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首页> 外文期刊>Investigative ophthalmology & visual science >Iron, ferritin, transferrin, and transferrin receptor in the adult rat retina.
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Iron, ferritin, transferrin, and transferrin receptor in the adult rat retina.

机译:成年大鼠视网膜中的铁,铁蛋白,转铁蛋白和转铁蛋白受体。

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PURPOSE: The retina and other tissues need iron to survive. However, the normal iron metabolism in rodent retinas had not been characterized. This study was intended to investigate iron and iron homeostasis protein (ferritin, transferrin [Tf] and transferrin receptor [Tf-R]) distribution in 20- to 55-day-old rat retinas. METHODS: Iron was revealed on retinal sections directly by proton-induced x-ray emission (PIXE) and indirectly by electron microscopy (EM). Ferritin, Tf, and Tf-R proteins were localized by immunohistochemistry. Transferrin expression was localized by in situ hybridization (ISH). Transferrin and ferritin proteins and mRNA were analyzed by Western blot analysis and reverse transcription-polymerase chain reaction (RT-PCR), respectively. RESULTS: Iron is widely and unevenly distributed throughout the adult rat retina. The highest concentration was observed by PIXE in the choroid and the retinal pigmented epithelial cell (RPE) layer, and in inner segments of photoreceptors (IS). Outer segments of photoreceptors (OS) also contain iron. EM studies suggested the presence of iron inclusions inside the photoreceptor discs. Choroid, RPE, and IS showed a strong immunoreactivity for ferritin. Transferrin accumulated mainly in the IS and OS areas and in RPE cells but can also be detected slightly in retinal capillaries. Western blot analysis for Tf and ferritin confirmed their presence in the adult neural retina. By RT-PCR, H- and L-chains of ferritin and Tf mRNAs were expressed in neural retina, but the main sites of Tf synthesis observed by ISH were the RPE and choroid cell layers. Tf-R immunoreactivity was detected in the ganglion cell layer, inner nuclear layer, outer plexiform layer, IS, RPE, and choroid. These results were similar for all stages studied. CONCLUSIONS: For the first time, the present study characterized both iron and iron homeostasis proteins in rodent retinas. In the outer retina, iron and ferritin shared the same distribution patterns. In contrast, Tf, mainly synthesized by RPE cells and detected in OS and IS areas, probably helps to transport iron to photoreceptors through their Tf-R. This is a likely pathway for filling iron needs in the outer retina.
机译:目的:视网膜和其他组织需要铁才能生存。但是,啮齿类动物视网膜中正常的铁代谢尚未被鉴定。这项研究旨在研究20至55天大的大鼠视网膜中铁和铁稳态蛋白(铁蛋白,转铁蛋白[Tf]和转铁蛋白受体[Tf-R])的分布。方法:通过质子诱导的X射线发射(PIXE)直接在视网膜切片上显示铁,而通过电子显微镜(EM)间接显示铁。铁蛋白,Tf和Tf-R蛋白通过免疫组织化学定位。通过原位杂交(ISH)定位转铁蛋白表达。分别通过蛋白质印迹分析和逆转录聚合酶链反应(RT-PCR)分析了转铁蛋白和铁蛋白的蛋白及mRNA。结果:铁在成年大鼠视网膜中广泛且分布不均。 PIXE在脉络膜和视网膜色素上皮细胞(RPE)层以及感光细胞(IS)的内部片段中观察到最高浓度。感光体(OS)的外部也包含铁。 EM研究表明,感光盘内部存在铁夹杂物。脉络膜,RPE和IS对铁蛋白具有很强的免疫反应性。转铁蛋白主要聚集在IS和OS区域以及RPE细胞中,但在视网膜毛细血管中也可以轻微检测到。 Tf和铁蛋白的蛋白质印迹分析证实了它们存在于成年神经视网膜中。通过RT-PCR,铁蛋白和Tf mRNA的H和L链在神经视网膜中表达,但ISH观察到的Tf合成的主要位点是RPE和脉络膜细胞层。在神经节细胞层,内核层,外丛状层,IS,RPE和脉络膜中检测到Tf-R免疫反应性。在所有研究阶段,这些结果都是相似的。结论:本研究首次在啮齿类动物视网膜中鉴定了铁和铁稳态蛋白。在视网膜的外部,铁和铁蛋白具有相同的分布模式。相比之下,Tf主要由RPE细胞合成并在OS和IS区域检测到,可能有助于通过铁的Tf-R将铁转运至感光体。这可能是满足外部视网膜铁需求的途径。

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