Towards stem cell-based neuronal regeneration for glaucoma.
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[1] X. Tie,et al. Directed robust generation of functional retinal ganglion cells from Müller glia , 2019, bioRxiv.
[2] E. Badley,et al. Reduced social participation among seniors with self-reported visual impairment and glaucoma , 2019, PloS one.
[3] H. Tse,et al. Donation of mitochondria by iPSC-derived mesenchymal stem cells protects retinal ganglion cells against mitochondrial complex I defect-induced degeneration , 2019, Theranostics.
[4] M. Mandai,et al. Stemming retinal regeneration with pluripotent stem cells , 2019, Progress in Retinal and Eye Research.
[5] Lei Yang,et al. Cell sheet technology: a promising strategy in regenerative medicine. , 2019, Cytotherapy.
[6] Oscar Marín,et al. Development and Functional Diversification of Cortical Interneurons , 2018, Neuron.
[7] R. Aramant,et al. Sheets of human retinal progenitor transplants improve vision in rats with severe retinal degeneration , 2018, Experimental eye research.
[8] T. Ng,et al. Stem cell therapy for retinal ganglion cell degeneration , 2018, Neural Regeneration Research.
[9] Peng Jiang,et al. Retinal Ganglion Cell Diversity and Subtype Specification from Human Pluripotent Stem Cells , 2018, Stem cell reports.
[10] Lawrence J Rizzolo,et al. A biodegradable scaffold enhances differentiation of embryonic stem cells into a thick sheet of retinal cells. , 2018, Biomaterials.
[11] T. Nakazawa,et al. Culture Systems of Dissociated Mouse and Human Pluripotent Stem Cell-Derived Retinal Ganglion Cells Purified by Two-Step Immunopanning. , 2018, Investigative ophthalmology & visual science.
[12] Tom Pohida,et al. Accelerated and Improved Differentiation of Retinal Organoids from Pluripotent Stem Cells in Rotating-Wall Vessel Bioreactors , 2017, Stem cell reports.
[13] T. Yokoi,et al. Effects of neuroactive agents on axonal growth and pathfinding of retinal ganglion cells generated from human stem cells , 2017, Scientific Reports.
[14] R. Ritch,et al. Glaucoma , 2017, The Lancet.
[15] Meera T Saxena,et al. Three-dimensional automated reporter quantification (3D-ARQ) technology enables quantitative screening in retinal organoids , 2017, Development.
[16] D. Zack,et al. Enhanced Stem Cell Differentiation and Immunopurification of Genome Engineered Human Retinal Ganglion Cells , 2017, Stem cells translational medicine.
[17] Jafar S. Jabbari,et al. Single cell RNA sequencing of stem cell-derived retinal ganglion cells , 2018, Scientific Data.
[18] Takashi Daimon,et al. Autologous Induced Stem‐Cell–Derived Retinal Cells for Macular Degeneration: Brief Report , 2017, The New England journal of medicine.
[19] A. Rizzino,et al. Generation of Functional Human Retinal Ganglion Cells with Target Specificity from Pluripotent Stem Cells by Chemically Defined Recapitulation of Developmental Mechanism , 2017, Stem cells.
[20] L. Kitzes,et al. Vision Recovery and Connectivity by Fetal Retinal Sheet Transplantation in an Immunodeficient Retinal Degenerate Rat Model , 2017, Investigative ophthalmology & visual science.
[21] Ruikang K. Wang,et al. Transplantation of Human Embryonic Stem Cell-Derived Retinal Cells into the Subretinal Space of a Non-Human Primate , 2012, Translational vision science & technology.
[22] J. G. Aparicio,et al. Temporal expression of CD184(CXCR4) and CD171(L1CAM) identifies distinct early developmental stages of human retinal ganglion cells in embryonic stem cell derived retina , 2017, Experimental eye research.
[23] D. Friedman,et al. Primary open-angle glaucoma , 2016, Nature Reviews Disease Primers.
