Patterning to enhance activity of cultured neuronal networks.

Y Nam, J Chang, D Khatami, G J Brewer, B C Wheeler
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引用次数: 50

Abstract

Embryonic rat hippocampal neurons were cultured in order to gain insights into how small networks of neurons interact. The principal observations are the electrical activities recorded with the electrode arrays, primarily action potentials both spontaneous and evoked. Several lithographic techniques were developed for controlling with micrometer precision the patterns of surface molecules in order to control neuronal attachment and growth. Cytophilic polylysine against protein repellent and hence cytophobic polyethylene glycol were used. By combining the cellular lithography with the microelectrode arrays it was possible to guide neurons preferentially to electrodes and to begin to investigate the question as to whether the geometric pattern of a neuronal network influences the patterns of its neuroelectric activity. It is clear that the techniques are adequate to ensure contact of neurons to electrodes but not to ensure the recording of signals, even when neurons lie directly on top of electrodes. The maturation of neuroelectric activity depends on the growth of glia within the culture, such that spontaneous activity appears to become robust when the number of glia is roughly the same as the number of neurons.

增强培养的神经网络活动的模式。
培养胚胎大鼠海马神经元是为了深入了解神经元的小网络如何相互作用。主要观察是用电极阵列记录的电活动,主要是自发的和诱发的动作电位。为了控制神经元的附着和生长,开发了几种光刻技术,以微米精度控制表面分子的模式。细胞亲性聚赖氨酸对蛋白质的排斥,因此使用细胞亲性聚乙二醇。通过将细胞光刻与微电极阵列相结合,可以将神经元优先引导到电极上,并开始研究神经元网络的几何模式是否影响其神经电活动模式的问题。很明显,这些技术足以确保神经元与电极的接触,但不能确保信号的记录,即使神经元直接位于电极上。神经电活动的成熟取决于培养物中胶质细胞的生长,因此,当胶质细胞的数量与神经元的数量大致相同时,自发活动似乎变得强大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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