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首页> 外文期刊>Journal of Neuroscience Methods >Generation of microisland cultures using microcontact printing to pattern protein substrates
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Generation of microisland cultures using microcontact printing to pattern protein substrates

机译:使用微接触印刷形成蛋白质底物的微岛文化

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The capacity to isolate small numbers of neurons . in vitro is an essential tool to study the cell biology of synapses and the development of neuronal networks by specific cell types. Microisland culture assays allow for single neurons, or simple neural networks, to be isolated on islands of glial cells; however, the techniques commonly used to produce microisland substrates are expensive, challenging to control, and typically result in many discarded substrates. Here, we used microcontact printing to pattern a glass surface with islands of extracellular matrix proteins known to support neural cell growth and differentiation. To promote segregation of the cells to the islands, the substrate surrounding the islands was backfilled with polyethylene glycol (PEG), forming a relatively non-permissive surface on which cell attachment is limited. Astrocytes, and subsequently hippocampal neurons, were then seeded onto the islands of patterned protein. Using this method, readily reproducible patterns of protein islands were produced that permit cell attachment, differentiation, and growth. The technique is a rapid, inexpensive, and reliable means to generate patterned substrates appropriate for microisland cultures.
机译:隔离少量神经元的能力。体外是研究突触的细胞生物学和通过特定细胞类型发展神经元网络的重要工具。微岛培养测定法允许在胶质细胞岛上分离单个神经元或简单的神经网络。然而,通常用于生产微岛基底的技术昂贵,难以控制,并且通常导致许多被丢弃的基底。在这里,我们使用微接触印刷技术在玻璃表面上构图,形成带有支持神经细胞生长和分化的胞外基质蛋白岛。为了促进细胞与岛的分离,将岛周围的基质回填了聚乙二醇(PEG),形成了一个相对不允许的表面,在该表面上细胞附着受到了限制。然后将星形胶质细胞和随后的海马神经元接种到图案化蛋白质的岛上。使用这种方法,可以产生易于复制的蛋白质岛图案,从而实现细胞附着,分化和生长。该技术是一种快速,廉价且可靠的方法,可用于生成适合微岛文化的图案化底物。

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