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The nanostructure effect on the adhesion and growth rates of epithelial cells with well-defined nanoporous alumina substrates

机译:纳米结构对定义明确的纳米多孔氧化铝基质对上皮细胞粘附和生长速率的影响

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摘要

We systematically analyzed the adhesion and the proliferation of cells on various nanoporous alumina surfaces to understand the effects of nanostructured surfaces on cell behavior. Various nanoporous surfaces were fabricated using the anodizing method and characterized by atomic force microscopy and scanning electron microscopy. The adhesion rate and proliferation rate of cells as functions of pore size and depth were statistically investigated using a colorimetric method. The adhesion rate of cells was not affected by the depth of the nanoporous surface whereas the proliferation of cells dramatically increased when the aspect ratio of the nanopore was near unity. This phenomenon was further verified by comparing the change in roughness of the cytoplasmic layer of cells adhered on a nanoporous surface with that of a bare nanoporous surface. The proliferation of cells was also influenced by the pore size of the nanoporous surface because the nanostructure could control the interaction between extracellular matrix (ECM) molecules and the surface. In conclusion, the nanostructured surfaces affected cell adhesion and proliferation by increasing the surface area to which the cells could adhere, and the interactions between small ECM molecules were influenced by the sufficiently small structures of the nanosurface.
机译:我们系统地分析了细胞在各种纳米多孔氧化铝表面上的粘附和增殖,以了解纳米结构表面对细胞行为的影响。使用阳极氧化方法制备各种纳米孔表面,并通过原子力显微镜和扫描电子显微镜表征。使用比色法统计地研究了细胞的粘附率和增殖率与孔径和深度的关系。细胞的粘附率不受纳米孔表面深度的影响,而当纳米孔的长径比接近于1时,细胞的增殖急剧增加。通过比较粘附在纳米孔表面上的细胞的细胞质层的粗糙度与裸露的纳米孔表面上的粗糙度的变化,进一步证实了该现象。细胞的增殖也受到纳米孔表面孔径的影响,因为纳米结构可以控制细胞外基质(ECM)分子与表面之间的相互作用。总之,纳米结构的表面通过增加细胞可以粘附的表面积来影响细胞的粘附和增殖,并且小ECM分子之间的相互作用受到纳米表面足够小的结构的影响。

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