Literature DB >> 17881192

Embryonic stem cells and retinal repair.

Anthony Vugler1, Jean Lawrence, James Walsh, Amanda Carr, Carlos Gias, Ma'ayan Semo, Ahmad Ahmado, Lyndon da Cruz, Peter Andrews, Peter Coffey.   

Abstract

In this review we examine the potential of embryonic stem cells (ESCs) for use in the treatment of retinal diseases involving photoreceptors and retinal pigment epithelium (RPE). We outline the ontogenesis of target retinal cell types (RPE, rods and cones) and discuss how an understanding of developmental processes can inform our manipulation of ESCs in vitro. Due to their potential for cellular therapy, special emphasis is placed upon the derivation and culture of human embryonic stem cells (HESCs) and their differentiation towards a retinal phenotype. In terms of achieving this goal, we suggest that much of the success to date reflects permissive in vitro environments provided by established protocols for HESC derivation, propagation and neural differentiation. In addition, we summarise key factors that may be important for enhancing efficiency of retinal cell-type derivation from HESCs. The retina is an amenable component of the central nervous system (CNS) and as such, diseases of this structure provide a realistic target for the application of HESC-derived cellular therapy to the CNS. In order to further this goal, the second component of our review focuses on the cellular and molecular cues within retinal environments that may influence the survival and behaviour of transplanted cells. Our analysis considers both the potential barriers to transplant integration in the retina itself together with the remodelling in host visual centres that is known to accompany retinal dystrophy.

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Mesh:

Year:  2007        PMID: 17881192     DOI: 10.1016/j.mod.2007.08.002

Source DB:  PubMed          Journal:  Mech Dev        ISSN: 0925-4773            Impact factor:   1.882


  26 in total

Review 1.  A tissue-engineered approach towards retinal repair: scaffolds for cell transplantation to the subretinal space.

Authors:  Sara Royce Hynes; Erin B Lavik
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2010-02-19       Impact factor: 3.117

2.  Generation of v2a interneurons from mouse embryonic stem cells.

Authors:  Chelsea R Brown; Jessica C Butts; Dylan A McCreedy; Shelly E Sakiyama-Elbert
Journal:  Stem Cells Dev       Date:  2014-04-25       Impact factor: 3.272

3.  Retinal remodeling in the Tg P347L rabbit, a large-eye model of retinal degeneration.

Authors:  B W Jones; M Kondo; H Terasaki; C B Watt; K Rapp; J Anderson; Y Lin; M V Shaw; J-H Yang; R E Marc
Journal:  J Comp Neurol       Date:  2011-10-01       Impact factor: 3.215

4.  Proliferation and pluripotency of human embryonic stem cells maintained on type I collagen.

Authors:  Meredith B Jones; Chia H Chu; James C Pendleton; Michael J Betenbaugh; Joseph Shiloach; Bolormaa Baljinnyam; Jeffrey S Rubin; Michael J Shamblott
Journal:  Stem Cells Dev       Date:  2010-10-12       Impact factor: 3.272

Review 5.  Stem cell therapy for retinal diseases: update.

Authors:  Rubens Camargo Siqueira
Journal:  Stem Cell Res Ther       Date:  2011-12-29       Impact factor: 6.832

6.  Development of a Refined Protocol for Trans-scleral Subretinal Transplantation of Human Retinal Pigment Epithelial Cells into Rat Eyes.

Authors:  Cuiping Zhao; Nathan C Boles; Justine D Miller; Suzanne Kawola; Sally Temple; Richard J Davis; Jeffrey H Stern
Journal:  J Vis Exp       Date:  2017-08-12       Impact factor: 1.355

Review 7.  Strategies for retinal cell generation from human pluripotent stem cells.

Authors:  Lindsey S Weed; Jason A Mills
Journal:  Stem Cell Investig       Date:  2017-07-25

8.  Molecular signature of primary retinal pigment epithelium and stem-cell-derived RPE cells.

Authors:  Jo-Ling Liao; Juehua Yu; Kevin Huang; Jane Hu; Tanja Diemer; Zhicheng Ma; Tamar Dvash; Xian-Jie Yang; Gabriel H Travis; David S Williams; Dean Bok; Guoping Fan
Journal:  Hum Mol Genet       Date:  2010-08-13       Impact factor: 6.150

9.  Engineering retinal progenitor cell and scrollable poly(glycerol-sebacate) composites for expansion and subretinal transplantation.

Authors:  Stephen Redenti; William L Neeley; Santiago Rompani; Sunita Saigal; Jing Yang; Henry Klassen; Robert Langer; Michael J Young
Journal:  Biomaterials       Date:  2009-04-09       Impact factor: 12.479

Review 10.  Looking into the future: Using induced pluripotent stem cells to build two and three dimensional ocular tissue for cell therapy and disease modeling.

Authors:  Min Jae Song; Kapil Bharti
Journal:  Brain Res       Date:  2015-12-17       Impact factor: 3.252

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