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The influence and interactions of hydrostatic and osmotic pressures on the intracellular milieu of chondrocytes

机译:静水压力和渗透压对软骨细胞胞内环境的影响和相互作用

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The intracellular milieu of chondroctyes is regulated by an array of proteins in the cell membrane which operate as transport pathways, allowing ions and nutrients such as glucose and amino acids and metabolites such as lactate to cross the plasma membrane. Here we investigated the influence of hydrostatic pressure on intracellular calcium concentrations ([Ca~(2+)]_i) in isolated bovine articular chondrocytes. We found that short applications of high hydrostatic pressures led to a significant increase in [Ca~(2+)]_i. The pressure-induced rise was abolished for long (240 sec) but not short (30 sec) pressure applications by removal of extracellular Ca~(2+). The rise in pressure was also blocked by the inhibitors neomycin and thapsigargin confirming that pressure, by generating IP_3, led to an increase in [Ca~(2+)]_i by mobilising the pool of Ca~(2+) ions contained within intracellular stores. We also found that intracellular [Na~+] was affected by a rise in osmotic pressure and further affected by application of hydrostatic pressure. The effect of hydrostatic pressure on sulphate incorporation depended strongly on extracellular osmolality. Since significant gradients in extracellular osmolality exist across intact cartilage, the results imply that responses of chondrocytes to the same pressure will vary depending on location in the joint. The results also indicate that hydrostatic pressures can affect several different transporter systems thus influencing the intracellular milieu and chondrocyte metabolism.
机译:软骨细胞的细胞内环境受到细胞膜中一系列蛋白质的调控,这些蛋白质作为运输途径,允许离子和营养物质(例如葡萄糖和氨基酸)和代谢产物(例如乳酸盐)穿过质膜。在这里,我们研究了静水压力对分离的牛关节软骨细胞中细胞内钙浓度([Ca〜(2 +)] _ i)的影响。我们发现,短暂施加高静水压力会导致[Ca〜(2 +)] _ i显着增加。通过去除细胞外Ca〜(2+),长时(240秒)但短时(30秒)的压力消除了压力引起的上升。压力的上升也被抑制剂新霉素和毒胡萝卜素所阻止,证实压力通过产生IP_3,通过动员细胞内包含的Ca〜(2+)离子池导致[Ca〜(2 +)] _ i升高。商店。我们还发现细胞内[Na〜+]受渗透压升高的影响,并进一步受到静水压力的影响。静水压力对硫酸盐掺入的影响在很大程度上取决于细胞渗透压。由于跨完整软骨存在细胞外渗透压的显着梯度,因此结果暗示软骨细胞对相同压力的反应将根据关节位置而变化。结果还表明静水压力可以影响几个不同的转运系统,从而影响细胞内环境和软骨细胞的代谢。

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