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首页> 外文期刊>Transactions of the American Ophthalmological Society. >Enhanced Detection of Sub-Retinal Pigment Epithelial Cell Layer Deposits in Human and Murine Tissue: Imaging Zinc as a Biomarker for Age-Related Macular Degeneration (An American Ophthalmological Society Thesis)
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Enhanced Detection of Sub-Retinal Pigment Epithelial Cell Layer Deposits in Human and Murine Tissue: Imaging Zinc as a Biomarker for Age-Related Macular Degeneration (An American Ophthalmological Society Thesis)

机译:增强检测人和鼠组织中的视网膜下色素上皮细胞层沉积物:成像锌作为年龄相关性黄斑变性的生物标记(美国眼科学会论文)

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Purpose Understanding the apparent paradoxical role of zinc in the pathogenesis and prevention of age-related macular degeneration (AMD) has been limited by the lack of animal models for its detection in sub-retinal epithelial deposits (drusen), a definitive early hallmark of AMD. In-vitro studies using Zinpyr-1 showed drusen contained high levels of zinc, but the probe was not suitable for in-vivo studies. This study compares Zinpyr-1 to ZPP1, a new fluorescein-based probe for zinc, to assess the potential of ZPP1 for in-vivo detection of zinc in drusen. Methods Flat mounts of human sub-RPE tissue using the probes were analyzed by fluorescence and confocal microscopy. Flat mounts of sub-RPE tissue from mice deficient in superoxide dismutase isoform-1 (CuZn-SOD-KO) or isoform-2 (Mn-SOD-RPE-KO) were analyzed with sub-RPE deposits confirmed by histology. Results Drusen are detected in greater numbers and intensity with ZPP1 compared to Zinpyr-1. Using ZPP1, drusen was detected in a sample from a 46-year old human donor without ocular history, suggesting that ZPP1 might be sensitive enough to detect drusen at an early stage. With CuZn-SOD KO mice, ZPP1 detected sub-RPE deposits at 10 months of age, whereas Zinpyr-1 required 14 months. Conclusion Detection of sub-RPE deposits by ZPP1 was greatly enhanced compared to Zinpyr-1. This enhanced sensitivity will allow for more insightful analysis of zinc in AMD using human specimens and mouse models. This could result in the development of a sensitive in-vivo probe to enhance research on the role zinc in drusen formation and the early clinical diagnosis of AMD.
机译:目的了解锌在年龄相关性黄斑变性(AMD)的发病机理和预防中的明显反常作用,由于缺乏在视网膜下上皮沉积物(drusen)中进行检测的动物模型而受到局限,锌是AMD的明确早期特征。使用Zinpyr-1进行的体外研究显示玻璃疣含有较高水平的锌,但该探针不适用于体内研究。这项研究将Zinpyr-1与ZPP1(一种新的基于荧光素的锌探针)进行了比较,以评估ZPP1在玻璃膜疣中体内检测锌的潜力。方法使用荧光探针和共聚焦显微镜分析使用探针在人RPE亚组织上的平坦坐骑。通过组织学确认的亚RPE沉积物分析了来自超氧化物歧化酶isoform-1(CuZn-SOD-KO)或isoform-2(Mn-SOD-RPE-KO)缺陷的小鼠的亚RPE组织的平坦壁片。结果与Zinpyr-1相比,ZPP1检测到的玻璃疣数量和强度更高。使用ZPP1,在来自46岁无眼病史的人类供体的样本中检测到玻璃膜疣,这表明ZPP1可能足够灵敏,可以在早期检测出玻璃膜疣。对于CuZn-SOD KO小鼠,ZPP1在10个月大时检测到亚RPE沉积,而Zinpyr-1则需要14个月。结论与Zinpyr-1相比,ZPP1对亚RPE沉积物的检测大大提高。这种增强的灵敏度将允许使用人类标本和小鼠模型对AMD中的锌进行更深入的分析。这可能会导致开发出一种敏感的体内探针,以加强对锌在玻璃疣形成中的作用和AMD早期临床诊断的研究。

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