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Retinal pigment epithelium defects accelerate photoreceptor degeneration in cell type-specific knockout mouse models of choroideremia.

机译:视网膜色素上皮缺陷加速了脉络膜异常的细胞类型特异性敲除小鼠模型中的感光细胞变性。

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摘要

PURPOSE: Choroideremia (CHM) is a progressive X-linked degeneration of three ocular layers (photoreceptors, retinal pigment epithelium, and choroid), with a complex and still largely unclear pathogenesis. To investigate the pathophysiology of CHM, the authors engineered mice with a cell type-specific Chm/Rep1 knockout (KO). METHODS: A mouse line carrying a conditional allele Chm(Flox) was crossed with the transgenic line IRBP-Cre to achieve Chm KO, specifically in the photoreceptor layer, and Tyr-Cre to produce Chm KO, specifically in the retinal pigment epithelial and other pigmented cells. Chm(Flox), Tyr-Cre+ and Chm(Flox), IRBP-Cre+ mice were mated to produce mice with Chm KO in both layers. All mouse lines were studied by histology, electron microscopy, electroretinography (ERG), scanning laser ophthalmoscopy (SLO), and biochemical METHODS: RESULTS: In Chm(Flox), IRBP-Cre+ mice the authors observed the progressive degeneration of photoreceptors in the presence of normal retinal pigment epithelium (RPE). Chm(Flox), Tyr-Cre+ mice exhibited coat color dilution and pigment abnormalities of the RPE in the presence of an intact outer nuclear layer. In 6- to 8-month-old Chm(Flox), Tyr-Cre+, IRBP-Cre+ mice, the degeneration of photoreceptors was accelerated compared with Chm(Flox), IRBP-Cre+ mice but became leveled with age, such that it was comparable at 12 to 14 months. Detailed ERG and SLO analysis supported the histopathologic findings. CONCLUSIONS: Defects in photoreceptors and RPE can arise because of intrinsic defects caused cell autonomously by the Chm KO. However, when both photoreceptors and RPE are diseased, the dynamics of the degenerative process are altered. Photoreceptor functional deficit and cell death manifest much earlier, suggesting that the diseased RPE accelerates photoreceptor degeneration.
机译:目的:脉络膜炎(CHM)是三个眼层(感光器,视网膜色素上皮和脉络膜)的进行性X连锁变性,其发病机理复杂且尚不清楚。为了研究CHM的病理生理,作者设计了具有细胞类型特异性Chm / Rep1基因敲除(KO)的小鼠。方法:将携带有条件等位基因Chm(Flox)的小鼠品系与转基因品系IRBP-Cre杂交,以实现Chm KO(特别是在感光层中)和Tyr-Cre产生Chm KO,特别是在视网膜色素上皮和其他方面色素细胞。将Chm(Flox),Tyr-Cre +和Chm(Flox),IRBP-Cre +小鼠交配,以产生两层均带有Chm KO的小鼠。通过组织学,电子显微镜,视网膜电图(ERG),扫描激光检眼镜(SLO)和生化方法对所有小鼠系进行了研究。结果:在Chm(Flox)IRBP-Cre +小鼠中,作者观察到在存在下光感受器逐渐退化正常视网膜色素上皮(RPE)。 Chm(Flox),Tyr-Cre +小鼠在完整的外核层存在下表现出毛色稀释和RPE的色素异常。在6至8个月大的Chm(Flox),Tyr-Cre +,IRBP-Cre +小鼠中,与Chm(Flox),IRBP-Cre +小鼠相比,光感受器的退化加速,但随着年龄的增长而变平。在12到14个月时可比。详细的ERG和SLO分析支持组织病理学发现。结论:由于Chm KO自主引起细胞内在的缺陷,可能会导致感光细胞和RPE的缺陷。但是,当光感受器和RPE都患病时,退化过程的动力学就会改变。感光细胞功能缺陷和细胞死亡的出现要早得多,这表明患病的RPE加速了感光细胞的变性。

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