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血色素介导视网膜色素上皮中的蓝光损伤。

Hemoprotein(s) mediate blue light damage in the retinal pigment epithelium.

作者信息

Pautler E L, Morita M, Beezley D

机构信息

Department of Physiology, Colorado State University, Fort Collins 80523.

出版信息

Photochem Photobiol. 1990 May;51(5):599-605. doi: 10.1111/j.1751-1097.1990.tb01972.x.

Abstract

In order to elucidate the mechanisms of blue light damage on ocular tissues, the transepithelial transport, electrical characteristics and ultrastructural properties of irradiated isolated bovine retinal pigment epithelium (RPE) were investigated. Blue light (430 nm) irradiation at 20 mW/cm2 significantly reduced the transepithelial potential and short circuit current of RPE. During blue light exposure, a decrease in chloride transport was observed, and this decrease appeared to be closely coupled to changes in the electrical properties of the pigment epithelium. A decrease in leucine transport was also noted, but the effect required 10-30 min of exposure to be manifested on some occasions. Utilizing the observed depolarizing effect of blue light, an action spectrum was determined which encompasses the absorption spectrum of the oxidized and reduced forms of cytochrome c oxidase. O2 uptake studies on isolated pigment epithelial cells verified the reduction of respiration by exposure to blue light, which is observed in other cells. Ultrastructural studies revealed that the major cytopathology observed up to 60 min after blue light exposure was a blistering of the mitochondria which progressed to a swollen, disrupted state within the post irradiation period of 1 h. Comparison of these results with those of other studies suggests that the mechanism of UV-A damage differs substantially from that of blue light.

摘要

为了阐明蓝光对眼组织的损伤机制,对辐照后的离体牛视网膜色素上皮(RPE)的跨上皮运输、电特性和超微结构特性进行了研究。以20 mW/cm2的强度照射蓝光(430 nm)可显著降低RPE的跨上皮电位和短路电流。在蓝光照射期间,观察到氯化物运输减少,且这种减少似乎与色素上皮的电特性变化密切相关。还注意到亮氨酸运输减少,但在某些情况下,这种效应需要10 - 30分钟的照射才会显现。利用观察到的蓝光去极化效应,确定了一个作用光谱,该光谱涵盖了细胞色素c氧化酶氧化态和还原态的吸收光谱。对离体色素上皮细胞的氧气摄取研究证实,暴露于蓝光下会导致呼吸作用降低,这在其他细胞中也有观察到。超微结构研究表明,蓝光照射后60分钟内观察到的主要细胞病理学变化是线粒体起泡,在照射后1小时内发展为肿胀、破裂状态。将这些结果与其他研究结果进行比较表明,UV - A损伤机制与蓝光损伤机制有很大不同。

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