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具有层粘连蛋白衍生肽的倒胶体晶体支架促进骨髓基质细胞的神经元分化。

Inverted colloidal crystal scaffolds with laminin-derived peptides for neuronal differentiation of bone marrow stromal cells.

机构信息

Department of Chemical Engineering, National Chung Cheng University, Chia-Yi, Taiwan, ROC.

出版信息

Biomaterials. 2011 Jan;32(3):819-31. doi: 10.1016/j.biomaterials.2010.09.057. Epub 2010 Oct 25.

Abstract

This study presents the effect of pore regularity on the preservation and differentiation of bone marrow stromal cells (BMSCs). Scaffolds with interconnected pores of inverted colloidal crystal (ICC) geometry were prepared by infiltrating chitosan-gelatin gels into the interstices of self-assembled microspheres, which were later dissolved with a solvent. In addition, the pore surfaces were grafted with two laminin-derived peptides (LDP). The experimental results revealed that the number of BMSCs in ICC scaffolds could increase 2.7-fold after cultivation over 7 days. Moreover, the distribution of cultured BMSCs in ICC scaffolds was quite uniform as compared with freeform scaffolds. ICC scaffolds could preserve 63% phenotypic BMSCs in average and freeform scaffolds 56%. The grafted LDP enhanced the adhesion efficiency of BMSCs in ICC scaffolds (about 70-75%) and produced NeuN-positive cells. A further induction with neuron growth factor could guide the differentiation of BMSCs toward mature neurons in LDP-grafted ICC scaffolds. The controlled topography of ICC structure and surface LDP can be promising in the cultivation of BMSCs and neural regeneration.

摘要

本研究探讨了孔结构规则性对骨髓基质细胞(BMSCs)保存和分化的影响。通过将壳聚糖-明胶凝胶渗透到自组装微球的间隙中,然后用溶剂溶解,制备出具有反转胶体晶体(ICC)几何形状的连通孔支架。此外,在孔表面接枝了两种层粘连蛋白衍生肽(LDP)。实验结果表明,培养 7 天后,ICC 支架中的 BMSCs 数量可增加 2.7 倍。与自由形态支架相比,ICC 支架中培养的 BMSCs 分布更加均匀。ICC 支架平均可保存 63%的表型 BMSCs,而自由形态支架为 56%。接枝的 LDP 提高了 BMSCs 在 ICC 支架中的黏附效率(约 70-75%),并产生了 NeuN 阳性细胞。进一步用神经元生长因子诱导可引导 BMSCs 在 LDP 接枝 ICC 支架中向成熟神经元分化。ICC 结构的受控形貌和表面 LDP 有望应用于 BMSCs 的培养和神经再生。

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