首页> 外文期刊>Investigative ophthalmology & visual science >Human RPE melanosomes protect from photosensitized and iron-mediated oxidation but become pro-oxidant in the presence of iron upon photodegradation.
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Human RPE melanosomes protect from photosensitized and iron-mediated oxidation but become pro-oxidant in the presence of iron upon photodegradation.

机译:人RPE黑素体可防止光敏化和铁介导的氧化,但在铁降解后在铁存在下会变成促氧化剂。

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PURPOSE: To determine the effects of human retinal pigment epithelial (RPE) cell pigment granules on photosensitized and iron ion-mediated oxidation and the effect of the photodegradation of melanosomes on their antioxidant properties. METHODS: RPE cells were isolated from human and bovine eyes; pigmented and nonpigmented bovine retinal pigment epithelia were isolated separately. Melanosomes, melanolipofuscin, and lipofuscin granules were isolated from human RPE donors older than 60. Melanosomes were photodegraded by exposure to blue light. Oxidation of RPE cells or of linoleate was induced by iron/ascorbate in the presence and absence of pigment granules. The photosensitized oxidation of histidine was induced by blue light irradiation of cationic porphyrin. The progress of oxidation was monitored by electron spin resonance oximetry. RESULTS: Iron/ascorbate induced rapid oxidation in suspensions of nonpigmented bovine RPE cells. The rates of oxidation were diminished approximately four times in suspensions of pigmented bovine RPE cells. Adding bovine melanosomes or synthetic melanin to nonpigmented bovine RPE cells resulted in a concentration-dependent decrease in the rate of oxidation to levels similar to those of pigmented bovine retinal pigment epithelium. Human melanosomes exerted a concentration-dependent inhibitory effect on photosensitized and iron-mediated oxidation. Photodegradation of human melanosomes led to loss of the inhibitory effect on iron-mediated oxidation, whereas their ability to inhibit photosensitized oxidation was enhanced. CONCLUSIONS: Human melanosomes act as effective antioxidants by preventing iron ion-induced oxidation. Photodegradation of melanosomes results in the loss of these antioxidant properties while it preserves their ability to deactivate cationic photosensitizers.
机译:目的:确定人类视网膜色素上皮(RPE)细胞色素颗粒对光敏和铁离子介导的氧化的影响以及黑素体的光降解对其抗氧化性能的影响。方法:从人眼和牛眼中分离出RPE细胞。有色和无色牛视网膜色素上皮细胞分别分离。从60岁以上的人类RPE供体中分离出了黑素体,黑素脂褐素和脂褐素颗粒。黑素体通过暴露于蓝光而被光降解。在存在和不存在颜料颗粒的情况下,铁/抗坏血酸诱导RPE细胞或亚油酸的氧化。组氨酸的光敏氧化是通过阳离子卟啉的蓝光照射诱导的。通过电子自旋共振血氧测定法监测氧化的进程。结果:铁/抗坏血酸诱导了无色素牛RPE细胞悬浮液中的快速氧化。在有色牛RPE细胞的悬浮液中,氧化速率降低了约四倍。将牛黑素体或合成的黑色素添加到无色素的牛RPE细胞中,导致氧化速率的浓度依赖性降低,其降低速度类似于有色的牛视网膜色素上皮细胞。人黑素体对光敏和铁介导的氧化作用具有浓度依赖性的抑制作用。人类黑素体的光降解导致对铁介导的氧化的抑制作用丧失,而它们抑制光敏氧化的能力增强。结论:人黑素体通过防止铁离子诱导的氧化而充当有效的抗氧化剂。黑素体的光降解导致这些抗氧化剂特性的丧失,同时保留了它们使阳离子光敏剂失活的能力。

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