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紫外线照射(UVB)会中断晶状体上皮细胞中的钙信号传导。

Ultraviolet irradiation (UVB) interrupts calcium cell signaling in lens epithelial cells.

作者信息

Hightower K R, Duncan G, Dawson A, Wormstone I M, Reddan J, Dziedizc D

机构信息

Eye Research Institute, Oakland University, Rochester, MI 48309-4401, USA.

出版信息

Photochem Photobiol. 1999 May;69(5):595-8.

Abstract

A preliminary study was undertaken to establish whether low-dose UV irradiation (UVB) affects calcium cell signaling in rabbit lens epithelia. In a suspension of lens epithelial cells (line NN1003A), changes in intracellular Ca2+ were measured by Fura-2 fluorescence in response to exogenously added ATP. The cellular response to ATP, referred to as the calcium signal, is characterized by a brief increase and subsequent decrease in cytosolic Ca2+ levels. Ultraviolet B irradiation (1.8-9 mJ/cm2) was found to reduce the magnitude of the Ca2+ signal in a dose-dependent manner. A 5 min UVB exposure (9 mJ/cm2) completely altered the biphasic nature of the calcium signal, causing only an immediate and steady rise in cytosol Ca2+ levels. Lower fluences of UVB irradiation (2 min exposure times or 3.6 mJ/cm2) induced a 50% reduction in the calcium signal. When irradiated cells were returned to culture for 3 h after irradiation, calcium signals induced by ATP were normal. In view of the photooxidative nature of UVB irradiation, the oxidative state of cells was assessed by measuring glutathione (GSH) levels. Ultraviolet B irradiation caused a rapid 20% decline in GSH levels that returned to near-control values after a 3 h postirradiation incubation. The results of this study indicate that fluences lower than previously found to be cataractogenic can perturb calcium cell signaling in cultured lens epithelial cells.

摘要

开展了一项初步研究,以确定低剂量紫外线照射(UVB)是否会影响兔晶状体上皮细胞中的钙细胞信号传导。在晶状体上皮细胞悬液(NN1003A系)中,通过Fura-2荧光测量细胞内Ca2+对外源性添加ATP的反应变化。细胞对ATP的反应,即钙信号,其特征是胞质Ca2+水平先短暂升高,随后下降。发现紫外线B照射(1.8 - 9 mJ/cm2)以剂量依赖方式降低Ca2+信号的幅度。5分钟的UVB照射(9 mJ/cm2)完全改变了钙信号的双相性质,导致胞质Ca2+水平仅立即且持续升高。较低剂量的UVB照射(2分钟照射时间或3.6 mJ/cm2)使钙信号降低50%。照射后的细胞在照射后放回培养3小时后,ATP诱导的钙信号正常。鉴于UVB照射的光氧化性质,通过测量谷胱甘肽(GSH)水平评估细胞的氧化状态。紫外线B照射导致GSH水平迅速下降20%,照射后孵育3小时后恢复到接近对照值。这项研究的结果表明,低于先前发现致白内障剂量的辐照量可扰乱培养的晶状体上皮细胞中的钙细胞信号传导。

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