Publications
Found 42 results
Author Title Type [ Year
Filters: First Letter Of Last Name is B [Clear All Filters]
Nerve growth factor gene expression in the developing rat brain. Science. 234(4774):352-5.
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1986. Regulation of nerve growth factor mRNA levels in developing rat heart ventricle is not altered by sympathectomy. Developmental Biology. 134(1):30-7.
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1989. Expression of the calsequestrin gene in chicken cerebellum Purkinje neurons. Biochemical Journal. 294 ( Pt 2):487-90.
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1993. Integrin receptor expression and function in the developing retina. Investigative Ophthalmology & Visual Science. 35:1511–1511.
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1994. Integrin alpha 2 beta 1 mediates interactions between developing embryonic retinal cells and collagen. Development. 121(11):3593-602.
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1995. Human SY5Y neuroblastoma cell interactions with laminin isoforms: neurite outgrowth on laminin-5 is mediated by integrin alpha 3 beta 1. Cell Communication and Adhesion. 3(6):451-62.
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1996. Neuronal interactions with laminin isoforms: Neurite outgrowth on laminin-5 is mediated by integrin alpha3 beta1. Molecular Biology of the Cell. 7:382–382.
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1996. Role of beta1 integrins in retinal development. Investigative Ophthalmology & Visual Science. 37:3168–3168.
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1996. Widespread expression of beta1 integrins in the developing chick retina: evidence for a role in migration of retinal ganglion cells. Developmental Biology. 180(1):82-96.
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1996. The alpha4 subunit of integrin is important for neural crest cell migration. Developmental Biology. 202(1):29-42.
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1998. Adhesive events in retinal development and function: the role of integrin receptors. Vertebrate Eye Development. :141–156.
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2000. Laminin-5 promotes neurite outgrowth from central and peripheral chick embryonic neurons. Neuroscience Letters. 301(2):83-6.
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2001. Drusen are Cold Spots for Proteolysis: Expression of Matrix Metalloproteinases and Their Tissue Inhibitor Proteins in Age-related Macular Degeneration. Investigative Ophtalmology & Visual Science. 43:697.
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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. 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. 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. Derivation of functional retinal pigmented epithelium from induced pluripotent stem cells. Stem Cells. 27(10):2427-34.
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2009. .
2009. 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. 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. Pluripotent human stem cells for the treatment of retinal disease. Journal of Cellular Physiology. 227(2):457-66.
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2012. Derivation of retinal pigmented epithelial cells from pluripotent stem cells. The Stem Cell Handbook.
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2013.