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Fluid flow increases mineralized matrix deposition in 3D perfusion culture of marrow stromal osteoblasts in a dose-dependent manner

机译:流体流量以剂量依赖的方式增加了骨髓基质成骨细胞3D灌注培养中矿化基质的沉积

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摘要

Bone is a complex highly structured mechanically active 3D tissue composed of cellular and matrix elements. The true biological environment of a bone cell is thus derived from a dynamic interaction between responsively active cells experiencing mechanical forces and a continuously changing 3D matrix architecture. To investigate this phenomenon in vitro, marrow stromal osteoblasts were cultured on 3D scaffolds under flow perfusion with different rates of flow for an extended period to permit osteoblast differentiation and significant matrix production and mineralization. With all flow conditions, mineralized matrix production was dramatically increased over statically cultured constructs with the total calcium content of the cultured scaffolds increasing with increasing flow rate. Flow perfusion induced de novo tissue modeling with the formation of pore-like structures in the scaffolds and enhanced the distribution of cells and matrix throughout the scaffolds. These results represent reporting of the long-term effects of fluid flow on primary differentiating osteoblasts and indicate that fluid flow has far-reaching effects on osteoblast differentiation and phenotypic expression in vitro. Flow perfusion culture permits the generation and study of a 3D, actively modeled, mineralized matrix and can therefore be a valuable tool for both bone biology and tissue engineering.
机译:骨骼是由细胞和基质元素组成的复杂的高度结构化的机械活性3D组织。因此,骨细胞的真正生物学环境是从经历机械力的响应性活跃细胞与不断变化的3D矩阵体系结构之间的动态相互作用中得出的。为了在体外研究这种现象,将骨髓基质成骨细胞在3D支架上以不同的血流速率进行血流灌注培养了一段较长的时间,以允许成骨细胞分化以及显着的基质生成和矿化。在所有流动条件下,矿化基质的产量均比静态培养的构建体显着增加,并且随着流速的增加,培养支架的总钙含量也随之增加。血流灌注诱导从头组织建模,在支架中形成孔状结构,并增强了整个支架中细胞和基质的分布。这些结果代表了流体流动对原代分化成骨细胞的长期影响的报道,并且表明流体流动对体外成骨细胞的分化和表型表达具有深远的影响。流量灌注培养可以生成和研究3D,主动建模的矿化基质,因此可以成为骨骼生物学和组织工程学的重要工具。

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