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Deciphering retinal diseases through the generation of three dimensional stem cell-derived organoids: Concise Review.

Abstract
Three-dimensional (3D) retinal organoids, in vitro tissue structures derived from self-organizing cultures of differentiating human embryonic stem cells or induced pluripotent stem cells, could recapitulate some aspects of the cytoarchitectural structure and function of the retina in vivo. 3D retinal organoids display huge potential for the investigation of the pathogenesis of monogenic hereditary eye diseases that are related to the malfunction or degeneration of photoreceptors or retinal ganglion cells by providing an effective in vitro tool with multiple applications. In combination with recent genome editing tools, 3D retinal organoids could also represent a reliable and renewable source of transplantable cells for personalized therapies. In this review, we describe the recent advances in human pluripotent stem cells-derived retinal organoids, determination of their histoarchitecture, complexity, and maturity. We also discuss their application as a means to decipher the pathogenesis of retinal diseases, as well as the main drawbacks and challenges. Stem Cells 2019;37:1496-1504.
AuthorsAna Artero Castro, Francisco Javier Rodríguez Jimenez, Pavla Jendelova, Slaven Erceg
JournalStem cells (Dayton, Ohio) (Stem Cells) Vol. 37 Issue 12 Pg. 1496-1504 (12 2019) ISSN: 1549-4918 [Electronic] England
PMID31617949 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't, Research Support, U.S. Gov't, Non-P.H.S., Review)
Copyright©2019 The Authors. Stem Cells published by Wiley Periodicals, Inc. on behalf of AlphaMed Press 2019.
Topics
  • Gene Editing (methods)
  • Induced Pluripotent Stem Cells (cytology, transplantation)
  • Organoids (cytology, ultrastructure)
  • Retina (pathology, ultrastructure)
  • Retinal Diseases (pathology)
  • Retinal Rod Photoreceptor Cells (cytology)

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