Adult human spinal cord harbors neural precursor cells that generate neurons and glial cells in vitro

Archive ouverte

Dromard, Cécile | Guillon, Hélène | Rigau, Valérie | Ripoll, Chantal | Sabourin, Jean Charles | Perrin, Florence, E. | Scamps, Frédérique | Bozza, Silvia | Sabatier, Philippe | Lonjon, Nicolas | Duffau, Hugues | Vachiery-Lahaye, Florence | Prieto, Monica | Tran van Ba, Christophe | Deleyrolle, Loïc | Boularan, A. | Langley, Keith | Gaviria, Manuel | Privat, Alain | Hugnot, Jean-Philippe | Bauchet, Luc

Edité par CCSD ; Wiley -

International audience. Adult human and rodent brains contain neural stem and progenitor cells, and the presence of neural stem cells in the adult rodent spinal cord has also been described. Here, using electron microscopy, expression of neural precursor cell markers, and cell culture, we investigated whether neural precursor cells are also present in adult human spinal cord. In well-preserved nonpathological post-mortem human adult spinal cord, nestin, Sox2, GFAP, CD15, Nkx6.1, and PSA-NCAM were found to be expressed heterogeneously by cells located around the central canal. Ultrastructural analysis revealed the existence of immature cells close to the ependymal cells, which display characteristics of type B and C cells found in the adult rodent brain subventricular region, which are considered to be stem and progenitor cells, respectively. Completely dissociated spinal cord cells reproducibly formed Sox2(+) nestin(+) neurospheres containing proliferative precursor cells. On differentiation, these generate glial cells and gamma-aminobutyric acid (GABA)-ergic neurons. These results provide the first evidence for the existence in the adult human spinal cord of neural precursors with the potential to differentiate into neurons and glia. They represent a major interest for endogenous regeneration of spinal cord after trauma and in degenerative diseases.

Consulter en ligne

Suggestions

Du même auteur

Isolation of mineralizing Nestin+ Nkx6.1+ vascular muscular cells from the adult human spinal cord

Archive ouverte | Mamaeva, Daria | CCSD

International audience. BACKGROUND: The adult central nervous system (CNS) contains different populations of immature cells that could possibly be used to repair brain and spinal cord lesions. The diversity and the ...

NG2 and Olig2 Expression Provides Evidence for Phenotypic Deregulation of Cultured Central Nervous System and Peripheral Nervous System Neural Precursor Cells

Archive ouverte | Dromard, Cécile | CCSD

International audience. Neural stem cells cultured with fibroblast growth factor 2 (FGF2)/epidermal growth factor (EGF) generate clonal expansions called neurospheres (NS), which are widely used for therapy in anima...

Minimum information about animal experiments: supplier is also important

Archive ouverte | Lonjon, Nicolas | CCSD

International audience

Chargement des enrichissements...