Original Article
Journal of Cerebral Blood Flow & Metabolism (2006) 26, 1311–1322. doi:10.1038/sj.jcbfm.9600285; published oline 8 February 2006
Protection of adult mouse progenitor cells and human glioma cells by de novo decorin expression in an oxygen- and glucose-deprived cell culture model system
This work was supported by Stroke Center Grant, NINDS No. NS23393.
Manoranjan Santra1, Mark Katakowski1, Rui Lan Zhang1, Zheng Gang Zhang1, He Meng1, Feng Jiang1 and Michael Chopp1,2
- 1Neurology Research, Department of Neurology, Henry Ford Health Sciences Center, Detroit, Michigan, USA
- 2Department of Physics, Oakland University, Rochester, Michigan, USA
Correspondence: Dr M Chopp, Neurology Research, Department of Neurology, Henry Ford Hospital, Education and Research Building, Room 3056, 2799 West Grand Boulevard, Detroit, MI 48202, USA. E-mail: chopp@neuro.hfh.edu
Received 21 September 2005; Revised 5 January 2006; Accepted 9 January 2006; Published online 8 February 2006.
Abstract
We employed an in vitro hypoxia cell culture model system and gene transfer technology to examine the effect of the decorin gene on cell survival against oxygen and glucose deprivation (OGD). Ectopic expression of decorin in subventricular zone (SVZ) cells from adult male mouse brain and human glioblastoma U-87 cells kept the cells viable against 24 h of OGD. Fewer than 1% of decorin-synthesizing cells were apoptotic after 12 h of OGD. In contrast, 100% of the control cells were apoptotic even after 4 h of OGD. De novo decorin synthesis in SVZ and U-87 cells induced expression of p21, p27 and Ras, AKT (acutely transforming retrovirus AKT8 in rodent T-cell lymphoma), and phosphorylated AKT. Blocking of phosphoinositide 3-kinase (PI-3K), Ras, and the epidermal growth factor receptor with specific inhibitors had no effect on induction of Ras, p21, and p27 at the messenger RNA level in decorin-synthesizing SVZ and U-87 cells. PI-3K inhibitors significantly increased apoptosis in decorin-expressing cells. Our data indicate that induction of p21, p27, Ras, AKT, and phosphorylated AKT by decorin inhibits apoptosis and protects U-87 and SVZ cells against OGD. Therefore, our data suggest that decorin is a potent trophic factor that protects neuronal progenitor cells and glioma cells from OGD.
Keywords:
antiapoptosis, cell survival, decorin, gene transfer, hypoxia
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