[24] Grace E. Lidgerwood,et al. Enriched retinal ganglion cells derived from human embryonic stem cells , 2016, Scientific Reports.
[25] M. Sarfarazi,et al. Stepwise Differentiation of Retinal Ganglion Cells from Human Pluripotent Stem Cells Enables Analysis of Glaucomatous Neurodegeneration , 2016, Stem cells.
[26] Volker Busskamp,et al. Retinal Organoids from Pluripotent Stem Cells Efficiently Recapitulate Retinogenesis , 2016, Stem cell reports.
[27] K. J. Muller,et al. Transplanted neurons integrate into adult retinas and respond to light , 2016, Nature Communications.
[28] G. A. Limb,et al. Allogeneic Transplantation of Müller-Derived Retinal Ganglion Cells Improves Retinal Function in a Feline Model of Ganglion Cell Depletion , 2015, Stem cells translational medicine.
[29] D. Zack,et al. Differentiation of human ESCs to retinal ganglion cells using a CRISPR engineered reporter cell line , 2015, Scientific Reports.
[30] C. Ware,et al. The GIPC1‐Akt1 Pathway Is Required for the Specification of the Eye Field in Mouse Embryonic Stem Cells , 2015, Stem cells.
[31] Jason S. Meyer,et al. Human Pluripotent Stem Cell-Derived Retinal Ganglion Cells: Applications for the Study and Treatment of Optic Neuropathies , 2015, Current Ophthalmology Reports.
[32] Alex Gutteridge,et al. Molecular Mechanisms Mediating Retinal Reactive Gliosis Following Bone Marrow Mesenchymal Stem Cell Transplantation , 2015, Stem cells.
[33] G. Duruksu,et al. Neuroprotective effects of intravitreally transplanted adipose tissue and bone marrow-derived mesenchymal stem cells in an experimental ocular hypertension model. , 2015, Cytotherapy.
[34] Xue-yong Zhang,et al. Atoh7 promotes the differentiation of Müller cells-derived retinal stem cells into retinal ganglion cells in a rat model of glaucoma , 2015, Experimental biology and medicine.
[35] Tadashi Yokoi,et al. Generation of retinal ganglion cells with functional axons from human induced pluripotent stem cells , 2015, Scientific Reports.
[36] T. Wong,et al. Global prevalence of glaucoma and projections of glaucoma burden through 2040: a systematic review and meta-analysis. , 2014, Ophthalmology.
[37] C. Cepko. Intrinsically different retinal progenitor cells produce specific types of progeny , 2014, Nature Reviews Neuroscience.
[38] Xiaodong Sun,et al. The role of induced pluripotent stem cell (IPs) in the transplantation of glaucoma. , 2014, Medicinski glasnik : official publication of the Medical Association of Zenica-Doboj Canton, Bosnia and Herzegovina.
[39] J. Goldberg,et al. Survival and Integration of Developing and Progenitor-Derived Retinal Ganglion Cells following Transplantation , 2014, Cell transplantation.
[40] A. Hewitt,et al. Methods of Retinal Ganglion Cell Differentiation From Pluripotent Stem Cells. , 2014, Translational vision science & technology.
[41] Elias T. Zambidis,et al. Generation of three dimensional retinal tissue with functional photoreceptors from human iPSCs , 2014, Nature Communications.
[42] Meiyan Wang,et al. Therapeutic Effect of Bone Marrow Mesenchymal Stem Cells on Laser-Induced Retinal Injury in Mice , 2014, International journal of molecular sciences.
[43] F. Medeiros,et al. The pathophysiology and treatment of glaucoma: a review. , 2014, JAMA.
[44] Y. Arsenijévic,et al. Derivation of Traceable and Transplantable Photoreceptors from Mouse Embryonic Stem Cells , 2014, Stem cell reports.
[45] G. Lynch,et al. Chemically Induced Specification of Retinal Ganglion Cells From Human Embryonic and Induced Pluripotent Stem Cells , 2013, Stem cells translational medicine.
