Early acquisition of typical metabolic features upon differentiation of mouse neural stem cells into astrocytes
- 29 December 2003
- Vol. 46 (1) , 8-17
- https://doi.org/10.1002/glia.10348
Abstract
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions of mature astrocytes. In this study, we examined whether these characteristics are acquired together with classical phenotypic markers of differentiated astrocytes. Differentiation of E14 mouse neurospheres into astrocytes was induced by the addition of fetal bovine serum (FBS). Degree of differentiation was assessed by reverse transcription‐polymerase chain reaction (RT‐PCR) and immunofluorescence for both GFAP and nestin. Neural stem cells expressed nestin but not GFAP, while differentiated astrocytes were immunopositive for GFAP but displayed low levels of nestin expression. A strong increase in the expression of the glutamate transporter GLAST and the monocarboxylate transporter MCT1 accompanied phenotypic changes. In addition, active glutamate transport appeared in differentiated astrocytes, as well as their capacity to increase aerobic glycolysis in response to glutamate. Leukemia inhibitory factor (LIF) and ciliary neurotrophic factor, but not interleukin‐6, triggered the expression of phenotypic and morphological characteristics of astrocytes. In addition, exposure to LIF led to the appearance of metabolic features typically associated with astrocytes. Altogether, our results show that acquisition of some specific metabolic features by astrocytes occurs early in their differentiation process and that LIF represents a candidate signal to induce their expression.Keywords
This publication has 38 references indexed in Scilit:
- Cell‐specific expression pattern of monocarboxylate transporters in astrocytes and neurons observed in different mouse brain cortical cell culturesJournal of Neuroscience Research, 2003
- Glutamate uptakeProgress in Neurobiology, 2001
- A quantitative analysis of l‐glutamate‐regulated Na+ dynamics in mouse cortical astrocytes: implications for cellular bioenergeticsEuropean Journal of Neuroscience, 2000
- Compartmentation of Brain Glutamate Metabolism in Neurons and GliaJournal of Nutrition, 2000
- Glial Fibrillary Acidic Protein: GFAP-Thirty-One Years (1969–2000)Neurochemical Research, 2000
- Trans-inhibition of glutamate transport prevents excitatory amino acid-induced glycolysis in astrocytesBrain Research, 1999
- Regulation of neural stem cell differentiation in the forebrainImmunology & Cell Biology, 1998
- Regulation of Gliogenesis in the Central Nervous System by the JAK-STAT Signaling PathwayScience, 1997
- Neurons and astroglia express distinct subsets of Na,K-ATPase α and β subunitsMolecular Brain Research, 1994
- Cell-type specific expression of Na+,K+-ATPase catalytic subunits in cultured neurons and glia: evidence for polarized distribution in neuronsBrain Research, 1993