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首页> 外文期刊>Journal of biomedical materials research, Part A >Poly(N-isopropylacrylamide) hydrogel/chitosan scaffold hybrid for three-dimensional stem cell culture and cartilage tissue engineering
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Poly(N-isopropylacrylamide) hydrogel/chitosan scaffold hybrid for three-dimensional stem cell culture and cartilage tissue engineering

机译:聚(N-异丙基丙烯酰胺)水凝胶/壳聚糖支架杂物,用于三维干细胞培养和软骨组织工程

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摘要

Providing a controllable and definable three-dimensional (3D) microenvironment for chondrogenic differentiation of mesenchymal stem cells (MSCs) remains a great challenge for cartilage tissue engineering. In this work, poly(N-isopropylacrylamide) (PNIPAAm) polymers with the degrees of polymerization of 100 and 400 (NI100 and NI400) were prepared and the polymer solutions were introduced into the preprepared chitosan porous scaffolds (CS) to form hybrids (CSNI100 and CSNI400, respectively). SEM images indicated that the PNIPAAm gel partially occupied chitosan pores while the interconnected porous structure of chitosan was preserved. MSCs were incorporated within the hybrid and cell proliferation and chondrogenic differentiation were monitored. After 7-day incubation of the cell-laden constructs in a growth medium, the cell viability in CSNI100 and CSNI400 were 54 and 108% higher than that in CS alone, respectively. Glycosaminoglycan and total collagen contents increased 2.6- and 2.5-fold after 28-day culture of cell-laden CSNI400 in the chondrogenic medium. These results suggest that the hybrid structure composed of the chitosan porous scaffold and the well-defined PNIPAAm hydrogel, in particular CSNI400, is suitable for 3D stem cell culture and cartilage tissue engineering. (C) 2016 Wiley Periodicals, Inc.
机译:提供一种可控和可定义的三维(3D)微环境,用于间充质干细胞(MSCs)软骨分化的研究仍然是软骨组织工程学的巨大挑战。在这项工作中,制备了聚合度分别为100和400(NI100和NI400)的聚(N-异丙基丙烯酰胺)(PNIPAAm)聚合物,并将该聚合物溶液引入到预先制备的壳聚糖多孔支架(CS)中以形成杂化体(CSNI100和CSNI400)。 SEM图像表明,PNIPAAm凝胶部分占据了壳聚糖的孔,同时保留了相互连接的壳聚糖的多孔结构。将MSC掺入杂种内,并监测细胞增殖和成软骨分化。在充满培养基的细胞中生长7天后,CSNI100和CSNI400的细胞活力分别比单独的CS高54和108%。在软骨形成培养基中培养载有细胞的CSNI400 28天后,糖胺聚糖和总胶原含量增加了2.6和2.5倍。这些结果表明,由壳聚糖多孔支架和定义明确的PNIPAAm水凝胶组成的杂合结构,特别是CSNI400,适用于3D干细胞培养和软骨组织工程。 (C)2016威利期刊公司

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