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Hyaluronic Acid Enhances the Mechanical Properties of Tissue-Engineered Cartilage Constructs

机译:透明质酸增强了组织工程软骨构建体的机械性能

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摘要

There is a need for materials that are well suited for cartilage tissue engineering. Hydrogels have emerged as promising biomaterials for cartilage repair, since, like cartilage, they have high water content, and they allow cells to be encapsulated within the material in a genuinely three-dimensional microenvironment. In this study, we investigated the mechanical properties of tissue-engineered cartilage constructs using in vitro culture models incorporating human chondrocytes from osteoarthritis patients. We evaluated hydrogels formed from mixtures of photocrosslinkable gelatin-methacrylamide (Gel-MA) and varying concentrations (0–2%) of hyaluronic acid methacrylate (HA-MA). Initially, only small differences in the stiffness of each hydrogel existed. After 4 weeks of culture, and to a greater extent 8 weeks of culture, HA-MA had striking and concentration dependent impact on the changes in mechanical properties. For example, the initial compressive moduli of cell-laden constructs with 0 and 1% HA-MA were 29 and 41 kPa, respectively. After 8 weeks of culture, the moduli of these constructs had increased to 66 and 147 kPa respectively, representing a net improvement of 69 kPa for gels with 1% HA-MA. Similarly the equilibrium modulus, dynamic modulus, failure strength and failure strain were all improved in constructs containing HA-MA. Differences in mechanical properties did not correlate with glycosaminoglycan content, which did not vary greatly between groups, yet there were clear differences in aggrecan intensity and distribution as assessed using immunostaining. Based on the functional development with time in culture using human chondrocytes, mixtures of Gel-MA and HA-MA are promising candidates for cartilage tissue-engineering applications.
机译:需要非常适合于软骨组织工程的材料。水凝胶已成为软骨修复的有前途的生物材料,因为与软骨一样,它们具有高的水含量,并且它们允许细胞在真正的三维微环境中封装在材料中。在这项研究中,我们使用体外培养模型并结合了骨关节炎患者的人软骨细胞,研究了组织工程软骨构建体的力学性能。我们评估了由可光交联的明胶-甲基丙烯酰胺(Gel-MA)和不同浓度(0–2%)的透明质酸甲基丙烯酸酯(HA-MA)的混合物形成的水凝胶。最初,每个水凝胶的刚度仅存在很小的差异。培养4周后,在更大程度上是培养8周后,HA-MA对机械性能的变化具有显着和浓度依赖性的影响。例如,具有0%和1%HA-MA的充满细胞的构建体的初始压缩模量分别为29 kPa和41 kPa。培养8周后,这些构建体的模量分别增加到66和147 kPa,代表含1%HA-MA的凝胶的净改进为69 kPa。类似地,在含有HA-MA的结构中,平衡模量,动态模量,破坏强度和破坏应变均得到改善。机械性能的差异与糖胺聚糖含量无关,组间糖胺聚糖的含量差异不大,但使用免疫染色评估的聚集蛋白聚糖强度和分布存在明显差异。基于使用人类软骨细胞在培养中随着时间的功能发展,Gel-MA和HA-MA的混合物有望用于软骨组织工程应用。

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