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Chondrocyte gene expression under applied surface motion

机译:施加表面运动下的软骨细胞基因表达

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A cartilage bioreactor has been designed that is intended to approximate the kinematics of natural joints and allows for functional cartilage tissue engineering studies. In particular, interface motion can be generated by oscillation of a ball over the surface of a construct. The present study investigated the specific effect of applied articular motion on the gene expression of chondrocytes cultured in 3D scaffolds, with a particular emphasis on different superficial zone protein (SZPyiubricin transcripts. Cylindrical porous polyurethane scaffolds were seeded with bovine articular chondrocytes and subjected to dynamic compression, with or without articulation against a ceramic hip ball. Articular motion markedly up-regulated the m RNA expression of the four previously described and two newly identified SZP/lubricin isoforms and of cartilage oligomeric matrix protein (COMP), and, to a lesser extent, aggrecan, type II collagen and TIMPs, while axial compression alone had no effect on the chondrocytes' gene expression levels. These results demonstrate the beneficial effect of articular motion not only for stimulation of important lubricating molecules, but also for the preservation of the chondrocytic phenotype.
机译:软骨生物反应器已经设计,旨在近似自然关节的运动学,并允许功能性软骨组织工程研究。特别地,可以通过在构造表面上振荡球来产生接口运动。本研究研究了施加关节运动对3D支架中培养的软骨细胞基因表达的具体效果,特别强调不同的浅表区蛋白(Szpyiubic蛋白转录物。用牛关节软骨细胞接种圆柱形多孔聚氨酯支架并进行动态压缩,有或没有针对陶瓷髋关节球的铰接。关节运动明显上调四个先前描述的M个RNA表达,以及两个新鉴定的SZP /润滑剂同种型和软骨寡聚基质蛋白(COMP),以及较小程度,聚集蛋白,II型胶原蛋白和Timps,而单独的轴向压缩对软骨细胞的基因表达水平没有影响。这些结果表明关节运动的有益效果不仅用于刺激重要的润滑剂分子,而且还用于保存软骨细胞的保存表型。

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