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Establishment and characterization of multipotent neural cell lines using retrovirus vector-mediated oncogene transfer
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Ryder E.F., Snyder E.Y., Cepko C.L. Establishment and characterization of multipotent neural cell lines using retrovirus vector-mediated oncogene transfer. J. Neurobiol. 21:1990;356-375.
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43
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Embryonic stem cell
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Sato M., Nakano T. Embryonic stem cell. Intern. Med. 40:2001;195-200.
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Strain-dependent epithelial defects in mice lacking the EGF receptor
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Sibilia M., Wagner E.F. Strain-dependent epithelial defects in mice lacking the EGF receptor. Science. 269:1995;234-238.
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Multipotent neural cell lines can engraft and participate in development of mouse cerebellum
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Snyder E., Deitcher D., Walsh C., Arnold-Aldea S., Hartwieg E., Cepko C.L. Multipotent neural cell lines can engraft and participate in development of mouse cerebellum. Cell. 68:1992;33-51.
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Cell
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46
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0026578260
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Neural transplantation: An approach to cellular plasticity in the developing central nervous system
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Snyder E.Y. Neural transplantation an approach to cellular plasticity in the developing central nervous system . Semin. Perinatol. 16:1992;106-121.
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Multipotent neural progenitor or stem-like cells may be uniquely suited for therapy for some neurodegenerative conditions
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Snyder E.Y., Macklis J.D. Multipotent neural progenitor or stem-like cells may be uniquely suited for therapy for some neurodegenerative conditions. Clin. Neurosci. 3:1995;310-316.
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Clin. Neurosci.
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48
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Potential of neural "stem-like" cells for gene therapy and repair of the degenerating central nervous system
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Snyder E.Y., Park K.I., Flax J.D., Liu S., Rosario C.M., Yandava B.D., Aurora S. Potential of neural "stem-like" cells for gene therapy and repair of the degenerating central nervous system. Adv. Neurol. 72:1997;121-132.
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Aurora, S.7
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49
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0028951119
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Neural progenitor cell engraftment corrects lysosomal storage throughout the MPS VII mouse brain
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Snyder E.Y., Taylor R.M., Wolfe J.H. Neural progenitor cell engraftment corrects lysosomal storage throughout the MPS VII mouse brain. Nature. 374:1995;367-370.
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Nature
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Snyder, E.Y.1
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50
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0029885565
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Central nervous system cell transplantation: A novel therapy for storage diseases?
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Snyder E.Y., Wolfe J.H. Central nervous system cell transplantation a novel therapy for storage diseases? Curr. Opin. Neurol. 9:1996;126-136.
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Curr. Opin. Neurol.
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Snyder, E.Y.1
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51
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0030881885
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Multipotent neural precursors can differentiate toward replacement of neurons undergoing targeted apoptotic degeneration in adult mouse neocortex
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Snyder E.Y., Yoon C., Flax J.D., Macklis J.D. Multipotent neural precursors can differentiate toward replacement of neurons undergoing targeted apoptotic degeneration in adult mouse neocortex. Proc. Natl. Acad. Sci. USA. 94:1997;11663-11668.
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52
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0036189194
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Neural progenitor cells of the neonatal rat anterior subventricular zone express functional GABA(A) receptors
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Stewart R.R., Hoge G.J., Zigova T., Luskin M.B. Neural progenitor cells of the neonatal rat anterior subventricular zone express functional GABA(A) receptors. J. Neurobiol. 50:2002;305-322.
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INTR-8 Platform Session Abstracts
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Tate, M.C., Shear, D.G., Stein, D.G., Archer, D.R., LaPlaca, M.C., 2002. Migration of neural stem cells is enhanced on laminin and fibronectin. INTR-8 Platform Session Abstracts, 421.
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54
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0037022618
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Functional recovery following traumatic spinal cord injury mediated by a unique polymer scaffold seeded with neural stem cells
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Teng Y.D., Lavik E.B., Qu X., Park K.I., Ourednik J., Zurakowski D., Langer R., Snyder E.Y. Functional recovery following traumatic spinal cord injury mediated by a unique polymer scaffold seeded with neural stem cells. Proc. Natl. Acad. Sci. USA. 99:2002;3024-3029.
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55
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0033044937
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Establishment and properties of neural stem cell clones: Plasticity in vitro and in vivo
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Vescovi A.L., Snyder E.Y. Establishment and properties of neural stem cell clones plasticity in vitro and in vivo . Brain Pathol. 9:1999;569-598.
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Brain Pathol.
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Vescovi, A.L.1
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56
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0034008662
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Establishment and properties of a growth factor-dependent, perpetual neural stem cell line from the human CNS
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Villa A., Snyder E.Y., Vescovi A., Martinez-Serrano A. Establishment and properties of a growth factor-dependent, perpetual neural stem cell line from the human CNS. Exp. Neurol. 161:2000;67-84.
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Exp. Neurol.
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Villa, A.1
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57
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0032980340
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Induction of a midbrain dopaminergic phenotype in Nurr1-overexpressing neural stem cells by type 1 astrocytes
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Wagner J., Akerud P., Castro D.S., Holm P.C., Canals J.M., Snyder E.Y., Perlmann T., Arenas E. Induction of a midbrain dopaminergic phenotype in Nurr1-overexpressing neural stem cells by type 1 astrocytes. Nat. Biotechnol. 17:1999;653-659.
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Wagner, J.1
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Perlmann, T.7
Arenas, E.8
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58
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0032387678
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Epidermal growth factor receptor-mediated motility in fibroblasts
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Wells A., Gupta K., Chang P., Swindle S., Glading A., Shiraha J. Epidermal growth factor receptor-mediated motility in fibroblasts. Microsc. Res. Technique. 43:1998;395-411.
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Shaping up for shipping out: PLCgamma signaling of morphology changes in EGF-stimulated fibroblast migration
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Wells A., Ware M., Allen F., Lauffenburger D. Shaping up for shipping out PLCgamma signaling of morphology changes in EGF-stimulated fibroblast migration . Cell Motil. Cytoskel. 44:1999;227-233.
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Structural alterations of the epidermal growth factor receptor gene in human gliomas
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61
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0033536064
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"global" cell replacement is feasible via neural stem cell transplantation: Evidence from the dysmyelinated shiverer mouse brain
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Yandava B.D., Billinghurst L.L., Snyder E.Y. "Global" cell replacement is feasible via neural stem cell transplantation evidence from the dysmyelinated shiverer mouse brain . Proc. Natl. Acad. Sci. USA. 96:1999;7029-7034.
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Proc. Natl. Acad. Sci. USA
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Yandava, B.D.1
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62
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0036212865
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Transplanted clonal neural stem-like cells respond to remote photic stimulation following incorporation within the suprachiasmatic nucleus
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Zlomanczuk P., Mrugala M., de la Iglesia H.O., Ourednik V., Quesenberry P.J., Snyder E.Y., Schwartz W.J. Transplanted clonal neural stem-like cells respond to remote photic stimulation following incorporation within the suprachiasmatic nucleus. Exp. Neurol. 174:2002;162-168.
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Zlomanczuk, P.1
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Snyder, E.Y.6
Schwartz, W.J.7
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