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聚合物支架的机械不稳定性对细胞黏附的影响。

Effect of mechanical instability of polymer scaffolds on cell adhesion.

机构信息

Department of Applied Chemistry, Kyushu University, Fukuoka 819-0395, Japan.

出版信息

Langmuir. 2013 Sep 3;29(35):11087-92. doi: 10.1021/la4027706. Epub 2013 Aug 20.

Abstract

The adhesion of fibroblast on polymer bilayers composed of a glassy polystyrene (PS) prepared on top of a rubbery polyisoprene (PI) was studied. Since the top PS layer is not build on a glassy, or firm, foundation, the system becomes mechanically unstable with decreasing thickness of the PS layer. When the PS film was thinner than 25 nm, the number of cells adhered to the surface decreased and the cells could not spread well. On a parallel experiment, the same cell adhesion behavior was observed on plasma-treated PS/PI bilayer films, where in this case, the surface was more hydrophilic than that of the intact films. In addition, the fluorescence microscopic observations revealed that the formation of F-actin filaments in fibroblasts attached to the thicker PS/PI bilayer films was greater than those using the thinner PS/PI bilayer films. On the other hand, the thickness dependence of the cell adhesion behavior was not observed for the PS monolayer films. Taking into account that the amount of adsorbed protein molecules evaluated by a quartz crystal microbalance method was independent of the PS layer thickness of the bilayer films, our results indicate that cells, unlike protein molecules, could sense a mechanical instability of the scaffold.

摘要

研究了由玻璃态聚苯乙烯(PS)层制备在橡胶态聚异戊二烯(PI)上的聚合物双层上的成纤维细胞附着。由于顶层 PS 层不是建立在玻璃态或坚固的基础上,因此随着 PS 层厚度的减小,该系统在机械上变得不稳定。当 PS 膜薄于 25nm 时,附着在表面上的细胞数量减少,并且细胞无法很好地扩散。在平行实验中,在等离子体处理的 PS/PI 双层膜上观察到相同的细胞附着行为,在这种情况下,表面比完整膜更亲水。此外,荧光显微镜观察表明,附着在较厚 PS/PI 双层膜上的成纤维细胞中 F-肌动蛋白丝的形成大于使用较薄 PS/PI 双层膜的情况。另一方面,对于 PS 单层膜,没有观察到细胞附着行为对膜厚的依赖性。考虑到石英晶体微天平方法评估的吸附蛋白分子的量与双层膜的 PS 层厚度无关,我们的结果表明,细胞与蛋白分子不同,能够感知支架的机械不稳定性。

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