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Activation of NMDA receptors increases proliferation and differentiation of hippocampal neural progenitor cellsopen access

Authors
Joo, Jae-YeolKim, Byung-WooLee, Jeong-SikPark, Jin-YongKim, SunohYun, Young-JooLee, Sang-HunLee, Suk-HoRhim, HyewhonSon, Hyeon
Issue Date
Apr-2007
Publisher
COMPANY BIOLOGISTS LTD
Keywords
rat; hippocampus; NMDA; Ca2+; progenitors
Citation
JOURNAL OF CELL SCIENCE, v.120, no.8, pp.1358 - 1370
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF CELL SCIENCE
Volume
120
Number
8
Start Page
1358
End Page
1370
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/180291
DOI
10.1242/jcs.002154
ISSN
0021-9533
Abstract
The prolonged effects of N-methyl-D-aspartate ( NMDA) receptor activation on the proliferation and differentiation of hippocampal neural progenitor cells (NPCs) were studied. Under conditions of mitogen- mediated proliferation, a single NMDA pulse ( 5 mu M) increased the fraction of 5- bromo- 2- deoxyuridine ( BrdU)-positive ( BrdU(+)) cells after a delay of 72 hours. Similarly, a single systemic injection of NMDA ( 100 mg/ kg) increased the number of BrdU(+) cells in the dentate gyrus ( DG) after 28 days, but not after 3 days. NMDA receptor activation induced an immediate influx of Ca2+ into the NPCs and the NPCs expressed and released vascular endothelial growth factor ( VEGF) in an NMDA receptor- dependent manner within 72 hours. With repetitive stimulation at the same dose, NMDA stimulated the acquisition of a neuronal phenotype accompanied by an increase in the expression of proneural basic helix-loop-helix ( bHLH) factors. Together these findings suggest that neurogenesis in the developing brain is likely to be both directly and indirectly regulated by complex interactions between Ca2+ influx and excitation-releasable cytokines, even at mild levels of excitation. In addition, our results are the first to show that stimulation of NPCs may lead to either proliferation or neuronal differentiation, depending on the level of NMDA receptor activation.
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COLLEGE OF MEDICINE (DEPARTMENT OF BIOCHEMISTRY & MOLECULAR BIOLOGY)
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