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首页> 外文期刊>The international journal of artificial organs >Influence of different growth factors on chondrogenic differentiation of adipose-derived stem cells in polyurethane-fibrin composites
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Influence of different growth factors on chondrogenic differentiation of adipose-derived stem cells in polyurethane-fibrin composites

机译:不同生长因子对聚氨酯-纤维蛋白复合材料中脂肪来源干细胞成软骨分化的影响

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摘要

Introduction: Chondrogenic differentiation of adipose-derived stem cells (ASCs) has proven to be feasible. To compensate for laryngeal palsy or cartilage defects after surgery or trauma using tissue engineering, a formable and stable scaffold material is mandatory. Methods: ASCs were seeded in fibrin-polyurethane scaffolds and cultured in chondrogenic differentiation medium adding the growth factors TGF-1, TGF-3, and BMP-2 for up to 35 days. Results: Histological examination showed acid glycosaminoglycans in the extracellular matrix in all groups. Immunofluorescence presented positive staining for collagen II, aggrecan, and SOX-9 in the TGF-1-, TGF-3-, and BMP-2-group. With Real-time PCR analyses, chondrogenic differentiation became apparent by the expression of the specific genes COL2A1 (collagen II), AGC 1 (aggrecan), and SOX-9, whereas collagen II expression was low in all groups compared to bone marrow-derived stem cells (BMSC) due to reduced chondrogenic ability. Conclusions: These findings demonstrate the general ability of ASCs to differentiate into matrixproducing chondrocytes in fibrin-polyurethane scaffolds. However, further experiments are necessary to enhance this chondrogenic potential of ASCs seeded in fibrin-polyurethane scaffolds in order to produce a suitable regeneration method for treating cartilage defects or an implantable medialization material for vocal cord palsy.
机译:简介:脂肪干细胞(ASC)的软骨分化已被证明是可行的。为了使用组织工程技术弥补手术或外伤后的喉瘫或软骨缺损,必须使用可成形且稳定的支架材料。方法:将ASCs接种在纤维蛋白-聚氨酯支架上,并在添加生长因子TGF-1,TGF-3和BMP-2的软骨分化培养基中培养长达35天。结果:组织学检查显示所有组细胞外基质中均存在酸性糖胺​​聚糖。免疫荧光显示TGF-1,TGF-3-和BMP-2-组中的胶原蛋白II,聚集蛋白聚糖和SOX-9呈阳性染色。通过实时PCR分析,通过特定基因COL2A1(胶原蛋白II),AGC 1(aggrecan)和SOX-9的表达,软骨形成分化变得明显,而与骨髓来源的相比,所有组中的胶原蛋白II表达均较低干细胞(BMSC)由于软骨形成能力降低。结论:这些发现证明了ASCs在纤维蛋白-聚氨酯支架中具有分化为基质产生软骨细胞的一般能力。但是,还需要进一步的实验来增强播种在纤维蛋白聚氨酯支架中的ASC的这种成软骨潜能,以便产生用于治疗软骨缺损的合适再生方法或用于声带麻痹的可植入介导材料。

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