72 Publications (Page 2 of 3)
2014
Loss of MITF expression during human embryonic stem cell differentiation disrupts retinal pigment epithelium development and optic vesicle cell proliferationCapowski, Elizabeth E⋅Simonett, Joseph M⋅Clark, Eric M⋅Wright, Lynda S⋅Howden, Sara E⋅Wallace, Kyle A⋅Petelinsek, Anna M⋅Pinilla, Isabel⋅Phillips, M Joseph⋅Meyer, Jason S and others(pp. 6332–6344). Oxford University Press
Loss of MITF expression during human embryonic stem cell differentiation disrupts retinal pigment epithelium development and optic vesicle cell proliferation.Capowski, Elizabeth E⋅Simonett, Joseph M⋅Clark, Eric M⋅Wright, Lynda S⋅Howden, Sara E⋅Wallace, Kyle A⋅Petelinsek, Anna M⋅Pinilla, Isabel⋅Phillips, M Joseph⋅Meyer, Jason S⋅Schneider, Bernard L⋅Thomson, James A and Gamm, David MHuman molecular genetics, vol. 23, (no. 23), pp. 6332-6344, December 1, 2014.
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2013
Immunoreactivity of Pluripotent Markers SSEA-5 and L1CAM in Human Tumors, Teratomas, and Induced Pluripotent Stem CellsCassidy, Linda⋅Choi, Meerim⋅Meyer, Jason⋅Chang, Rui and Seigel, Gail MHindawi
Immunoreactivity of Pluripotent Markers SSEA-5 and L1CAM in Human Tumors, Teratomas, and Induced Pluripotent Stem Cells.Cassidy, Linda⋅Choi, Meerim⋅Meyer, Jason⋅Chang, Rui and Seigel, Gail MJournal of biomarkers, vol. 2013, pp. 960862, 2013.
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Neural regenerationSteward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SCurrent topics in microbiology and immunology, vol. 367, pp. 163, 2013-00-00.
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Neural regeneration.Steward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SCurrent topics in microbiology and immunology, vol. 367, pp. 163-191, 2013.
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Nonxenogeneic growth and retinal differentiation of human induced pluripotent stem cellsSridhar, Akshayalakshmi⋅Steward, Melissa M and Meyer, Jason SStem cells translational medicine, vol. 2, pp. 255–264.
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Nonxenogeneic growth and retinal differentiation of human induced pluripotent stem cellsSridhar, Akshayalakshmi⋅Steward, Melissa M and Meyer, Jason S(pp. 255–264). Wiley-Blackwell
2012
-Book chapter-Steward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SIn Neural regeneration. (pp. 163–191). Springer, Berlin, Heidelberg. 2012
-Book chapter-Steward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SIn Neural regeneration. (pp. 163–191). Springer, Berlin, Heidelberg. 2012
-Book chapter-Steward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SIn Neural regeneration. (pp. 163–191). Springer, Berlin, Heidelberg. 2012
-Book chapter-Steward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SIn Neural regeneration. (pp. 163–191). Springer, Berlin, Heidelberg. 2012
-Book chapter-Steward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SIn Neural regeneration. (pp. 163–191). Springer, Berlin, Heidelberg. 2012
-Book chapter-Steward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SIn Neural regeneration. (pp. 163–191). Springer, Berlin, Heidelberg. 2012
-Book chapter-Steward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SIn Neural regeneration. (pp. 163–191). Springer, Berlin, Heidelberg. 2012
Neural regenerationSteward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason S(pp. 163–191). Springer, Berlin, Heidelberg
-Book chapter-Steward, Melissa M⋅Sridhar, Akshayalakshmi and Meyer, Jason SIn Neural regeneration. (pp. 163–191). Springer, Berlin, Heidelberg. 2012
2011
Optic vesicle-like structures derived from human pluripotent stem cells facilitate a customized approach to retinal disease treatmentMeyer, Jason S⋅Howden, Sara E⋅Wallace, Kyle A⋅Verhoeven, Amelia D⋅Wright, Lynda S⋅Capowski, Elizabeth E⋅Pinilla, Isabel⋅Martin, Jessica M⋅Tian, Shulan⋅Stewart, Ron and others(pp. 1206–1218). Wiley Subscription Services, Inc., A Wiley Company Hoboken
Optic vesicle-like structures derived from human pluripotent stem cells facilitate a customized approach to retinal disease treatmentMeyer, Jason S⋅Howden, Sara E⋅Wallace, Kyle A⋅Verhoeven, Amelia D⋅Wright, Lynda S⋅Capowski, Elizabeth E⋅Pinilla, Isabel⋅Martin, Jessica M⋅Tian, Shulan⋅Stewart, Ron and othersStem cells, vol. 29, pp. 1206–1218.
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Optic vesicle-like structures derived from human pluripotent stem cells facilitate a customized approach to retinal disease treatment.Meyer, Jason⋅Howden, Sara E⋅Wallace, Kyle A⋅Verhoeven, Amelia D⋅Wright, Lynda S⋅Capowski, Elizabeth E⋅Pinilla, Isabel⋅Martin, Jessica M⋅Tian, Shulan⋅Stewart, Ron⋅Pattnaik, Bikash⋅Thomson, James A and Gamm, David MStem cells (Dayton, Ohio), vol. 29, (no. 8), pp. 1206-18, 2011/Aug.
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2010
Directed differentiation of human induced pluripotent stem cells: a retina perspectiveGamm, David M and Meyer, Jason S(pp. 315–317). Future Medicine Ltd London, UK
Directed differentiation of human induced pluripotent stem cells: a retina perspective.Gamm, David M and Meyer, JasonRegenerative medicine, vol. 5, (no. 3), pp. 315-7, 2010/May.
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2009
Detection of calcium transients in embryonic stem cells and their differentiated progenyMeyer, Jason S⋅Tullis, Gregory⋅Pierret, Christopher⋅Spears, Kathleen M⋅Morrison, Jason A and Kirk, Mark D(pp. 1191). Springer US
Detection of Calcium Transients in Embryonic Stem Cells and Their Differentiated ProgenyMeyer, Jason⋅Tullis, Gregory⋅Pierret, Christopher⋅Spears, Kathleen M⋅Morrison, Jason A and Kirk, Mark DCellular and Molecular Neurobiology, vol. 29, (no. 8), pp. 1191-1203, 2009.
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Modeling early retinal development with human embryonic and induced pluripotent stem cellsMeyer, Jason S⋅Shearer, Rebecca L⋅Capowski, Elizabeth E⋅Wright, Lynda S⋅Wallace, Kyle A⋅McMillan, Erin L⋅Zhang, Su-Chun and Gamm, David M(pp. 16698–16703). National Academy of Sciences