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Surface Micro- and Nanoengineering: Applications of Layer-by-Layer Technology as a Versatile Tool to Control Cellular Behavior

机译:表面微型和纳米工程:逐层技术的应用作为控制蜂窝行为的多功能工具

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摘要

Extracellular matrix (ECM) cues have been widely investigated for their impact on cellular behavior. Among mechanics, physics, chemistry, and topography, different ECM properties have been discovered as important parameters to modulate cell functions, activating mechanotransduction pathways that can influence gene expression, proliferation or even differentiation. Particularly, ECM topography has been gaining more and more interest based on the evidence that these physical cues can tailor cell behavior. Here, an overview of bottom-up and top-down approaches reported to produce materials capable of mimicking the ECM topography and being applied for biomedical purposes is provided. Moreover, the increasing motivation of using the layer-by-layer (LbL) technique to reproduce these topographical cues is highlighted. LbL assembly is a versatile methodology used to coat materials with a nanoscale fidelity to the geometry of the template or to produce multilayer thin films composed of polymers, proteins, colloids, or even cells. Different geometries, sizes, or shapes on surface topography can imply different behaviors: effects on the cell adhesion, proliferation, morphology, alignment, migration, gene expression, and even differentiation are considered. Finally, the importance of LbL assembly to produce defined topographical cues on materials is discussed, highlighting the potential of micro- and nanoengineered materials to modulate cell function and fate.
机译:细胞外基质(ECM)提示已被广泛研究它们对细胞行为的影响。在力学,物理学,化学和地形中,已被发现不同的ECM性能作为调节细胞功能的重要参数,激活能够影响基因表达,增殖或甚至分化的机电梳子途径。特别是,基于这些物理提示可以量身定制细胞行为的证据,ECM地形越来越兴趣。这里,提供了报告用于生产能够模仿ECM地形和应用生物医学目的的材料的自下而上的接近的概述。此外,突出了使用逐层(LBL)技术来再现这些地形提示的增加的动力。 LBL组件是一种多功能方法,用于将纳米级保真度涂覆到模板的几何形状或产生由聚合物,蛋白质,胶体或偶数细胞组成的多层薄膜的材料。表面地形上的不同几何形状,尺寸或形状可以暗示不同的行为:对细胞粘附,增殖,形态,对准,迁移,基因表达的影响是考虑的。最后,讨论了LBL组装在材料上产生了定义的地形提示的重要性,突出了微型和纳米工程的潜力来调节细胞功能和命运。

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