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Influence of hydrostatic and distortional stress on chondroinduction

机译:静水和变形应力对软骨诱导的影响

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Undifferentiated connective tissue that arises during embryonic development and some healing processes contains pluripotent mesenchymal stem cells. It is becoming increasingly evident that the mechanical environment is an important differentiation factor for these cells. In our laboratory, we have focused on the potential for mechanical signals to induce chon-drogenic differentiation of mesenchymal stem cells. Using C3H10T1/2 cells as a model, we have investigated the influence of hydrostatic pressure, equibiaxial contraction, and centrifugal pressure on chondroinduction. Cells responded to cyclic hydrostatic compression (5 MPa at 1 Hz) and cyclic contractile strain (15% at 1 Hz) by upregulating aggrecan and collagen type II gene expression. In addition, a preliminary study of the effects of centrifugal pressure (4.1 MPa for 30 min) suggests that it may increase cell proliferation and stimulate proteoglycan and collagen type II production. We speculate that compression, whether it is distortional or hydrostatic in nature, applied to undifferentiated connective tissue triggers differentiation toward a chondrocyte-like phenotype and production of a less permeable extracellular matrix which is capable of sustaining increasingly higher hydrostatic fluid pressure for compressive load support.
机译:在胚胎发育和某些愈合过程中出现的未分化结缔组织包含多能间充质干细胞。越来越明显的是,机械环境是这些细胞的重要分化因子。在我们的实验室中,我们专注于机械信号诱导间充质干细胞软骨源性分化的潜力。以C3H10T1 / 2细胞为模型,我们研究了静水压力,等双轴收缩和离心压力对软骨诱导的影响。细胞通过上调聚集蛋白聚糖和II型胶原蛋白基因表达来响应循环静水压缩(5 Hz在1 Hz下的压力)和循环收缩应变(在1 Hz下15%的响应)。此外,对离心压力(4.1 MPa,持续30分钟)的影响的初步研究表明,它可能会增加细胞增殖并刺激蛋白聚糖和II型胶原蛋白的产生。我们推测对未分化的结缔组织施加的压缩,无论是变形的还是静水压的,都会触发向软骨细胞样表型的分化,并产生渗透性较低的细胞外基质,该基质能够维持越来越高的静液压来支持压力负荷。

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