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首页> 外文期刊>Angewandte Chemie >Potential-Responsive Surfaces for Manipulation of Cell Adhesion, Release, and Differentiation
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Potential-Responsive Surfaces for Manipulation of Cell Adhesion, Release, and Differentiation

机译:用于操纵细胞粘附,释放和分化的潜在响应表面

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摘要

In living systems, interfacial molecular interactions control many biological processes. New stimuli-responsive strategies are desired to provide versatile model systems that can regulate cell behavior in vitro. Described here are potential-responsive surfaces that control cell adhesion and release as well as stem cell differentiation. Cell adhesion can be modulated dynamically by applying negative and positive potentials to surfaces functionalized with tailored monolayers. This process alters cell morphology and ultimately controls behavior and the fate of the cells. Cells can be detached from the electrode surface as intact clusters with different geometries using electrochemical potentials. Importantly, morphological changes during adhesion guide stem cell differentiation. The higher accessibility of the peptide under a positive applied potential causes phenotypic changes in the cells that are hallmarks of osteogenesis, whereas lower accessibility of the peptide promoted by negative potentials leads to adipogenesis.
机译:在生活系统中,界面分子相互作用控制许多生物过程。期望新的刺激响应策略来提供可以在体外调节细胞行为的多功能模型系统。这里描述的是控制细胞粘附和释放以及干细胞分化的潜在响应性表面。通过将负极和正电位施加到用定制的单层官能化的表面施加负极和正电位,可以动态地调节电池粘附。该过程改变细胞形态,最终控制细胞的行为和命运。电池可以从电极表面脱离,作为使用电化学电位具有不同几何形状的完整簇。重要的是,粘附引导干细胞分化期间的形态变化。肽在阳性施加潜力下的较高可差性会导致骨质发生标志的细胞中的表型变化,而通过负势促进的肽的可达性降低导致脂肪发生。

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