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Higher Ratios of Hyaluronic Acid Enhance Chondrogenic Differentiation of Human MSCs in a Hyaluronic Acid–Gelatin Composite Scaffold

机译:透明质酸-明胶复合支架中较高比例的透明质酸可增强人MSC的软骨分化。

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Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the repair of traumatic cartilage injuries. The best supportive carrier material has not yet been determined. As natural components of cartilage’s extracellular matrix, hyaluronic acid and collagen are the focus of biomaterial research. In order to optimize chondrogenic support, we investigated three different scaffold compositions of a hyaluronic acid (HA)-gelatin based biomaterial. Methods: Human MSCs (hMSCs) were seeded under vacuum on composite scaffolds of three different HA-gelatin ratios and cultured in chondrogenic medium for 21 days. Cell-scaffold constructs were assessed at different time points for cell viability, gene expression patterns, production of cartilage-specific extracellular matrix (ECM) and for (immuno-)histological appearance. The intrinsic transforming growth factor beta (TGF-beta) uptake of empty scaffolds was evaluated by determination of the TGF-beta concentrations in the medium over time. Results: No significant differences were found for cell seeding densities and cell viability. hMSCs seeded on scaffolds with higher ratios of HA showed better cartilage-like differentiation in all evaluated parameters. TGF-beta uptake did not differ between empty scaffolds. Conclusion: Higher ratios of HA support the chondrogenic differentiation of hMSCs seeded on a HA-gelatin composite scaffold.
机译:植入特定载体材料上的间充质干细胞(MSC)是修复创伤性软骨损伤的有希望的来源。最佳支持载体材料尚未确定。透明质酸和胶原蛋白是软骨细胞外基质的天然成分,是生物材料研究的重点。为了优化软骨生成支持,我们研究了透明质酸(HA)-明胶基生物材料的三种不同支架组成。方法:将人间充质干细胞(hMSCs)真空接种在三种不同HA-明胶比例的复合支架上,并在软骨形成培养基中培养21天。在不同时间点评估细胞支架构建体的细胞生存力,基因表达模式,软骨特异性细胞外基质(ECM)的产生以及(免疫)组织学外观。通过确定随时间变化的培养基中TGF-β的浓度来评估空支架的内在转化生长因子β(TGF-β)的摄取。结果:在细胞接种密度和细胞活力方面未发现显着差异。在所有评估参数中,接种在具有较高HA比例的支架上的hMSC表现出更好的软骨样分化。空支架之间的TGF-β摄取没有差异。结论:高比例的HA支持接种在HA-明胶复合支架上的hMSC的软骨分化。

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