重复刺激后海马CA3神经元突触反应的分析

Dynamics of excitatory transmitter release: analysis of synaptic responses in CA3 hippocampal neurons after repetitive stimulation of afferent fibers.

作者信息

Canepari M, Cherubini E

机构信息

Biophysics Sector and Istituto Nazionale Fisica della Materia, International School for Advanced Studies, 34014 Trieste, Italy.

出版信息

J Neurophysiol. 1998 Apr;79(4):1977-88. doi: 10.1152/jn.1998.79.4.1977.

Abstract

The patch-clamp technique (whole cell configuration) was used to record excitatory postsynaptic currents (EPSCs) evoked by repetitive stimulation (4 pulses at 50-ms intervals) of afferent fibers in the stratum lucidum-radiatum. Different synaptic behaviors (EPSC patterns) were classified in terms of facilitation or depression of the mean amplitude of the second, third, and fourth EPSC with respect to the previous one. A large variety of EPSC patterns was observed by stimulating different afferent fibers. Experiments with the mGluR2/mGluR3 agonist 2-(2,3-dicarboxycyclopropyl)glycine (DCG-IV) (1 microM), a compound that reduces release at mossy but not at associative commissural fibers and therefore allows to identify the origin of synaptic responses, showed that particular EPSC patterns could not be associated to the activation of a specific type of synaptic input. To investigate the role of the probability of release in the dynamics of synaptic activity, the extracellular calcium concentration was varied from 0.8 to 4 mM in several experiments. EPSC patterns dominated by depression, characteristics of high release probability conditions, could be observed in the majority of the cases in the presence of higher calcium concentrations. A quantitative model for dynamics of transmitter release has been developed. Experimental results were compared with data computed with the model taking into account the probability of release and the time course of reavailability. This work indicates that short-term changes of presynaptic conditions occurring during a train of action potentials can account for the high variability of EPSC responses. The model that is proposed also suggests a general method of experimental data analysis to investigate the possible presynaptic mechanisms underlying long-lasting changes in synaptic efficacy.

摘要

采用膜片钳技术(全细胞模式)记录在透明层-辐射层中传入纤维经重复刺激(间隔50毫秒的4个脉冲)诱发的兴奋性突触后电流(EPSC)。根据第二个、第三个和第四个EPSC相对于前一个EPSC的平均幅度的易化或抑制情况,对不同的突触行为(EPSC模式)进行分类。通过刺激不同的传入纤维观察到了各种各样的EPSC模式。使用代谢型谷氨酸受体2/代谢型谷氨酸受体3激动剂2-(2,3-二羧基环丙基)甘氨酸(DCG-IV)(1微摩尔)进行实验,该化合物可减少苔藓纤维而非联合连合纤维处的递质释放,因此能够确定突触反应的起源,结果表明特定的EPSC模式与特定类型突触输入的激活无关。为了研究递质释放概率在突触活动动态变化中的作用,在多个实验中将细胞外钙浓度从0.8毫摩尔变化到4毫摩尔。在较高钙浓度存在的大多数情况下,可观察到以抑制为主的EPSC模式,这是高释放概率条件的特征。已建立了递质释放动态变化的定量模型。将实验结果与考虑了释放概率和再利用时间进程的模型计算数据进行了比较。这项工作表明,在一串动作电位期间发生的突触前条件的短期变化可以解释EPSC反应的高度变异性。所提出的模型还提出了一种实验数据分析的通用方法,以研究突触效能长期变化背后可能的突触前机制。

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