articleTop 10% cited
Pluripotent Stem Cells Engrafted into the Normal or Lesioned Adult Rat Spinal Cord Are Restricted to a Glial Lineage
Experimental Neurology · 2001 · Vol. 167(1) · pp. 48–58
Qilin Cao✉(Neurological Surgery)Y. Ping Zhang(University of Louisville)Russell M. Howard(Neurological Surgery)Winston Walters(Neurological Surgery)Pantelis Tsoulfas(Neurological Surgery)Scott R. Whittemore(Neurological Surgery)
Neurogenesis and neuroplasticity mechanismsMesenchymal stem cell researchNerve injury and regenerationNestinBiologyNeural stem cellSubventricular zoneStem cellNeuNSpinal cordOLIG2OligodendrocyteTransplantation
MeSH terms
AnimalsAntigens, DifferentiationBromodeoxyuridineCell DifferentiationCells, CulturedCerebral CortexFemaleGlial Fibrillary Acidic ProteinGraft SurvivalIntermediate Filament ProteinsNerve Tissue ProteinsNeurogliaPhenotypeRats, Inbred F344Spinal Cord
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487
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70
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Cited by
Transplantation of human neural stem cells for spinal cord injury in primates
Journal of Neuroscience Research · 2005 · 385 citations
Neural stem cells constitutively secrete neurotrophic factors and promote extensive host axonal growth after spinal cord injury
Experimental Neurology · 2003 · 863 citations
References
Multipotent Stem/Progenitor Cells with Similar Properties Arise from Two Neurogenic Regions of Adult Human Brain
Experimental Neurology · 1999 · 522 citations
Isolation and Cloning of Multipotential Stem Cells from the Embryonic Human CNS and Establishment of Transplantable Human Neural Stem Cell Lines by Epigenetic Stimulation
Experimental Neurology · 1999 · 560 citations
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