模式神经元网络的电紧张耦合分析。

L Lauer, A K Vogt, C Kauff, G Nelles, A Yasuda, W Knoll, A Offenhäusser
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引用次数: 1

摘要

层粘连蛋白的微接触印刷被认为是一种在人工表面上指导神经元细胞迁移和神经突生长的有效方法。在本研究中,将Sprague-Dawley大鼠(E15-E18)的超薄(约250微米)脑干切片培养在层粘胶蛋白图案的基质上,使神经元细胞沿着图案所定义的几何形状迁移出切片,形成网格状的神经元网络。这些人工网络中相邻神经元对之间的相互连接通过双膜片钳记录进行电生理评估,并通过显微注射荧光染料进行光学评估。功能突触和电紧张突触均被检测到。基于记录数据和PSpice仿真,推导了电张力耦合细胞的电学模型。在这个模型中,神经通路被描述为一个圆柱形电缆,间隙连接由一个欧姆电阻表示。应用该模型进行数据分析,可以确定神经突的平均内半径约为0.1微米。此外,还发现了应用模式的路径宽度与沿这些路径生长的神经突直径之间存在相关性的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of electrotonic coupling in patterned neuronal networks.

Microcontact printing of laminin is known as an efficient approach for guiding neuronal cell migration and neurite outgrowth on artificial surfaces. In the present study, ultrathin (approximately 250 microm) brain stem slices of Sprague-Dawley rats (E15-E18) were cultured on laminin-patterned substrates, such that neuronal cells migrating out of the slices formed grid-shaped neuronal networks along the geometry defined by the pattern. The interconnections between neighbouring pairs of neurons within these artificial networks were assessed electrophysiologically by double patch-clamp recordings and optically by microinjection of fluorescent dyes. Both functional and electrotonic synapses were detected. Based on the recorded data and simulations in PSpice, an electrical model for electrotonically coupled cells was derived. In this model the neuritic pathway is described as a cylindric cable, and gap junctions are represented by an ohmic resistor. Applying this model in the data analysis, the average inner radius of neurites could be determined to be approximately 0.1 microm. In addition, evidence was found for a correlation between the path-width of the applied pattern and the diameter of neurites growing along these paths.

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