[46] Gretchen A. Stevens,et al. Global prevalence of vision impairment and blindness: magnitude and temporal trends, 1990-2010. , 2013, Ophthalmology.
[47] S. V. Anisimov,et al. The secretome of mesenchymal stem cells: potential implications for neuroregeneration. , 2013, Biochimie.
[48] C. Doe,et al. Temporal fate specification and neural progenitor competence during development , 2013, Nature Reviews Neuroscience.
[49] Gretchen A. Stevens,et al. Causes of vision loss worldwide, 1990-2010: a systematic analysis. , 2013, The Lancet. Global health.
[50] H. Cui,et al. Bone marrow mesenchymal stem cells protect against retinal ganglion cell loss in aged rats with glaucoma , 2013, Clinical interventions in aging.
[51] Atoh7 promotes the differentiation of retinal stem cells derived from Müller cells into retinal ganglion cells by inhibiting Notch signaling , 2013, Stem Cell Research & Therapy.
[52] T. Reh,et al. Conserved microRNA pathway regulates developmental timing of retinal neurogenesis , 2013, Proceedings of the National Academy of Sciences.
[53] F. Leblond,et al. Transplantation of Mesenchymal Stem Cells Promotes Tissue Regeneration in a Glaucoma Model Through Laser‐Induced Paracrine Factor Secretion and Progenitor Cell Recruitment , 2013, Stem cells.
[54] Jason S. Meyer,et al. Nonxenogeneic Growth and Retinal Differentiation of Human Induced Pluripotent Stem Cells , 2013, Stem cells translational medicine.
[55] Cheng He,et al. Olfactory ensheathing cells: The primary innate immunocytes in the olfactory pathway to engulf apoptotic olfactory nerve debris , 2013, Glia.
[56] K. Martin,et al. Cell transplantation approaches to retinal ganglion cell neuroprotection in glaucoma. , 2013, Current opinion in pharmacology.
[57] E. Stone,et al. Use of a Synthetic Xeno‐Free Culture Substrate for Induced Pluripotent Stem Cell Induction and Retinal Differentiation , 2013, Stem cells translational medicine.
[58] Donald L Budenz,et al. Prevalence of glaucoma in an urban West African population: the Tema Eye Survey. , 2011, JAMA ophthalmology.
[59] Zheng-bo Wang,et al. [Glaucoma model for stem cell transplantation research in New Zealand white rabbits]. , 2013, Dong wu xue yan jiu = Zoological research.
[60] Erin A. Bassett,et al. Cell fate determination in the vertebrate retina , 2012, Trends in Neurosciences.
[61] Yoshiki Sasai,et al. Self-formation of optic cups and storable stratified neural retina from human ESCs. , 2012, Cell stem cell.
[62] G. Raisman,et al. Olfactory Ensheathing Cells Rescue Optic Nerve Fibers in a Rat Glaucoma Model. , 2012, Translational vision science & technology.
[63] R. McKay,et al. Long-term survival and differentiation of retinal neurons derived from human embryonic stem cell lines in un-immunosuppressed mouse retina , 2012, Molecular vision.
[64] B. Morquette,et al. The molecular basis of retinal ganglion cell death in glaucoma , 2012, Progress in Retinal and Eye Research.
[65] G. A. Limb,et al. Human Müller Glia with Stem Cell Characteristics Differentiate into Retinal Ganglion Cell (rgc) Precursors in Vitro and Partially Restore Rgc Function in Vivo following Transplantation G. Astrid Limb a Key Words. Tissue-specific Stem Cells @bullet Differentiation @bullet Cell Transplantation @bullet , 2022 .
[66] J. Shimizu,et al. Establishment of retinal progenitor cell clones by transfection with Pax6 gene of mouse induced pluripotent stem (iPS) cells , 2012, Neuroscience Letters.
[67] T. Reh,et al. Production and transplantation of retinal cells from human and mouse embryonic stem cells. , 2012, Methods in molecular biology.
