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Neuroprotective effect of combined hypoxia-induced VEGF and bone marrow-derived mesenchymal stem cell treatment

Authors
An, Sung SuJin, Hong LianKim, Keung NyunKim, Hyun AhKim, Dong SeokCho, JoonLiu, Meng-LuOh, Jin SooYoon, Do HeumLee, Min HyungHa, Yoon
Issue Date
Mar-2010
Publisher
SPRINGER
Keywords
BMSC; VEGF; Hypoxic ischemic injury
Citation
CHILDS NERVOUS SYSTEM, v.26, no.3, pp.323 - 331
Indexed
SCIE
SCOPUS
Journal Title
CHILDS NERVOUS SYSTEM
Volume
26
Number
3
Start Page
323
End Page
331
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/175361
DOI
10.1007/s00381-009-1040-2
ISSN
0256-7040
Abstract
To avoid unwanted adverse effects of higher doses of single treatment of stem cells and gene therapy and increase the therapeutic efficacies, we hypothesized the combined therapy with stem cells and gene therapy. This study assessed the neuroprotective effects of combined gene therapy and stem cell treatment under ischemic hypoxia conditions using hypoxia-inducible vascular endothelial growth factor (VEGF) and bone marrow-derived mesenchymal stem cells (BMSC). Experimental groups included the control which was N2A cells transfected with empty vectors, the transfection only group which was N2A cells treated with pEpo-SV-VEGF alone, the BMSC only group which was N2A cells transfected with empty vectors and cocultured with BMSCs, and the combined treatment group which was N2A cells treated with pEpo-SV-VEGF and cocultured with BMSCs. Each group was transfected for 4 h and cultured at 37A degrees C and 5% CO2 for 24 h. Each group was then cultivated under hypoxic conditions (1% O-2) for 12 h. Neuroprotective effects were assessed by reverse transcription polymerase chain reaction, annexin V, and cytotoxicity assay. Neurons exposed to hypoxic conditions exhibited neuronal apoptosis. Compared to single treatments, the combined hypoxia-inducible VEGF and BMSC treatment demonstrated a significant increase in VEGF expression and decreased neuronal apoptosis. These results suggest that combined pEpo-SV-VEGF and BMSC treatment is effective in protecting neurons against hypoxic ischemic injury.
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