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细胞更喜欢在粗糙的基质上生长。

Cells preferentially grow on rough substrates.

机构信息

Nanobiotech Department, Italian Institute of Technology, Genova, Italy.

出版信息

Biomaterials. 2010 Oct;31(28):7205-12. doi: 10.1016/j.biomaterials.2010.06.016. Epub 2010 Jul 16.

Abstract

Substrate nanotopography affects cell adhesion and proliferation and is fundamental to the rational design of bio-adhesives, to tissue engineering and to the development of assays for in-vitro screening. Cell behavior on rough substrates is still elusive, and the results presented in the open literature remain controversial. Here, the proliferation of cells on electrochemically etched silicon substrates with different roughness and nearly similar surface energy was studied over three days with confocal and atomic force microscopy. The surface profile of the substrates is a self-affine fractal with a roughness R(a) growing with the etching time from approximately 2 to 100 nm and a fractal dimension D ranging between about 2 (nominally flat surface) and 2.6. For four cell types, the number of adhering cells and their proliferation rates exhibited a maximum on moderately rough (R(a) approximately 10-45 nm) nearly Brownian (D approximately 2.5) substrates. The observed cell behavior was satisfactorily interpreted within the theory of adhesion to randomly rough solids. These findings demonstrated the importance of nanogeometry in cell stable adhesion and growth, suggesting that moderately rough substrates with large fractal dimension could selectively boost cell proliferation.

摘要

基底的纳米形貌会影响细胞的黏附和增殖,这对生物黏附剂的合理设计、组织工程以及体外筛选分析方法的开发都至关重要。目前,人们对于粗糙基底上的细胞行为仍然知之甚少,而且文献中的研究结果也存在争议。本研究使用原子力显微镜和共聚焦显微镜,在三天的时间里,对具有不同粗糙度且表面能相近的电化学蚀刻硅基底上的细胞增殖情况进行了研究。基底的表面形貌是具有自仿射分形特征的,其粗糙度 R(a) 随蚀刻时间从大约 2 纳米增长到 100 纳米,分形维数 D 在大约 2(名义上的平坦表面)到 2.6 之间。对于四种细胞类型,黏附细胞的数量及其增殖速率在粗糙度适中(R(a)约为 10-45nm)、接近布朗运动(D 约为 2.5)的基底上达到最大值。通过随机粗糙固体黏附理论可以很好地解释所观察到的细胞行为。这些发现表明纳米几何形状在细胞稳定黏附和生长中的重要性,提示具有较大分形维数的适度粗糙基底可以选择性地促进细胞增殖。

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