GFAP null astrocytes are a favorable substrate for neuronal survival and neurite growth
Abstract
During the development of the CNS, astrocytes play a key role as a substrate for neuronal migration and axonal growth. These neuron-astrocyte interactions could be regulated, in part, by the astrocytic cytoskeleton. Nestin, vimentin, and glial fibrillary acidic protein (GFAP) are the three identified proteins constitutive of intermediate filaments present in astrocytes. In the present study, we used mice deficient in GFAP to define the influence of the major protein of the astrocytic cytoskeleton on neuron survival and axonal growth in a model of neuron-astrocyte coculture. We observed that GFAP null astrocytes are a better substrate for neuronal survival and neurite outgrowth than wild-type astrocytes. This may be correlated with the relatively late occurrence of GFAP expression in astrocyte maturation when the early steps of neurogenesis are completed.
Key Biomarkers
Cited By (4)
- Structural brain abnormalities in patients with inflammatory illness acquired following exposure to water-damaged buildings: a volumetric MRI study using NeuroQuantNeurotoxicology and Teratology · 2014
- Neuro–glia interaction effects on GFAP gene: a novel role for transforming growth factor‐β1European Journal of Neuroscience · 2002
- Role of laminin bioavailability in the astroglial permissivity for neuritic outgrowthAnais da Academia Brasileira de Ciências · 2002
- Inactivation of the glial fibrillary acidic protein gene, but not that of vimentin, improves neuronal survival and neurite growth by modifying adhesion molecule expressionJournal of Neuroscience · 2001
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