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Lutein and zeaxanthin supplementation reduces photo-oxidative damage and modulates the expression of inflammation-related genes in retinal pigment epithelial cells

机译:叶黄素和玉米黄芩苷补充剂可降低光氧化损伤并调节视网膜颜料上皮细胞中炎症相关基因的表达

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摘要

Oxidative damage and inflammation are related to the pathogenesis of age-related macular degeneration (AMD). Epidemiologic studies suggest that insufficient dietary lutein and zeaxanthin intake or lower serum zeaxanthin levels are associated with increased risk for AMD. The objective of this work is to test the protective effects of lutein and zeaxanthin against photo-oxidative damage to retinal pigment epithelial cells (RPE) and oxidation-induced changes in expression of inflammation-related genes. To mimic lipofuscin-mediated photo-oxidation in vivo, we used ARPE-19 cells that accumulated A2E, a lipofuscin fluorophore and photosensitizer, as a model system to investigate the effects of lutein and zeaxanthin supplementation. The data show that supplementation with lutein or zeaxanthin in the medium resulted in accumulation of lutein or zeaxanthin in the RPE cells. The concentrations of lutein and zeaxanthin in the cells were 2–14-fold of that detected in the medium, indicating that ARPE-19 cells actively take up lutein or zeaxanthin. As compared with untreated cells, exposure of A2E-containing RPE to blue light resulted in a 40–60% decrease in proteasome activity, a 50–80% decrease in expression of CFH and MCP-1, and an ~ 20-fold increase in expression of IL-8. The photo-oxidation-induced changes in expression of MCP-1, IL-8 and CFH were similar to those caused by chemical inhibition of the proteasome, suggesting that inactivation of the proteasome is involved in the photo-oxidation-induced alteration in expression of these inflammation-related genes. Incubation of the A2E-containing RPE with lutein or zeaxanthin prior to blue light exposure significantly attenuated the photo-oxidation-induced inactivation of the proteasome and photo-oxidation induced changes in expression of MCP-1, IL-8, and CFH. Together, these data indicate that lutein or zeaxanthin modulates inflammatory responses in cultured RPE in response to photo-oxidation. Protecting the proteasome from oxidative inactivation appears to be one of the mechanisms by which lutein and zeaxanthin modulate the inflammatory response. Similar mechanisms may explain salutary effects of lutein and zeaxanthin in reducing the risk for AMD.
机译:氧化损伤和炎症与年龄相关性黄斑变性(AMD)的发病机制有关。流行病学研究表明,膳食叶黄素和玉米黄质摄入量不足或血清玉米黄质水平不足,与AMD的风险增加有关。这项工作的目的是测试叶黄素和玉米黄质对视网膜色素上皮细胞(RPE)的光氧化损伤的保护作用和氧化诱导的炎症相关基因表达的变化。为了模仿脂血清介导的体内光氧化,我们使用累积A2e,脂血素荧光团和光敏剂的ARPE-19细胞作为培养叶黄素和玉米素补充的效果的模型系统。数据显示,用培养基中的叶黄素或玉米黄素的补充导致RPE细胞中的叶黄素或玉米黄质的积累。细胞中的叶黄素和玉米素的浓度为2-14倍,在培养基中检测到,表明ARPE-19细胞积极占据叶黄素或玉米黄质。与未处理的细胞相比,含A2E的RPE至蓝光的暴露导致40-60%的蛋白酶体活性降低,CFH和MCP-1表达的50-80%降低,并且增加了20倍IL-8的表达。光氧化诱导的MCP-1,IL-8和CFH表达的变化与由蛋白酶体的化学抑制引起的那些,表明蛋白酶体的灭活参与了光氧化诱导的表达的改变这些与炎症相关的基因。在蓝光暴露之前用叶黄素或玉米黄质孵育A2E的RPE,显着减弱了光氧化诱导的蛋白酶体和光氧化诱导的MCP-1,IL-8和CFH的变化的灭活。这些数据在一起表明叶黄素或玉米蛋白或玉米黄质试验响应于光氧化的培养RPE中的炎性反应。保护蛋白酶免受氧化灭活似乎是叶黄素和玉米蛋白和Zeaxanthin调节炎症反应的机制之一。类似的机制可以解释叶黄素和玉米黄质在降低AMD风险时的良好影响。

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