Alterations of Calcium Homeostasis Affect the Survival of Human Retinal Epithelial Cells

C. Yeung, K. Chan, S. Chiang, C. Pang, W. Ko, D. Lam
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引用次数: 1

Abstract

1. This study demonstrated that the modification of calcium concentrations ([Ca2 +]) could severely affect the viability of human retinal pigment epithelial (ARPE19) cells. 2. Pharmacological agents with varying mechanisms of action: verapamil (VP), diltiazem (DIL), caffeine (CF), papaverine (PA), forskolin (FSK), ryanodine (RYN), thapsigargin (THG), and cyclosporin A (CysA) were used to evaluate the effect of modifying cytosolic Ca2 + on the viability of ARPE19 cells. The difference in cell proliferations under different treatments was performed using 3‐(4,5‐dimethylthiazol‐2‐yl)‐2,5‐diphenyltetrazolium bromide (MTT) assay. Ca2 +‐imaging was used to determine the changes in intracellular Ca2 + levels ([Ca2 +]i) over 5 min of drug treatments. 3. Amongst the agents tested, PA, RYN, and THG actually increased the total number of cells initially on Day 1. However, apart from PA, all caused significant reduction of cell viability by Day 5. Variable [Ca2 +]i levels in the cells were obtained with significant rises in the presence of DIL, CF, PA, FSK, and CysA. Verapamil, RYN, and THG caused a rise in [Ca2 +]i, but the effect was not significant. 4. The present study showed that the APRE19 cells were very sensitive to the Ca2 + homeostasis. It is possible that other ocular cells may also display such vulnerability. Therefore, clinically used pharmacological agents that are known to affect Ca2 + must be treated with caution.
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钙稳态的改变影响人视网膜上皮细胞的存活
1. 本研究表明,钙浓度([Ca2 +])的改变会严重影响人视网膜色素上皮(ARPE19)细胞的活力。2. 采用不同作用机制的药物:异拉帕米(VP)、地尔硫平(DIL)、咖啡因(CF)、罂粟碱(PA)、福斯可林(FSK)、瑞诺定(RYN)、THG (THG)和环孢素A (CysA)来评估细胞内Ca2 +修饰对ARPE19细胞活力的影响。采用3‐(4,5‐二甲基噻唑‐2‐基)‐2,5‐二苯基溴化四氮唑(MTT)法测定不同处理下细胞增殖的差异。Ca2 +成像用于确定药物治疗5分钟内细胞内Ca2 +水平([Ca2 +]i)的变化。3.在测试的药物中,PA、RYN和THG实际上在第1天增加了细胞总数。但在第5天,除PA外,所有药物均导致细胞活力显著降低。在DIL、CF、PA、FSK和CysA存在的情况下,细胞中的可变[Ca2 +]i水平显著升高。维拉帕米、RYN和THG均引起[Ca2 +]i升高,但影响不显著。4. 本研究表明,APRE19细胞对Ca2 +稳态非常敏感。其他眼细胞也可能表现出这种脆弱性。因此,临床使用的已知影响Ca2 +的药物必须谨慎对待。
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