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Mechanical loading regulates human MSC differentiation in a multi-layer hydrogel for osteochondral tissue engineering

机译:机械负荷可调节用于软骨组织工程的多层水凝胶中的人类MSC分化

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A bioinspired multi-layer hydrogel was developed for the encapsulation of human mesenchymal stem cells (hMSCs) as a platform for osteochondral tissue engineering. The spatial presentation of biochemical cues, via incorporation of extracellular matrix analogs, and mechanical cues, via both hydrogel crosslink density and externally applied mechanical loads, were characterized in each layer. A simple sequential photopolymerization method was employed to form stable poly(ethylene glycol)-based hydrogels with a soft cartilage-like layer of chondroitin sulfate and low RGD concentrations, a stiff bone-like layer with high RGD concentrations, and an intermediate interfacial layer. Under a compressive load, the variation in hydrogel stiffness within each layer produced high strains in the soft cartilage-like layer, low strains in the stiff bone-like layer, and moderate strains in the interfacial layer. When hMSC-laden hydrogels were cultured statically in osteochondral differentiation media, the local biochemical and matrix stiffness cues were not sufficient to spatially guide hMSC differentiation after 21 days. However dynamic mechanical stimulation led to differentially high expression of collagens with collagen II in the cartilage-like layer, collagen X in the interfacial layer and collagen I in the bone-like layer and mineral deposits localized to the bone layer. Overall, these findings point to external mechanical stimulation as a potent regulator of hMSC differentiation toward osteochondral cellular phenotypes. (C) 2015 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:开发了一种生物启发的多层水凝胶,用于封装人间充质干细胞(hMSCs),作为骨软骨组织工程的平台。在每一层中,通过掺入细胞外基质类似物以及通过水凝胶交联密度和外部施加的机械负荷来表征生物化学线索的空间表达。采用一种简单的顺序光聚合方法来形成稳定的基于聚乙二醇的水凝胶,该凝胶具有柔软的软骨样层的硫酸软骨素和低RGD浓度,具有高RGD浓度的坚硬骨样层以及中间界面层。在压缩载荷下,每一层中水凝胶刚度的变化在软软骨样层中产生高应变,在坚硬的骨样层中产生低应变,并在界面层中产生中等应变。当载有hMSC的水凝胶在软骨分化培养基中静态培养时,21天后,局部生化和基质刚度提示不足以在空间上指导hMSC分化。然而,动态机械刺激导致胶原蛋白在软骨样层中的胶原蛋白II高表达,在界面层中的胶原蛋白X和在骨样层中胶原蛋白I的差异高表达,而矿物质沉积局限于骨层。总体而言,这些发现表明外部机械刺激是hMSC向骨软骨细胞表型分化的有效调节剂。 (C)2015 Acta Materialia Inc.,由Elsevier Ltd.发行。保留所有权利。

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