72 Publications (Page 1 of 3)
2020
Differential susceptibility of retinal ganglion cell subtypes in acute and chronic models of injury and disease.
Scientific reports. | Journal Article
Differentiation of retinal organoids from human pluripotent stem cells.
Methods in cell biology. | Journal Article
Energy Metabolism and Mitochondrial Superoxide Anion Production in Pre-symptomatic Striatal Neurons Derived from Human-Induced Pluripotent Stem Cells Expressing Mutant HuntingtinHamilton, James⋅Hamilton, James⋅Brustovetsky, Tatiana⋅Brustovetsky, Tatiana⋅Sridhar, Akshayalakshmi⋅Sridhar, Akshayalakshmi⋅Pan, Yanling⋅Pan, Yanling⋅Cummins, Theodore R⋅Cummins, Theodore R⋅Meyer, Jason S⋅Meyer, Jason S⋅Brustovetsky, Nickolay and Brustovetsky, NickolayMolecular neurobiology, vol. 57, (no. 2), pp. 684, 2020-Feb.
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Glaucoma as a Neurodegenerative Disease Caused by Intrinsic Vulnerability Factors.
Progress in neurobiology. | Journal Article
Retinal Ganglion Cells With a Glaucoma OPTN(E50K) Mutation Exhibit Neurodegenerative Phenotypes when Derived from Three-Dimensional Retinal Organoids.VanderWall, Kirstin B⋅Huang, Kang-Chieh⋅Pan, Yanling⋅Lavekar, Sailee S⋅Fligor, Clarisse M⋅Allsop, Anna R⋅Lentsch, Kelly A⋅Dang, Pengtao⋅Zhang, Chi⋅Tseng, Henry C⋅Cummins, Theodore R and Meyer, Jason SStem cell reports.
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2019
Advances in the Differentiation of Retinal Ganglion Cells from Human Pluripotent Stem CellsOhlemacher, Sarah K⋅Langer, Kirstin B⋅Fligor, Clarisse M⋅Feder, Elyse M⋅Edler, Michael C and Meyer, Jason SAdvances in experimental medicine and biology, vol. 1186, pp. 140, 2019-00-00.
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Astrocytes Regulate the Development and Maturation of Retinal Ganglion Cells Derived from Human Pluripotent Stem CellsVanderWall, Kirstin B⋅VanderWall, Kirstin B⋅VanderWall, Kirstin B⋅Vij, Ridhima⋅Vij, Ridhima⋅Vij, Ridhima⋅Ohlemacher, Sarah K⋅Ohlemacher, Sarah K⋅Ohlemacher, Sarah K⋅Sridhar, Akshayalakshmi⋅Sridhar, Akshayalakshmi⋅Sridhar, Akshayalakshmi⋅Fligor, Clarisse M⋅Fligor, Clarisse M⋅Fligor, Clarisse M⋅Feder, Elyse M⋅Feder, Elyse M⋅Feder, Elyse M⋅Edler, Michael C⋅Edler, Michael C⋅Edler, Michael C⋅Baucum, Anthony J⋅Baucum, Anthony J⋅Baucum, Anthony J⋅Cummins, Theodore R⋅Cummins, Theodore R⋅Cummins, Theodore R⋅Meyer, Jason S⋅Meyer, Jason S and Meyer, Jason SStem Cell Reports, vol. 12, (no. 2), pp. 212, 2019-02-12.
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2018
Retinal Ganglion Cell Diversity and Subtype Specification from Human Pluripotent Stem CellsLanger, Kirstin B⋅Ohlemacher, Sarah K⋅Phillips, M Joseph⋅Fligor, Clarisse M⋅Jiang, Peng⋅Gamm, David M and Meyer, Jason SStem cell reports, vol. 10, pp. 1282–1293.
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Retinal Ganglion Cell Diversity and Subtype Specification from Human Pluripotent Stem CellsLanger, Kirstin B⋅Ohlemacher, Sarah K⋅Phillips, M Joseph⋅Fligor, Clarisse M⋅Jiang, Peng⋅Gamm, David M and Meyer, Jason S(pp. 1282–1293). Cell Press
Three-Dimensional Retinal Organoids Facilitate the Investigation of Retinal Ganglion Cell Development, Organization and Neurite Outgrowth from Human Pluripotent Stem CellsFligor, Clarisse M⋅Fligor, Clarisse M⋅Fligor, Clarisse M⋅Fligor, Clarisse M⋅Langer, Kirstin B⋅Langer, Kirstin B⋅Langer, Kirstin B⋅Langer, Kirstin B⋅Sridhar, Akshayalakshmi⋅Sridhar, Akshayalakshmi⋅Ren, Yuan⋅Ren, Yuan⋅Ren, Yuan⋅Ren, Yuan⋅Shields, Priya K⋅Shields, Priya K⋅Shields, Priya K⋅Shields, Priya K⋅Edler, Michael C⋅Edler, Michael C⋅Edler, Michael C⋅Edler, Michael C⋅Ohlemacher, Sarah K⋅Ohlemacher, Sarah K⋅Ohlemacher, Sarah K⋅Ohlemacher, Sarah K⋅Sluch, Valentin M⋅Sluch, Valentin M⋅Sluch, Valentin M⋅Sluch, Valentin M⋅Zack, Donald J⋅Zack, Donald J⋅Zack, Donald J⋅Zack, Donald J⋅Zhang, Chi⋅Zhang, Chi⋅Zhang, Chi⋅Zhang, Chi⋅others⋅Suter, Daniel M⋅Suter, Daniel M⋅Suter, Daniel M⋅Meyer, Jason S⋅Meyer, Jason S and Meyer, Jason SScientific reports, vol. 8, pp. 14520.
