首页> 美国卫生研究院文献>Journal of Vacuum Science and Technology. B Nanotechnology Microelectronics >Direct patterning of coplanar polyethylene glycol alkylsilane monolayers by deep-ultraviolet photolithography as a general method for high fidelity long-term cell patterning and culture
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Direct patterning of coplanar polyethylene glycol alkylsilane monolayers by deep-ultraviolet photolithography as a general method for high fidelity long-term cell patterning and culture

机译:通过深紫外光刻技术对共面聚乙二醇烷基硅烷单层进行直接图案化作为高保真长期细胞图案化和培养的通用方法

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摘要

This manuscript details a general method for patterning coplanar alkylsilane monolayers using deep-ultraviolet photolithography that has broad application for high fidelity patterning of cells of varying phenotype in long-term cultures. A polyethylene glycol monolayer was formed on a silica substrate and then patterned using 193 nm light from an ArF excimer laser. The regions of photoablation were then rederivatized with (3-trimethoxysilyl propyl) diethyltriamine (DETA), yielding high contrast cytophilic islands that promoted cell adhesion and growth. Rat hippocampal neurons, motoneurons, and myoblasts were then cultured in a defined, serum-free medium on the patterned surfaces for periods in excess of 40 days. This approach has been shown to be useful as a general method for the long-term culture of multiple cell types in highly defined spatial patterns and can be used for supporting complex cocultures for creating in vitro models for biological systems.
机译:该手稿详细介绍了使用深紫外光刻技术对共面烷基硅烷单分子层进行构图的一般方法,该方法广泛应用于长期培养的各种表型细胞的高保真构图。在二氧化硅衬底上形成聚乙二醇单层,然后使用来自ArF受激准分子激光器的193 nm光进行图案化。然后用(3-三甲氧基甲硅烷基丙基)二乙基三胺(DETA)重新光化烧蚀区域,产生高对比度的亲细胞岛,促进细胞粘附和生长。然后将大鼠海马神经元,运动神经元和成肌细胞在限定的无血清培养基中的图案表面上培养40天以上。已经表明,该方法可用作在高度限定的空间模式下长期培养多种细胞类型的通用方法,并且可用于支持复杂的共培养,以创建生物系统的体外模型。

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