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首页> 外文期刊>The Journal of Nutritional Biochemistry >Biological role of lutein in the light-induced retinal degeneration.
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Biological role of lutein in the light-induced retinal degeneration.

机译:叶黄素在光诱导性视网膜变性中的生物学作用。

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摘要

Lutein, a xanthophyll of a carotenoid, is anticipated as a therapeutic product to prevent human eye diseases. However, its biological mechanism is still unclear. Here, we show the molecular mechanism of lutein's effect to reduce photodamage of the retina. We analyzed the light-exposed retinas of Balb/c mice given lutein-supplemented or normal diet. Visual function was measured by electroretinogram, and histological changes were observed. Immunohistochemical and immunoblot analyses were performed to analyze molecular mechanism. The reactive oxygen species induced in the retina was evaluated by fluorescent probes. In the mice after light exposure, reduction of a-wave and b-wave amplitudes in electroretinogram, indicating visual impairment, and thinning of the photoreceptor cell layer owing to apoptosis were both attenuated by lutein diet. Interestingly, gamma-H2AX, a marker for double-strand breaks (DSBs) in DNA, was up-regulated in the photoreceptor cells after light exposure, but this increase was attenuated by lutein diet, suggesting that DSBs caused by photodamage contributed to the photoreceptor cell death and that this change was suppressed by lutein. Moreover, the expression of eyes absent (EYA), which promotes DNA repair and cell survival, was significantly up-regulated with lutein diet in the light-exposed retina. Therefore, lutein induced EYA for DNA repair, which could suppress DNA damage and photoreceptor cell apoptosis. Lutein reduced light-induced oxidative stress in the retina, which might contribute to promote DNA repair. The lutein-supplemented diet attenuated light-induced visual impairment by protecting the photoreceptor cells' DNA
机译:叶黄素是类胡萝卜素的叶黄素,有望作为预防人眼疾病的治疗产品。但是,其生物学机制仍不清楚。在这里,我们显示了叶黄素减少视网膜光损伤的分子机制。我们分析了补充叶黄素或正常饮食的Balb / c小鼠的曝光视网膜。通过视网膜电图测量视觉功能,并观察组织学变化。进行了免疫组织化学和免疫印迹分析以分析分子机制。用荧光探针评估视网膜中诱导的活性氧。叶黄素饮食可减轻小鼠在暴露于视网膜后的视网膜电图中a波和b波幅值的降低,表明视力受损,以及由于凋亡引起的感光细胞层变薄。有趣的是,γ-H2AX是DNA中双链断裂(DSBs)的标志物,受光后其光感受器细胞上调,但叶黄素饮食会减弱这种增加,表明光损伤引起的DSB有助于光感受器。细胞死亡,而这种变化被叶黄素抑制。此外,叶黄素饮食在光线暴露的视网膜中可显着上调促进DNA修复和细胞存活的眼睛缺失(EYA)的表达。因此,叶黄素诱导EYA进行DNA修复,从而可以抑制DNA损伤和感光细胞凋亡。叶黄素减少了视网膜中光诱导的氧化应激,这可能有助于促进DNA修复。叶黄素补充饮食通过保护感光细胞的DNA减轻了光诱导的视觉障碍

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