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Defined adhesion and growth of neurones on artificial structured substrates

机译:在人工结构化基质上确定的神经元粘附和生长

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摘要

Patterned adhesion of neurones and directed growth of neurites is the pre-requisite to establish meaningful in vitro models for the study of interactions and signalling between neurones. We have therefore studied two model systems for structured substrates. Silicon samples were microstructured by etching. Neurones adhered preferentially onto the bottom of the resulting grooves and wells. Outgrowth of neurites could be observed on adsorptive coating with polylysine and laminin. Most of the neurites did not cross the border between the plain surfaces of the silicon sample and the bottom of the grooves and wells. The second approach was to use interdigitating platinum comb electrodes. One of them was coated with laminin by electrochemical polymerisation. A strong outgrowth of axons was found, and such a surface modification appears to be suitable for the creation of neuronal patterns with effective growth of axons in vitro.
机译:神经元的模式粘附和神经突的定向生长是建立有意义的体外模型以研究神经元之间的相互作用和信号传导的先决条件。因此,我们研究了两种结构化基材的模型系统。通过蚀刻使硅样品微结构化。神经元优先粘附在所得凹槽和孔的底部。在聚赖氨酸和层粘连蛋白的吸附涂层上可以观察到神经突的生长。大多数神经突没有越过硅样品的平面与凹槽和孔的底部之间的边界。第二种方法是使用叉指式铂梳电极。其中之一通过电化学聚合用层粘连蛋白包被。发现了轴突的强烈生长,并且这种表面修饰似乎适合于在体外有效生长轴突的神经元模式的产生。

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