[68] M. Eiraku,et al. Mouse embryonic stem cell culture for generation of three-dimensional retinal and cortical tissues , 2011, Nature Protocols.
[69] M. Araúzo-Bravo,et al. FGF signalling inhibits neural induction in human embryonic stem cells , 2011, The EMBO journal.
[70] K. Martin,et al. Concise Review: Toward Stem Cell‐Based Therapies for Retinal Neurodegenerative Diseases , 2011, Stem cells.
[71] David M Gamm,et al. Optic Vesicle‐like Structures Derived from Human Pluripotent Stem Cells Facilitate a Customized Approach to Retinal Disease Treatment , 2011, Stem cells.
[72] R. Kardon,et al. Transplantation of BDNF-secreting mesenchymal stem cells provides neuroprotection in chronically hypertensive rat eyes. , 2011, Investigative ophthalmology & visual science.
[73] Thomas Vierbuchen,et al. Induction of human neuronal cells by defined transcription factors , 2011, Nature.
[74] T. Adachi,et al. Self-organizing optic-cup morphogenesis in three-dimensional culture , 2011, Nature.
[75] F. Medeiros,et al. Managing glaucoma in developing countries. , 2011, Arquivos brasileiros de oftalmologia.
[76] Shinn-Zong Lin,et al. Mesenchymal Stem Cells , 2011, Cell transplantation.
[77] X. Xia,et al. Retinal stem cells transplantation combined with copolymer-1 immunization reduces interferon-gamma levels in an experimental model of glaucoma. , 2011, International journal of ophthalmology.
[78] Yu Zhang,et al. Effects of bone marrow mesenchymal stem cell transplantation on light-damaged retina. , 2010, Investigative ophthalmology & visual science.
[79] W. Thoreson,et al. Induced Pluripotent Stem Cells Generate Both Retinal Ganglion Cells and Photoreceptors: Therapeutic Implications in Degenerative Changes in Glaucoma and Age‐Related Macular Degeneration , 2010, Stem cells.
[80] N. Marina,et al. Neuroprotective effects of intravitreal mesenchymal stem cell transplantation in experimental glaucoma. , 2010, Investigative ophthalmology & visual science.
[81] K. Martin,et al. Using stem cells to mend the retina in ocular disease. , 2009, Regenerative medicine.
[82] M. Kayama,et al. Transfection with pax6 Gene of Mouse Embryonic Stem Cells and Subsequent Cell Cloning Induced Retinal Neuron Progenitors, Including Retinal Ganglion Cell-Like Cells, in vitro , 2009, Ophthalmic Research.
[83] Y. Sasai,et al. In vitro differentiation of retinal cells from human pluripotent stem cells by small-molecule induction , 2009, Journal of Cell Science.
[84] Rajendran Sanalkumar,et al. In vitro differentiation of retinal ganglion-like cells from embryonic stem cell derived neural progenitors. , 2009, Biochemical and biophysical research communications.
[85] D. Blackburn,et al. Pax6 regulation of Math5 during mouse retinal neurogenesis , 2009, Genesis.
[86] T. Reh,et al. Stimulation of neural regeneration in the mouse retina , 2008, Proceedings of the National Academy of Sciences.
[87] K. Martin,et al. Development and characterization of an adult retinal explant organotypic tissue culture system as an in vitro intraocular stem cell transplantation model. , 2008, Investigative ophthalmology & visual science.
[88] G. A. Limb,et al. Human Müller stem cell (MIO-M1) transplantation in a rat model of glaucoma: survival, differentiation, and integration. , 2008, Investigative ophthalmology & visual science.
[89] G. A. Limb,et al. Chondroitin Sulfate Proteoglycans and Microglia Prevent Migration and Integration of Grafted Müller Stem Cells into Degenerating Retina , 2008, Stem cells.
[90] Nagahisa Yoshimura,et al. Toward the generation of rod and cone photoreceptors from mouse, monkey and human embryonic stem cells , 2008, Nature Biotechnology.
[91] K. Martin,et al. Stem cells for neuroprotection in glaucoma. , 2008, Progress in brain research.
