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3D Culture of Chondrocytes in Gelatin Hydrogels with Different Stiffness

机译:不同硬度明胶水凝胶中软骨细胞的3D培养

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摘要

Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneously, which makes them attractive for cartilage tissue engineering. Both the mechanical and biochemical properties of hydrogels can affect the phenotype of chondrocytes. However, the influence of each property on chondrocyte phenotype is unclear due to the difficulty in separating the roles of these properties. In this study, we aimed to study the influence of hydrogel stiffness on chondrocyte phenotype while excluding the role of biochemical factors, such as adhesion site density in the hydrogels. By altering the degree of methacryloyl functionalization, gelatin hydrogels with different stiffnesses of 3.8, 17.1, and 29.9 kPa Young’s modulus were prepared from the same concentration of gelatin methacryloyl (GelMA) macromers. Bovine articular chondrocytes were encapsulated in the hydrogels and cultured for 14 days. The influence of hydrogel stiffness on the cell behaviors including cell viability, cell morphology, and maintenance of chondrogenic phenotype was evaluated. GelMA hydrogels with high stiffness (29.9 kPa) showed the best results on maintaining chondrogenic phenotype. These results will be useful for the design and preparation of scaffolds for cartilage tissue engineering.
机译:明胶水凝胶可以模拟天然组织的微环境,并均匀地包裹细胞,这使其对软骨组织工程具有吸引力。水凝胶的机械和生化特性均可影响软骨细胞的表型。但是,由于很难分离这些特性的作用,因此每种特性对软骨细胞表型的影响尚不清楚。在这项研究中,我们旨在研究水凝胶刚度对软骨细胞表型的影响,同时排除生化因素的作用,例如水凝胶中的粘附位点密度。通过改变甲基丙烯酰基官能化的程度,从相同浓度的明胶甲基丙烯酰基(GelMA)大分子单体制备了具有不同刚度3.8、17.1和29.9 kPa的明胶水凝胶。将牛关节软骨细胞封装在水凝胶中并培养14天。评估了水凝胶刚度对细胞行为的影响,包括细胞活力,细胞形态和软骨形成表型的维持。高硬度(29.9 kPa)的GelMA水凝胶在保持软骨形成表型方面显示出最佳结果。这些结果对于用于软骨组织工程的支架的设计和制备将是有用的。

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