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Fundus autofluorescence in the Abca4(-/-) mouse model of Stargardt disease--correlation with accumulation of A2E, retinal function, and histology.

机译:Stargardt病Abca4(-/-)小鼠模型中的眼底自发荧光-与A2E积累,视网膜功能和组织学相关。

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摘要

PURPOSE: To investigate fundus autofluorescence (AF) characteristics in the Abca4(-/-) mouse, an animal model for AMD and Stargardt disease, and to correlate findings with functional, structural, and biochemical assessments. METHODS: Blue (488 nm) and near-infrared (790 nm) fundus AF images were quantitatively and qualitatively analyzed in pigmented Abca4(-/-) mice and wild type (WT) controls in vivo. Functional, structural, and biochemical assessments included electroretinography (ERG), light and electron microscopic analysis, and A2E quantification. All assessments were performed across age groups. RESULTS: In Abca4(-/-) mice, lipofuscin-related 488 nm AF increased early in life with a ceiling effect after 6 months. This increase was first paralleled by an accumulation of typical lipofuscin granules in the retinal pigment epithelium (RPE). Later, lipofuscin and melanin granules decreased in number, whereas melanolipofuscin granules increased. This increase in melanolipofuscin granules paralleled an increase in melanin-related 790 nm AF. Old Abca4(-/-) mice revealed a flecked fundus AF pattern at both excitation wavelengths. The amount of A2E, a major lipofuscin component, increased 10- to 12-fold in 6- to 9-month-old Abca4(-/-) mice compared with controls, while 488 nm AF intensity only increased 2-fold. Despite pronounced lipofuscin accumulation in the RPE of Abca4(-/-) mice, ERG and histology showed a slow age-related thinning of the photoreceptor layer similar to WT controls up to 12 months. CONCLUSIONS: Fundus AF can be used to monitor lipofuscin accumulation and melanin-related changes in vivo in mouse models of retinal disease. High RPE lipofuscin may not adversely affect retinal structure or function over prolonged time intervals, and melanin-related changes (melanolipofuscin formation) may occur before the decline in retinal function.
机译:目的:研究Abca4(-/-)小鼠(一种AMD和Stargardt疾病的动物模型)的眼底自发荧光(AF)特征,并将发现与功能,结构和生化评估相关联。方法:在有色的Abca4(-/-)小鼠和野生型(WT)对照体内,定量和定性分析了蓝色(488 nm)和近红外(790 nm)眼底AF图像。功能,结构和生化评估包括视网膜电图(ERG),光学和电子显微镜分析以及A2E定量。所有评估均按年龄段进行。结果:在Abca4(-/-)小鼠中,脂褐素相关的488 nm AF在生命的早期增加,并在6个月后达到上限。这种增加首先与典型的脂褐素颗粒在视网膜色素上皮(RPE)中的积累平行。后来,脂褐素和黑色素颗粒的数量减少,而黑素脂褐素颗粒增加。黑素脂褐素颗粒的增加与黑色素相关的790 nm AF的增加平行。老Abca4(-/-)小鼠在两个激发波长下均显示出斑点状的眼底AF模式。与对照组相比,在6至9个月大的Abca4(-/-)小鼠中,主要的脂褐素成分A2E的量增加了10至12倍,而488 nm AF强度仅增加了2倍。尽管脂褐素在Abca4(-/-)小鼠的RPE中明显积累,但ERG和组织学显示,与年龄相关的感光细胞层变薄与年龄相关,与野生型对照一样长达12个月。结论:眼底AF可用于监测视网膜疾病小鼠模型中的脂褐素积累和体内黑色素相关变化。高RPE脂褐素可能不会在较长的时间间隔内对视网膜结构或功能产生不利影响,并且在视网膜功能下降之前可能会发生黑色素相关变化(黑素脂褐素形成)。

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