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Methods for Nano/Micropatterning of Substrates: Toward Stem Cells Differentiation

机译:基板的纳米/微图案化方法:向干细胞分化

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摘要

Micro- and nanoengineering of materials offer novel technologies and serve as an interface between material sciences and biomedical nanotechnology. Various techniques are used for the engineering of polymers, and it allows the precise orientation of biomolecules with designed nanoregions in a substrate, with defined sizes and continuity offering well featured substrate topographies. Methods such as the electron beam lithography coupled with microcontact printing have been applied for the fabrication of high resolution surface features that are smaller than the size of a cell. This review elaborates more deeply on the different methods used for the fabrication of patterned surfaces such as the photolithography, electron beam lithography, microcontact printing, soft lithography, capillary force lithography, and patterning of electrospun fibers. The nanoengineered substrates may have the ability to influence the differentiation of stem cells to specific lineages and here we survey a few details on the influence of surface topology and its potential for tissue regeneration.
机译:材料的微观和纳米工程学提供了新颖的技术,并充当了材料科学与生物医学纳米技术之间的接口。各种技术都用于聚合物的工程设计,它允许在底物中设计纳米区域的生物分子精确定向,并具有确定的尺寸和连续性,从而提供功能齐全的底物形貌。诸如电子束光刻与微接触印刷相结合的方法已被用于制造小于单元尺寸的高分辨率表面特征。这篇综述更深入地阐述了用于制造图案化表面的不同方法,例如光刻,电子束光刻,微接触印刷,软光刻,毛细管力光刻以及电纺纤维的图案化。纳米工程化的底物可能具有影响干细胞向特定谱系分化的能力,在这里我们对表面拓扑的影响及其对组织再生的潜力进行了调查。

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