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Reusable reversibly sealable parylene membranes for cell and protein patterning

机译:可重复使用可逆密封的聚对二甲苯膜用于细胞和蛋白质构图

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摘要

The patterned deposition of cells and biomolecules on surfaces is a potentially useful tool for in vitro diagnostics, high-throughput screening, and tissue engineering. Here, we describe an inexpensive and potentially widely applicable micropatterning technique that uses reversible sealing of microfabricated parylene-C stencils on surfaces to enable surface patterning. Using these stencils it is possible to generate micropatterns and copatterns of proteins and cells, including NIH-3T3 fibroblasts, hepatocytes and embryonic stem cells. After patterning, the stencils can be removed from the surface, plasma treated to remove adsorbed proteins, and reused. A variety of hydrophobic surfaces including PDMS, polystyrene and acrylated glass were patterned using this approach. Furthermore, we demonstrated the reusability and mechanical integrity of the parylene membrane for at least 10 consecutive patterning processes. These parylene-C stencils are potentially scalable commercially and easily accessible for many biological and biomedical applications.
机译:细胞和生物分子在表面上的图案化沉积对于体外诊断,高通量筛选和组织工程学来说可能是有用的工具。在这里,我们描述了一种廉价且可能广泛应用的微图案化技术,该技术使用表面上的微型聚对二甲苯-C模板的可逆密封来实现表面图案化。使用这些模板,可以生成蛋白质和细胞(包括NIH-3T3成纤维细胞,肝细胞和胚胎干细胞)的微模式和共模式。图案化后,可将模板从表面去除,进行等离子体处理以去除吸附的蛋白质,然后重新使用。使用这种方法可以对包括PDMS,聚苯乙烯和丙烯酸酯玻璃在内的各种疏水表面进行构图。此外,我们证明了聚对二甲苯膜的可重复使用性和机械完整性可用于至少10个连续的构图工艺。这些聚对二甲苯-C模板可以在商业上扩展,并且对于许多生物和生物医学应用而言都很容易获得。

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