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Micro and Nanofabrication methods to control cell-substrate interactions and cell behavior: A review from the tissue engineering perspective

机译:微观和纳米制造方法来控制细胞-基质相互作用和细胞行为:从组织工程学角度的综述

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Cell-substrate interactions play a crucial role in the design of better biomaterials and integration of implants with the tissues. Adhesion is the binding process of the cells to the substrate through interactions between the surface molecules of the cell membrane and the substrate. There are several factors that affect cell adhesion including substrate surface chemistry, topography, and stiffness. These factors physically and chemically guide and influence the adhesion strength, spreading, shape and fate of the cell. Recently, technological advances enabled us to precisely engineer the geometry and chemistry of substrate surfaces enabling the control of the interaction cells with the substrate. Some of the most commonly used surface engineering methods for eliciting the desired cellular responses on biomaterials are photolithography, electron beam lithography, microcontact printing, and microfluidics. These methods allow production of nano- and micron level substrate features that can control cell adhesion, migration, differentiation, shape of the cells and the nuclei as well as measurement of the forces involved in such activities. This review aims to summarize the current techniques and associate these techniques with cellular responses in order to emphasize the effect of chemistry, dimensions, density and design of surface patterns on cell-substrate interactions. We conclude with future projections in the field of cell-substrate interactions in the hope of providing an outlook for the future studies.
机译:细胞-基质相互作用在设计更好的生物材料以及植入物与组织的整合中起着至关重要的作用。粘附是细胞通过细胞膜表面分子与底物之间的相互作用将细胞与底物结合的过程。影响细胞粘附的因素有很多,包括基材表面的化学性质,形貌和刚度。这些因素在物理和化学上指导并影响细胞的粘附强度,扩散,形状和命运。最近,技术的进步使我们能够精确地设计衬底表面的几何形状和化学性质,从而控制与衬底的相互作用单元。在生物材料上引发所需细胞反应的一些最常用的表面工程方法是光刻,电子束光刻,微接触印刷和微流体技术。这些方法允许产生纳米级和微米级的底物特征,其可以控制细胞粘附,迁移,分化,细胞和核的形状,以及测量参与此类活动的力。这篇综述旨在总结当前的技术,并将这些技术与细胞反应联系起来,以强调化学,尺寸,密度和表面图案设计对细胞-基质相互作用的影响。我们以细胞-底物相互作用领域的未来预测作为结束,以期为未来的研究提供前景。

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