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Dynamic Mechanical Loading Enhances Functional Properties of Tissue-Engineered Cartilage Using Mature Canine Chondrocytes

机译:动态机械载荷增强了使用成熟犬软骨细胞的组织工程软骨的功能特性

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摘要

ObjectiveThe concept of cartilage functional tissue engineering (FTE) has promoted the use of physiologic loading bioreactor systems to cultivate engineered tissues with load-bearing properties. Prior studies have demonstrated that culturing agarose constructs seeded with primary bovine chondrocytes from immature joints, and subjected to dynamic deformation, produced equilibrium compressive properties and proteoglycan content matching the native tissue. In the process of translating these results to an adult canine animal model, it was found that protocols previously successful with immature bovine primary chondrocytes did not produce the same successful outcome when using adult canine primary chondrocytes. The objective of this study was to assess the efficacy of a modified FTE protocol using adult canine chondrocytes seeded in agarose hydrogel and subjected to dynamic loading.
机译:目的软骨功能组织工程学(FTE)的概念促进了使用生理负载生物反应器系统来培养具有承重特性的工程组织。先前的研究表明,从未成熟的关节培养接种了原代牛软骨细胞的琼脂糖构建体,并进行动态变形,产生了与天然组织相匹配的平衡压缩特性和蛋白聚糖含量。在将这些结果转化为成年犬动物模型的过程中,发现使用成年犬原代软骨细胞先前未成熟的牛原代软骨细胞成功的方案并没有产生相同的成功结果。这项研究的目的是评估使用琼脂糖水凝胶中接种的成年犬软骨细胞并动态加载的改良FTE方案的功效。

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