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Responses of different cell lines from ocular tissues to elevated hydrostatic pressure

机译:眼组织不同细胞系对静水压力升高的反应

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摘要

BACKGROUND/AIMS—Mechanical forces are thought to induce cellular responses through activation of signalling pathways. Cells within the intraocular environment are exposed to constant changes in the levels of intraocular pressure. In this study, an attempt was made to determine the acute effects of elevated hydrostatic pressure on different intraocular cells grown in culture.
METHODS—Different cell lines derived from ocular tissues including non-pigmented and pigmented ciliary epithelium, trabecular meshwork, retina, and lamina cribrosa were incubated in a pressurised chamber at 50 mm Hg in a culture incubator at 37°C for up to 6 hours. Control cells were incubated at atmospheric pressure. The viability of the cells was examined using their intracellular esterase activity. The morphology and cytoskeleton of the cells were investigated using microscopy and phalloidin staining. Adenylyl cyclase activity was assessed by measuring the conversion of [3H]-cAMP from [3H]-ATP in response to elevated hydrostatic pressure for 1-6 hours. In addition, at the end of incubation period under elevated hydrostatic pressure the recovery of adenylyl cyclase activity to control levels was examined.
RESULTS—Cell viability did not change following exposure to elevated hydrostatic pressure for 6 hours. Cells subjected to elevated hydrostatic pressure demonstrated morphological differences characterised by a more rounded shape and a redistribution of actin stress fibres that was most prominent in lamina cribrosa astrocytes. A time dependent increase in basal adenylyl cyclase activity, and a decrease in maximum forskolin stimulated activity were observed in all cell lines following exposure to elevated hydrostatic pressure.
CONCLUSION—These observations demonstrate that cell lines from different ocular tissues are sensitive to changes in external pressure in vitro. They exhibit morphological and cytoskeletal changes as well as significant alterations of intracellular adenylyl cyclase activity following exposure to acute and sustained levels of elevated hydrostatic pressure of up to 6 hours' duration.

机译:背景/目的-机械力被认为是通过激活信号通路来诱导细胞反应的。眼内环境中的细胞暴露于眼内压水平的恒定变化。在这项研究中,人们试图确定静水压力升高对培养物中不同眼内细胞的急性影响。视网膜和筛板在37°C的培养箱中于50mm Hg的加压室中保温6小时。对照细胞在大气压下孵育。使用细胞内酯酶活性检查细胞的活力。使用显微镜和鬼笔环肽染色研究细胞的形态和细胞骨架。腺苷酸环化酶活性通过测量1-6小时静水压升高对[ 3 H] -ATP从[ 3 H] -ATP的转化进行评估。此外,在静水压升高的温育期结束时,检查了腺苷酸环化酶活性恢复至对照水平。
结果-静水压升高6小时后,细胞活力未发生变化。承受较高静水压力的细胞表现出形态学差异,其特征是更圆润的形状和肌动蛋白应激纤维的重新分布,而肌动蛋白应激纤维在板层星形胶质细胞中最为突出。静水压力升高后,所有细胞系中的基础腺苷酸环化酶活性均呈时间依赖性增加,最大毛喉素刺激活性降低。
结论—这些观察结果表明,来自不同眼组织的细胞系对高密度脂蛋白敏感体外压力的变化。在暴露于持续时间长达6小时的急性和持续水平的静水压升高后,它们表现出形态和细胞骨架变化以及细胞内腺苷酸环化酶活性的显着改变。

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