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- W2916392610 abstract "Human pluripotent stem cells (hPSCs) provide unprecedented access to the earliest stages of retinogenesis that remain inaccessible to investigation, thereby serving as powerful tools for studies of retinal development. Additionally, the ability to derive hPSCs from patient sources allows for the modeling of retinal degenerative diseases in vitro, with the potential to facilitate cell replacement strategies in advanced stages of disease. For these purposes, many studies over the past several years have directed the differentiation of hPSCs to generate retinal cells using stochastic methods of differentiation, yielding all major cell types of the retina. In particular, these studies have favored the derivation of RPE, photoreceptors, and more recently retinal ganglion cells for disease modeling, drug screening as well as cell replacement purposes. More recently, advances in retinal differentiation methods have led to the generation of three-dimensional retinal organoids that recapitulate key developmental and morphological features of the retina, including the stratified organization of retinal cells into a tissue-like structure. This review provides an overview of retinal differentiation from hPSCs and their potential use for studies of retinogenesis as well as diseases that affect the retina." @default.
- W2916392610 created "2019-03-02" @default.
- W2916392610 creator A5017293822 @default.
- W2916392610 creator A5023824785 @default.
- W2916392610 creator A5044333096 @default.
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- W2916392610 creator A5069325291 @default.
- W2916392610 creator A5074280525 @default.
- W2916392610 creator A5075127971 @default.
- W2916392610 creator A5076947576 @default.
- W2916392610 date "2018-01-01" @default.
- W2916392610 modified "2023-09-26" @default.
- W2916392610 title "Human Pluripotent Stem Cells as In Vitro Models for Retinal Development and Disease" @default.
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