Publications
Adhesive events in retinal development and function: the role of integrin receptors. Vertebrate Eye Development. :141–156.
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2000. Novel roles for integrins in the nervous system. Molecular Cell Biology Research Communications. 3:1–7.
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2000. Alpha4 integrins and vascular cell adhesion molecule-1 play a role in sympathetic innervation of the heart. The Journal of Neuroscience. 22(24):10772-80.
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2002. Analysis of matrix dynamics by atomic force microscopy. Methods in Cell Biology. 69:163–193.
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2002. Drusen are Cold Spots for Proteolysis: Expression of Matrix Metalloproteinases and Their Tissue Inhibitor Proteins in Age-related Macular Degeneration. Experimental Eye Research. 74(1):141-54.
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2002. Integrin alpha4beta1 (VLA-4) expression and activity in retinal and peripheral neurons. Molecular and Cellular Neuroscience. 23(3):427-39.
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2003. Integrins in the development, function and dysfunction of the nervous system. Frontiers in Bioscience: A Journal and Virtual Library. 8:d723-50.
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2003. Expression and function of integrin alpha4beta1 and vascular cell adhesion molecule-1 (VCAM-1) during sympathetic innervation of the heart. Developmental Dynamics. 231(2):359-69.
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2004. Integrin alpha4beta1 function is required for cell survival in developing retina. Developmental Biology. 276(2):416-30.
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2004. Essential kinase-independent role of a Fer-like non-receptor tyrosine kinase in Caenorhabditis elegans morphogenesis. Development. 132(14):3185-95.
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2005. Involvement of alpha4 integrins in maintenance of cardiac sympathetic axons. Autonomic Neuroscience. 122(1-2):58-68.
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2005. Osteopontin is proinflammatory in experimental autoimmune uveitis. Investigative Ophthalmology & Visual Science. 47(10):4435-43.
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2006. Thrombospondin-4 and matrix three-dimensionality in axon outgrowth and adhesion in the developing retina. Expierimental Eye Research. 84(4):707-17.
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2007. MUC1* mediates the growth of human pluripotent stem cells. PLoS One. 3(10):e3312.
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2008. Retinal pigment epithelial cells: development in vivo and derivation from human embryonic stem cells in vitro for treatment of age-related macular degeneration. Stem Cell Research and Therapeutics. :1–24.
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2008. Stem cell derived retinal pigment Epithelium for the treatment of age-related Macular degeneration. Journal of Vision. 8:47–47.
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2008. Thiol-ene hydrogels for cell culture and stem cell differentiation. Abstracts of Papers of the American Chemical Society. 235
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2008. Derivation of functional retinal pigmented epithelium from induced pluripotent stem cells. Stem Cells. 27(10):2427-34.
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2009. .
2009. Daniel E. Koshland Jr.. Proceedings of the American Philosophical Society. 154:477.
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2010. Memory in induced pluripotent stem cells: reprogrammed human retinal-pigmented epithelial cells show tendency for spontaneous redifferentiation. Stem Cells. 28(11):1981-91.
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2010. MicroRNA profiling reveals two distinct p53-related human pluripotent stem cell states. Cell Stem Cell. 7(6):671-81.
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2010. Roles of integrins in human induced pluripotent stem cell growth on Matrigel and vitronectin. Stem Cells & Development. 19(8):1231-40.
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2010. Synthetic surfaces for human embryonic stem cell culture. Journal of Biotechnology. 146(3):143-6.
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2010.