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钙电流反转对电刺激视网膜中神经递质释放的影响。

The impact of calcium current reversal on neurotransmitter release in the electrically stimulated retina.

作者信息

Werginz Paul, Rattay Frank

机构信息

Institute for Analysis and Scientific Computing, Vienna University of Technology, Wiedner Hauptstrasse 8-10, 1040 Vienna, Austria.

出版信息

J Neural Eng. 2016 Aug;13(4):046013. doi: 10.1088/1741-2560/13/4/046013. Epub 2016 Jun 14.

Abstract

OBJECTIVE

In spite of intense theoretical and experimental investigations on electrical nerve stimulation, the influence of reversed ion currents on network activity during extracellular stimulation has not been investigated so far.

APPROACH

Here, the impact of calcium current reversal on neurotransmitter release during subretinal stimulation was analyzed with a computational multi-compartment model of a retinal bipolar cell (BC) that was coupled with a four-pool model for the exocytosis from its ribbon synapses. Emphasis was laid on calcium channel dynamics and how these channels influence synaptic release.

MAIN RESULTS

Stronger stimulation with anodic pulses caused transmembrane voltages above the Nernst potential of calcium in the terminals and, by this means, forced calcium ions to flow in the reversed direction from inside to the outside of the cell. Consequently, intracellular calcium concentration decreased resulting in a reduced vesicle release or preventing release at all. This mechanism is expected to lead to a pronounced ring-shaped pattern of exocytosis within a group of neighbored BCs when the stronger stimulated cells close to the electrode fail in releasing vesicles.

SIGNIFICANCE

Stronger subretinal stimulation causes failure of synaptic exocytosis due to reversal of calcium flow into the extracellular space in cells close to the electrode.

摘要

目的

尽管对电神经刺激进行了深入的理论和实验研究,但迄今为止,尚未研究细胞外刺激期间反向离子电流对网络活动的影响。

方法

在此,使用视网膜双极细胞(BC)的计算多室模型,并结合其带状突触胞吐作用的四池模型,分析视网膜下刺激期间钙电流反转对神经递质释放的影响。重点关注钙通道动力学以及这些通道如何影响突触释放。

主要结果

阳极脉冲更强的刺激导致终末跨膜电压高于钙的能斯特电位,通过这种方式,迫使钙离子从细胞内部向外部反向流动。因此,细胞内钙浓度降低,导致囊泡释放减少或完全阻止释放。当靠近电极的受更强刺激的细胞无法释放囊泡时,预计这种机制会导致一组相邻BC内出现明显的环形胞吐模式。

意义

更强的视网膜下刺激会导致靠近电极的细胞中钙流入细胞外空间的反转,从而导致突触胞吐失败。

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