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Rescue of the MERTK phagocytic defect in a human iPSC disease model using translational read-through inducing drugs.使用翻译通读诱导药物挽救人类 iPSC 疾病模型中的 MERTK 吞噬缺陷。
Sci Rep. 2017 Mar 3;7(1):51. doi: 10.1038/s41598-017-00142-7.
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Reversal of Phenotypic Abnormalities by CRISPR/Cas9-Mediated Gene Correction in Huntington Disease Patient-Derived Induced Pluripotent Stem Cells.通过CRISPR/Cas9介导的基因校正逆转亨廷顿病患者来源的诱导多能干细胞中的表型异常
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Subretinal Pigment Epithelial Deposition of Drusen Components Including Hydroxyapatite in a Primary Cell Culture Model.在原代细胞培养模型中,玻璃膜疣成分(包括羟基磷灰石)的视网膜色素上皮下沉积
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Cell Stem Cell. 2017 May 4;20(5):635-647.e7. doi: 10.1016/j.stem.2016.12.015. Epub 2017 Jan 26.
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Induced Pluripotent Stem Cells Meet Genome Editing.诱导多能干细胞与基因组编辑相遇。
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A Single CRISPR-Cas9 Deletion Strategy that Targets the Majority of DMD Patients Restores Dystrophin Function in hiPSC-Derived Muscle Cells.一种针对大多数杜氏肌营养不良症(DMD)患者的单一CRISPR-Cas9缺失策略可恢复人诱导多能干细胞(hiPSC)衍生的肌肉细胞中的肌营养不良蛋白功能。
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A local complement response by RPE causes early-stage macular degeneration.视网膜色素上皮细胞的局部补体反应会导致早期黄斑变性。
Hum Mol Genet. 2015 Oct 1;24(19):5555-69. doi: 10.1093/hmg/ddv287. Epub 2015 Jul 21.
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Age-related macular degeneration and changes in the extracellular matrix.年龄相关性黄斑变性与细胞外基质的变化
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Gene therapy in patient-specific stem cell lines and a preclinical model of retinitis pigmentosa with membrane frizzled-related protein defects.针对患者特异性干细胞系的基因治疗以及患有膜卷曲相关蛋白缺陷的视网膜色素变性临床前模型。
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黄斑营养不良患者来源的 hiPSC-RPE 模型中的玻璃膜疣。

Drusen in patient-derived hiPSC-RPE models of macular dystrophies.

机构信息

Department of Ophthalmology, University of Rochester, Rochester, NY 14642.

Department of Biomedical Genetics, University of Rochester, Rochester, NY 14642.

出版信息

Proc Natl Acad Sci U S A. 2017 Sep 26;114(39):E8214-E8223. doi: 10.1073/pnas.1710430114. Epub 2017 Sep 6.

DOI:10.1073/pnas.1710430114
PMID:28878022
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5625924/
Abstract

Age-related macular degeneration (AMD) and related macular dystrophies (MDs) are a major cause of vision loss. However, the mechanisms underlying their progression remain ill-defined. This is partly due to the lack of disease models recapitulating the human pathology. Furthermore, in vivo studies have yielded limited understanding of the role of specific cell types in the eye vs. systemic influences (e.g., serum) on the disease pathology. Here, we use human induced pluripotent stem cell-retinal pigment epithelium (hiPSC-RPE) derived from patients with three dominant MDs, Sorsby's fundus dystrophy (SFD), Doyne honeycomb retinal dystrophy/malattia Leventinese (DHRD), and autosomal dominant radial drusen (ADRD), and demonstrate that dysfunction of RPE cells alone is sufficient for the initiation of sub-RPE lipoproteinaceous deposit (drusen) formation and extracellular matrix (ECM) alteration in these diseases. Consistent with clinical studies, sub-RPE basal deposits were present beneath both control (unaffected) and patient hiPSC-RPE cells. Importantly basal deposits in patient hiPSC-RPE cultures were more abundant and displayed a lipid- and protein-rich "drusen-like" composition. Furthermore, increased accumulation of COL4 was observed in ECM isolated from control vs. patient hiPSC-RPE cultures. Interestingly, RPE-specific up-regulation in the expression of several complement genes was also seen in patient hiPSC-RPE cultures of all three MDs (SFD, DHRD, and ADRD). Finally, although serum exposure was not necessary for drusen formation, COL4 accumulation in ECM, and complement pathway gene alteration, it impacted the composition of drusen-like deposits in patient hiPSC-RPE cultures. Together, the drusen model(s) of MDs described here provide fundamental insights into the unique biology of maculopathies affecting the RPE-ECM interface.

摘要

年龄相关性黄斑变性(AMD)和相关的黄斑营养不良(MD)是导致视力丧失的主要原因。然而,其进展的机制仍不明确。这部分是由于缺乏能重现人类病理学的疾病模型。此外,体内研究对于特定细胞类型在眼睛中的作用以及系统影响(例如血清)对疾病病理学的影响的理解有限。在这里,我们使用来自三种显性 MD(Sorsby 眼底营养不良(SFD)、Doyne 蜂窝状视网膜营养不良/ Leventinese 病(DHRD)和常染色体显性辐射状 drusen(ADRD)的患者诱导多能干细胞-视网膜色素上皮(hiPSC-RPE),证明 RPE 细胞的功能障碍足以引发这些疾病中 RPE 下脂蛋白沉积(drusen)的形成和细胞外基质(ECM)的改变。与临床研究一致,在对照(未受影响)和患者 hiPSC-RPE 细胞下均存在 RPE 下基底沉积。重要的是,患者 hiPSC-RPE 培养物中的基底沉积更为丰富,并且显示出富含脂质和蛋白质的“drusen 样”组成。此外,在 ECM 中观察到 COL4 的积累在对照与患者 hiPSC-RPE 培养物之间增加。有趣的是,在所有三种 MD(SFD、DHRD 和 ADRD)的患者 hiPSC-RPE 培养物中,还观察到 RPE 特异性补体基因表达的上调。最后,尽管血清暴露对于 drusen 的形成、COL4 在 ECM 中的积累和补体途径基因的改变不是必需的,但它影响了患者 hiPSC-RPE 培养物中 drusen 样沉积物的组成。总之,所描述的 MD 的 drusen 模型为影响 RPE-ECM 界面的 maculopathies 的独特生物学提供了基本的见解。