RRC ID 2819
Author Kulbatski I, Mothe AJ, Keating A, Hakamata Y, Kobayashi E, Tator CH.
Title Oligodendrocytes and radial glia derived from adult rat spinal cord progenitors: morphological and immunocytochemical characterization.
Journal J Histochem Cytochem
Abstract Self-renewing, multipotent neural progenitor cells (NPCs) reside in the adult mammalian spinal cord ependymal region. The current study characterized, in vitro, the native differentiation potential of spinal cord NPCs isolated from adult enhanced green fluorescence protein rats. Neurospheres were differentiated, immunocytochemistry (ICC) was performed, and the positive cells were counted as a percentage of Hoescht+ nuclei in 10 random fields. Oligodendrocytes constituted most of the NPC progeny (58.0% of differentiated cells; 23.4% in undifferentiated spheres). ICC and electron microscopy (EM) showed intense myelin production by neurospheres and progeny. The number of differentiated astrocytes was 18.0%, but only 2.8% in undifferentiated spheres. The number of differentiated neurons was 7.4%, but only 0.85% in undifferentiated spheres. The number of differentiated radial glia (RG) was 73.0% and in undifferentiated spheres 80.9%. EM showed an in vitro phagocytic capability of NPCs. The number of undifferentiated NPCs was 32.8% under differentiation conditions and 78.9% in undifferentiated spheres. Compared with ependymal region spheres, the spheres derived from the peripheral white matter of the spinal cord produced glial-restricted precursors. These findings indicate that adult rat spinal cord ependymal NPCs differentiate preferentially into oligodendrocytes and RG, which may support axonal regeneration in future trials of transplant therapy for spinal cord injury.
Volume 55(3)
Pages 209-22
Published 2007-3-1
DOI 10.1369/jhc.6A7020.2006
PII jhc.6A7020.2006
PMID 17101728
MeSH Animals Cell Differentiation Cells, Cultured Green Fluorescent Proteins / metabolism Immunohistochemistry Male Microscopy, Electron Multipotent Stem Cells / metabolism Multipotent Stem Cells / ultrastructure* Myelin Basic Protein / metabolism Myelin Sheath / metabolism Myelin Sheath / ultrastructure Neuroglia / metabolism Neuroglia / ultrastructure* Oligodendroglia / metabolism Oligodendroglia / ultrastructure* Rats Rats, Wistar Spinal Cord / cytology* Spinal Cord / metabolism
IF 2.187
Times Cited 55
WOS Category CELL BIOLOGY
Resource
Rats W-Tg(CAG-GFP)184Ys(strainID=525)