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Three-Dimensional Retinal Organoids Facilitate the Investigation of Retinal Ganglion Cell Development, Organization and Neurite Outgrowth from Human Pluripotent Stem CellsFligor, Clarisse M⋅Langer, Kirstin B⋅Sridhar, Akshayalakshmi⋅Ren, Yuan⋅Shields, Priya K⋅Edler, Michael C⋅Ohlemacher, Sarah K⋅Sluch, Valentin M⋅Zack, Donald J⋅Zhang, Chi and others(pp. 14520). Nature Publishing Group
ReplyZavodni, Zachary⋅Meyer, Jay and Kim, TerryAmerican Journal of Ophthalmology, vol. 165, pp. 203, May 2016.
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Robust Differentiation of mRNA-Reprogrammed Human Induced Pluripotent Stem Cells Toward a Retinal LineageSridhar, Akshayalakshmi⋅Ohlemacher, Sarah K⋅Langer, Kirstin B and Meyer, Jason S(pp. 417–426). AlphaMed Press
Robust Differentiation of mRNA-Reprogrammed Human Induced Pluripotent Stem Cells Toward a Retinal Lineage.Sridhar, Akshayalakshmi⋅Ohlemacher, Sarah K⋅Langer, Kirstin B and Meyer, Jason SStem cells translational medicine, vol. 5, (no. 4), pp. 417-426, April 2016.
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Stepwise differentiation of retinal ganglion cells from human pluripotent stem cells enables analysis of glaucomatous neurodegenerationOhlemacher, Sarah K⋅Sridhar, Akshayalakshmi⋅Xiao, Yucheng⋅Hochstetler, Alexandra E⋅Sarfarazi, Mansoor⋅Cummins, Theodore R and Meyer, Jason S(pp. 1553–1562). Wiley-Blackwell
Stepwise differentiation of retinal ganglion cells from human pluripotent stem cells enables analysis of glaucomatous neurodegenerationOhlemacher, Sarah K⋅Sridhar, Akshayalakshmi⋅Xiao, Yucheng⋅Hochstetler, Alexandra E⋅Sarfarazi, Mansoor⋅Cummins, Theodore R and Meyer, Jason SStem cells, vol. 34, pp. 1553–1562.
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2015
Generation of highly enriched populations of optic vesicle- like retinal cells from human pluripotent stem cellsOhlemacher, Sarah K⋅Iglesias, Clara L⋅Sridhar, Akshayalakshmi⋅Gamm, David M and Meyer, Jason S(pp. 1H–8)
Generation of highly enriched populations of optic vesicle-like retinal cells from human pluripotent stem cells.Ohlemacher, Sarah K⋅Iglesias, Clara L⋅Sridhar, Akshayalakshmi⋅Gamm, David M and Meyer, Jason SCurrent protocols in stem cell biology, vol. 32, pp. 1H.8.1-20, 2015.
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Human pluripotent stem cell-derived retinal ganglion cells: applications for the study and treatment of optic neuropathiesCooke, Jessica A and Meyer, Jason S(pp. 200–206). Springer US
Human Pluripotent Stem Cell-Derived Retinal Ganglion Cells: Applications for the Study and Treatment of Optic Neuropathies.Cooke, Jessica A and Meyer, Jason SCurrent ophthalmology reports, vol. 3, (no. 3), pp. 200-206, September 2015.
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Regulations in the United States for cell transplantation clinical trials in neurological diseasesZhu, He⋅Tan, Yuanqing⋅Gu, Qi⋅Han, Weifang⋅Li, Zhongwen⋅Meyer, Jason S and Hu, Baoyang(pp. 114–124). SAGE Publications Sage UK: London, England
Regulations in the United States for cell transplantation clinical trials in neurological diseasesZhu, He⋅Tan, Yuanqing⋅Gu, Qi⋅Han, Weifang⋅Li, Zhongwen⋅Meyer, Jason S and Hu, BaoyangTranslational Neuroscience and Clinics, vol. 1, pp. 114–124.
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2014
Generation of three-dimensional retinal tissue with functional photoreceptors from human iPSCsZhong, Xiufeng⋅Gutierrez, Christian⋅Xue, Tian⋅Hampton, Christopher⋅Vergara, M Natalia⋅Cao, Li-Hui⋅Peters, Ann⋅Park, Tea Soon⋅Zambidis, Elias T⋅Meyer, Jason S and others(pp. 4047). Nature Publishing Group
Generation of three-dimensional retinal tissue with functional photoreceptors from human iPSCs.Zhong, Xiufeng⋅Zhong, Xiufeng⋅Gutierrez, Christian⋅Gutierrez, Christian⋅Xue, Tian⋅Xue, Tian⋅Hampton, Christopher⋅Hampton, Christopher⋅Vergara, M N⋅Vergara, M Natalia⋅Cao, Li-Hui⋅Cao, Li-hui⋅Peters, Ann⋅Peters, Ann⋅Park, Tea S⋅Park, Tea Soon⋅Zambidis, Elias T⋅Zambidis, Elias T⋅Meyer, Jason S⋅Meyer, Jason S⋅Gamm, David M⋅Gamm, David M⋅Yau, King-Wai⋅Yau, King-wai⋅Canto-Soler, M Valeria and Canto-soler, M VNature communications, vol. 5, pp. 4047, June 10, 2014.
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