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培养的已鉴定水蛭神经元之间突触传递的结构与功能分析。

Structural and functional analysis of synaptic transmission between identified leech neurones in culture.

作者信息

Henderson L P, Kuffler D P, Nicholls J, Zhang R

出版信息

J Physiol. 1983 Jul;340:347-58. doi: 10.1113/jphysiol.1983.sp014766.

Abstract

The fine structure and physiological properties of chemical synapses that develop between identified leech neurones in culture have been studied by electron microscopy and by quantal analysis. Earlier work has shown that the transmitter liberated by isolated Retzius cells, serotonin, evokes chloride-dependent inhibitory post-synaptic potentials (i.p.s.p.s) in P sensory cells, and also in Retzius cells. When pairs of Retzius cells or Retzius and P sensory cells were placed in close apposition in culture for a few days, their somata extended numerous fine processes which came into contact and interdigitated. In the region of interdigitation, only narrow spaces, approximately 20-25 nm wide separated the membranes. The appearance of the cytoplasm of the two neurones was distinctive: in particular, Retzius cells contained agranular vesicles, as well as abundant dense core vesicles which were not as prevalent in P cells. Structures resembling synapses developed by 4 days, with characteristic vesicles clustered in terminals of the Retzius cell apposed to the post-synaptic membrane. In the presence of raised Mg or lowered Ca in the culture medium, the i.p.s.p. in the P cell evoked by an impulse in the Retzius cell became diminished in amplitude. The time-to-peak and half-time of decay were unchanged. Under these conditions, with repeated stimulation, quantal fluctuations of these post-synaptic potentials and failures were observed. In addition, there occurred spontaneous events which resembled miniature synaptic potentials and had amplitudes and time courses similar to those of the unitary events evoked by presynaptic impulses. The amplitudes of evoked synaptic potentials in raised Mg were distributed in accord with the Poisson equation. The agreement was good when either the spontaneous miniature potentials or the failures of evoked release were used to calculate m, the mean number of quanta per trial. With larger values of m the results were distributed as predicted by the binomial equation. These morphological and electrophysiological experiments together indicate that the inhibitory potentials observed in P cells result from quantal units of transmitter released by presynaptic terminals of the Retzius cell which are in close apposition to the post-synaptic membrane.

摘要

通过电子显微镜和量子分析,对培养的已识别水蛭神经元之间形成的化学突触的精细结构和生理特性进行了研究。早期的研究表明,分离出的Retzius细胞释放的神经递质5-羟色胺,可在P感觉细胞以及Retzius细胞中引发氯离子依赖性抑制性突触后电位(i.p.s.p.s)。当将成对的Retzius细胞或Retzius细胞与P感觉细胞在培养中紧密并置几天时,它们的胞体伸出许多细小的突起,这些突起相互接触并相互交错。在交错区域,仅约20 - 25纳米宽的狭窄空间分隔着膜。两种神经元的细胞质外观不同:特别是,Retzius细胞含有无颗粒小泡,以及丰富的致密核心小泡,而这些在P细胞中并不常见。类似突触的结构在4天时形成,特征性的小泡聚集在与突触后膜相对的Retzius细胞终末。在培养基中镁离子浓度升高或钙离子浓度降低的情况下,Retzius细胞冲动在P细胞中引发的i.p.s.p.幅度减小。峰时间和衰减半衰期不变。在这些条件下,重复刺激时可观察到这些突触后电位的量子波动和失败情况。此外,还出现了类似于微小突触电位的自发事件,其幅度和时间进程与突触前冲动引发的单一事件相似。在镁离子浓度升高时诱发的突触电位幅度符合泊松方程分布。当使用自发微小电位或诱发释放失败来计算每次试验的量子平均数m时,拟合良好。当m值较大时,结果按二项式方程预测分布。这些形态学和电生理学实验共同表明,在P细胞中观察到的抑制性电位是由与突触后膜紧密并置的Retzius细胞突触前终末释放的神经递质量子单位所引起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ebd/1199213/5f7d1258ad45/jphysiol00656-0367-a.jpg

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