首页> 外文期刊>American Journal of Physiology >Using changes in hydrostatic and osmotic pressure to manipulate metabolic function in chondrocytes.
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Using changes in hydrostatic and osmotic pressure to manipulate metabolic function in chondrocytes.

机译:利用静水压和渗透压的变化来操纵软骨细胞中的代谢功能。

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摘要

Articular cartilage has distinct histological depth zones. In each zone, chondrocytes are subject to different hydrostatic (HP) and osmotic pressure (OP) due to weight-bearing and joint-loading. Previous in vitro studies of regeneration and pathophysiology in cartilage have failed to consider the characteristics of histological heterogeneity and the effects of combinations of changes in HP and OP. Thus, we have constructed molecular, biochemical, and histological profiles of anabolic and catabolic molecules produced by chondrocytes from each depth zone isolated from bovine articular cartilage in response to changes in HP and OP. We cultured the chondrocytes with combinations of loading or off-loading of HP at 0-0.5 MPa, 0.5 Hz, and changes in OP of 300-450 mosM over 1 wk, and evaluated mRNA expression and immunohistology of both anabolic and catabolic molecules and amounts of accumulated sulfated glycosaminoglycan. Any changes in HP and OP upregulated mRNA of anabolic and catabolic molecules in surface-, middle-, and deep-zone cells, in descending order of magnitude. Off-loading HP maintained the anabolic and reduced the catabolic mRNA; high OP retained upregulation of catabolic mRNA. These molecular profiles were consistent with immunohistological and biochemical findings. Changes in HP and OP are essential for simulating chondrocyte physiology and useful for manipulating phenotypes.
机译:关节软骨具有明显的组织学深度区域。在每个区域中,由于负重和接合负载,软骨细胞受到不同的静水压(HP)和渗透压(OP)。先前在软骨中的再生和病理生理学的体外研究未能考虑组织学异质性的特征以及HP和OP的变化组合的影响。因此,我们构建了由在从牛关节软骨中分离的每个深度区分离的软骨细胞产生的合成代谢和分解代谢分子的分子,生化和组织学谱响应于HP和OP的变化。我们以0-0.5MPa,0.5Hz的0-0.5MPa,0.5Hz的HP的组合培养软骨细胞,以及超过1WK的300-450MOSM的OP的变化,并评估了合成代谢和分解代谢分子的mRNA表达和免疫组织和量累积的硫酸甘油蛋聚糖。 HP和Op的任何变化和分解代谢分子在表面,中间和深区细胞中的递减序列的任何变化,处于下降阶数。卸载HP维持合成代谢并降低分解代谢mRNA;高欧普保留了分解代谢mRNA的上调。这些分子曲线与免疫系统和生化结果一致。 HP和OP的变化对于模拟软骨细胞生理学并可用于操纵表型是必不可少的。

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