首页> 外文期刊>Journal of orthopaedic research >Bioreactor cultivation conditions modulate the composition and mechanical properties of tissue-engineered cartilage.
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Bioreactor cultivation conditions modulate the composition and mechanical properties of tissue-engineered cartilage.

机译:生物反应器的培养条件调节组织工程软骨的组成和力学性能。

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Cartilaginous constructs have been grown in vitro with use of isolated cells, biodegradable polymer scaffolds, and bioreactors. In the present work, the relationships between the composition and mechanical properties of engineered cartilage constructs were studied by culturing bovine calf articular chondrocytes on fibrous polyglycolic acid scaffolds (5 mm in diameter, 2-mm thick, and 97% porous) in three different environments: static flasks, mixed flasks, and rotating vessels. After 6 weeks of cultivation, the composition, morphology, and mechanical function of the constructs in radially confined static and dynamic compression all depended on the conditions of in vitro cultivation. Static culture yielded small and fragile constructs, while turbulent flow in mixed flasks yielded constructs with fibrous outer capsules; both environments resulted in constructs with poor mechanical properties. The constructs that were cultured freely suspended in a dynamic laminar flow field in rotating vessels were the largest, contained continuous cartilage-like extracellular matrices with the highest fractions of glycosaminoglycan and collagen, and had the best mechanical properties. The equilibrium modulus, hydraulic permeability, dynamic stiffness, and streaming potential correlated with the wet-weight fractions of glycosaminoglycan, collagen, and water. These findings suggest that the hydrodynamic conditions in tissue-culture bioreactors can modulate the composition, morphology, mechanical properties, and electromechanical function of engineered cartilage.
机译:使用分离的细胞,可生物降解的聚合物支架和生物反应器,已在体外培养了软骨构建体。在目前的工作中,通过在三种不同环境中的纤维状聚乙醇酸支架(直径为5 mm,厚度为2 mm且厚度为97%的多孔纤维)上培养牛小腿关节软骨细胞,研究了工程化软骨结构的组成与力学性能之间的关系。 :静态烧瓶,混合烧瓶和旋转容器。培养6周后,在径向限制的静态和动态压缩中,构建体的组成,形态和机械功能均取决于体外培养的条件。静态培养产生小的和易碎的构建体,而在混合烧瓶中的湍流则产生具有纤维状外囊的构建体。两种环境都导致结构的机械性能较差。在旋转的血管中动态悬浮在动态层流流场中自由培养的构建体最大,包含连续的软骨样细胞外基质,其中糖胺聚糖和胶原蛋白含量最高,并且具有最佳的机械性能。平衡模量,水力渗透性,动态刚度和流动电位与糖胺聚糖,胶原蛋白和水的湿重分数相关。这些发现表明组织培养生物反应器中的流体动力学条件可以调节工程软骨的组成,形态,机械性能和机电功能。

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