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肌母细胞在具有飞秒激光制作的微孔的可生物降解聚合物薄膜上的黏附和增殖。

Myoblast adhesion and proliferation on biodegradable polymer films with femtosecond laser-fabricated micro through-holes.

机构信息

School of Integrated Design Engineering, Keio University, Yokohama-shi, Japan.

Institut fuer Quantenoptik, Gottfried Wilhelm Leibniz University Hannover, Hannover, Germany.

出版信息

J Biophotonics. 2020 Jul;13(7):e202000037. doi: 10.1002/jbio.202000037. Epub 2020 Apr 15.

Abstract

Controlling cell adhesion and cell differentiation is necessary to fabricate a tissue with arbitrary properties for tissue engineering applications. A substrate with a porous structure as a cell scaffold allows the diffusion of the cell culture medium through the scaffold. In this work, we show that the femtosecond laser fabricated micro through-holes in biodegradable polymer films, enhance myoblast adhesion, and accelerates proliferation and differentiation. ChR2-C2C12 and UT-C2C12 cells were seeded on the films with micro through-holes each fabricated by a single femtosecond laser pulse. Cell adhesion was enhanced on films with holes fabricated by laser irradiation. In addition, cell proliferation was accelerated on films with micro through-holes that penetrate the film, compared to on films with micro craters that do not penetrate the film. On films with arrays consisting of micro through-holes, cells aligned along the arrays and cell fusion was enhanced, indicating the acceleration of cell differentiation.

摘要

控制细胞黏附和细胞分化对于制造具有任意性能的组织用于组织工程应用是必要的。具有多孔结构的基底作为细胞支架,允许细胞培养液通过支架扩散。在这项工作中,我们表明,飞秒激光在可生物降解聚合物薄膜中制造的微孔可增强成肌细胞的黏附,并加速增殖和分化。ChR2-C2C12 和 UT-C2C12 细胞分别接种在具有单个飞秒激光脉冲制造的微孔的薄膜上。在有孔的薄膜上,细胞黏附得到增强。此外,与不穿透薄膜的微陨石坑相比,穿透薄膜的微孔使细胞增殖加速。在由微孔组成的阵列的薄膜上,细胞沿着阵列排列并增强细胞融合,表明细胞分化的加速。

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