[92] A. Hara,et al. Transplantation of cells from eye-like structures differentiated from embryonic stem cells in vitro and in vivo regeneration of retinal ganglion-like cells , 2008, Graefe's Archive for Clinical and Experimental Ophthalmology.
[93] T. Ichisaka,et al. Induction of Pluripotent Stem Cells from Adult Human Fibroblasts by Defined Factors , 2007, Cell.
[94] M. Araie,et al. Subretinal transplantation of bone marrow mesenchymal stem cells delays retinal degeneration in the RCS rat model of retinal degeneration. , 2007, Experimental eye research.
[95] G. A. Limb,et al. MIO‐M1 Cells and Similar Müller Glial Cell Lines Derived from Adult Human Retina Exhibit Neural Stem Cell Characteristics , 2007, Stem cells.
[96] Linda K. Barthel,et al. Late-Stage Neuronal Progenitors in the Retina Are Radial Müller Glia That Function as Retinal Stem Cells , 2007, The Journal of Neuroscience.
[97] N. Gupta,et al. Glaucoma as a neurodegenerative disease , 2007, Current opinion in ophthalmology.
[98] W. Thoreson,et al. Neural stem cell properties of Müller glia in the mammalian retina: regulation by Notch and Wnt signaling. , 2006, Developmental biology.
[99] R. Lund,et al. Human embryonic stem cell-derived cells rescue visual function in dystrophic RCS rats. , 2006, Cloning and stem cells.
[100] C. Ware,et al. Efficient generation of retinal progenitor cells from human embryonic stem cells , 2006, Proceedings of the National Academy of Sciences.
[101] Y. Kaneko,et al. Visual cycle protein RPE65 persists in new retinal cells during retinal regeneration of adult newt , 2006, The Journal of comparative neurology.
[102] H. Quigley,et al. The number of people with glaucoma worldwide in 2010 and 2020 , 2006, British Journal of Ophthalmology.
[103] M. Kirk,et al. Embryonic Stem Cell‐Derived Neural Progenitors Incorporate into Degenerating Retina and Enhance Survival of Host Photoreceptors , 2006, Stem cells.
[104] T. Reh,et al. Notch Activity Is Downregulated Just prior to Retinal Ganglion Cell Differentiation , 2006, Developmental Neuroscience.
[105] K. Mizuseki,et al. Generation of Rx+/Pax6+ neural retinal precursors from embryonic stem cells. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[106] S. Moody,et al. Step‐wise specification of retinal stem cells during normal embryogenesis , 2005, Biology of the cell.
[107] X. Mu,et al. A gene network downstream of transcription factor Math5 regulates retinal progenitor cell competence and ganglion cell fate. , 2005, Developmental biology.
[108] K. Mizuseki,et al. Directed differentiation of telencephalic precursors from embryonic stem cells , 2005, Nature Neuroscience.
[109] X. Mu,et al. A gene regulatory hierarchy for retinal ganglion cell specification and differentiation. , 2004, Seminars in cell & developmental biology.
[110] T. Reh,et al. Insulin and Fibroblast Growth Factor 2 Activate a Neurogenic Program in Müller Glia of the Chicken Retina , 2002, The Journal of Neuroscience.
[111] G. A. Limb,et al. In vitro characterization of a spontaneously immortalized human Müller cell line (MIO-M1). , 2002, Investigative ophthalmology & visual science.
[112] F. Guillemot,et al. Pax6 Is Required for the Multipotent State of Retinal Progenitor Cells , 2001, Cell.
[113] D. H. Rapaport,et al. Inductive competence, its significance in retinal cell fate determination and a role for Delta-Notch signaling. , 1998, Seminars in cell & developmental biology.
[114] R. Harland,et al. Neural induction by the secreted polypeptide noggin. , 1993, Science.
[115] David P. Corey,et al. Immunological, morphological, and electrophysiological variation among retinal ganglion cells purified by panning , 1988, Neuron.