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DYNAMIC CULTURE IMPROVES MECHANICAL FUNCTIONALITY OF MSC-LADEN TISSUE ENGINEERED CONSTRUCTS IN A DEPTH-DEPENDENT MANNER

机译:动态培养以深度依赖的方式改善了MSC-Laden组织工程构建体的机械功能

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Limitations associated with the use of autologous chondrocytes (CH) for cartilage tissue engineering beget the need for alternative cell sources. Mesenchymal stem cells (MSC) are clinically attractive due to their ability to undergo chondrogenesis in three-dimensional culture [1,2]; however, when compared to CH, MSC fail to develop functional equivalence [2,3]. We have previously shown a marked depth-dependence in local equilibrium modulus of MSC-laden gels, with the superficial zones (where maximal media exchange occurs) considerably stiffer than regions removed from nutrient supply (center and bottom of construct); less dramatic depth-dependence was observed in CH-laden gels [4]. Similarly, other studies have shown depth-dependent properties in CH-laden gels with the construct edge generally stiffer than the center [5]. Given this apparent influence of nutrient supply, the objective of the current study was to assess the impact of dynamic culture (via orbital shaking) on the development of depth-dependent mechanical properties in both MSC and CH-laden hydrogels. Furthermore, we assessed cell viability and matrix content throughout the construct depth to determine the mechanism by which this depth-dependency arises. We hypothesized that improved nutrient transport would reduce construct inhomogeneity (particularly for MSC-laden constructs) and improve bulk mechanical properties.
机译:用于使用自体软骨细胞(CH)的局限性用于软骨组织工程,可以获得替代细胞来源。间充质干细胞(MSC)由于其在三维培养中进行后生物发生的能力而临床吸引力[1,2];但是,与CH相比,MSC无法开发功能等价[2,3]。我们之前已经示出了MSC-升起凝胶的局部平衡模量的明显深度依赖性,浅表区(发生最大媒体交换)比从营养供应(构造的中心和底部)中除去的区域相当逆时同地逆时;在Ch-Laden凝胶中观察到较少的戏剧性深度依赖性[4]。类似地,其他研究在Ch-Laden凝胶中显示了深度依赖性,其与构造边缘通常比中心更硬于[5]。鉴于营养供应的这种明显影响,目前研究的目的是评估动态培养(通过轨道摇动)对MSC和Ch-升水水凝胶中深度依赖性机械性能的影响的影响。此外,我们评估了整个构造深度的细胞活力和矩阵内容,以确定产生这种深度依赖性的机制。我们假设改善的营养转运将减少构建体不均匀性(特别是用于MSC-升起的构建体)并改善散装机械性能。

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