Hypoxic Conditioned Medium from Rat Cerebral Cortical Cells Enhances the Proliferation and Differentiation of Neural Stem Cells Mainly through PI3-K/Akt Pathways
Vascular Endothelial Growth Factor A
0301 basic medicine
571
Science
Morpholines
Rats, Sprague-Dawley
Phosphatidylinositol 3-Kinases
03 medical and health sciences
Neural Stem Cells
Cell differentiation
Animals
Phosphorylation
Hypoxia
Cells, Cultured
Cell Proliferation
Anthracenes
Cerebral Cortex
Neurons
Brain-Derived Neurotrophic Factor
Q
R
Cell Differentiation
Rats
Chromones
Astrocytes
Culture Media, Conditioned
Nuclear staining
Medicine
Neurospheres
Proto-Oncogene Proteins c-akt
Research Article
Signal Transduction
DOI:
10.1371/journal.pone.0111938
Publication Date:
2014-11-11T18:55:48Z
AUTHORS (4)
ABSTRACT
To investigate the effects of hypoxic conditioned media from rat cerebral cortical cells on the proliferation and differentiation of neural stem cells (NSCs) in vitro, and to study the roles of PI3-K/Akt and JNK signal transduction pathways in these processes.Cerebral cortical cells from neonatal Sprague-Dawley rat were cultured under hypoxic and normoxic conditions; the supernatant was collected and named 'hypoxic conditioned medium' (HCM) and 'normoxic conditioned medium' (NCM), respectively. We detected the protein levels (by ELISA) of VEGF and BDNF in the conditioned media and mRNA levels (by RT-PCR) in cerebral cortical cells. The proliferation (number and size of neurospheres) and differentiation (proportion of neurons and astrocytes over total cells) of NSCs was assessed. LY294002 and SP600125, inhibitors of PI3-K/Akt and JNK, respectively, were applied, and the phosphorylation levels of PI3-K, Akt and JNK were measured by western blot.The protein levels and mRNA expressions of VEGF and BDNF in 4% HCM and 1% HCM were both higher than that of those in NCM. The efficiency and speed of NSCs proliferation was enhanced in 4% HCM compared with 1% HCM. The highest percentage of neurons and lowest percentage of astrocytes was found in 4% HCM. However, the enhancement of NSCs proliferation and differentiation into neurons accelerated by 4% HCM was inhibited by LY294002 and SP600125, with LY294002 having a stronger inhibitory effect. The increased phosphorylation levels of PI3-K, Akt and JNK in 4% HCM were blocked by LY294002 and SP600125.4%HCM could promote NSCs proliferation and differentiation into high percentage of neurons, these processes may be mainly through PI3-K/Akt pathways.
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