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The dynamics of long-term transgene expression in engrafted neural stem cells

Authors
 Jean-Pyo Lee  ;  David J. Tsai  ;  Kook In Park  ;  Alan R. Harvey  ;  Evan Y. Snyder 
Citation
 JOURNAL OF COMPARATIVE NEUROLOGY, Vol.515(1) : 83-92, 2009 
Journal Title
JOURNAL OF COMPARATIVE NEUROLOGY
ISSN
 0021-9967 
Issue Date
2009
MeSH
Animals ; Animals, Newborn ; Brain Tissue Transplantation/methods* ; Cell Culture Techniques ; Cell Differentiation/genetics ; Cell Proliferation ; Clone Cells ; Female ; Gene Dosage/genetics ; Gene Expression Regulation/genetics* ; Genes, Reporter/genetics ; Genetic Vectors/genetics* ; Graft Survival/genetics ; Male ; Mice ; Neurons/cytology ; Neurons/metabolism ; Retroviridae/genetics ; Stem Cell Transplantation/methods* ; Stem Cells/cytology ; Stem Cells/metabolism ; Time ; Transfection/methods* ; Transgenes/genetics*
Keywords
CNS gene therapy ; viral vectors ; neural transplantation ; FISH
Abstract
To assess the dynamics and confounding variables that influence transgene expression in neural stem cells (NSCs), we generated distinct NSC clones from the same pool of cells, carrying the same reporter gene transcribed from the same promoter, transduced by the same retroviral vector, and transplanted similarly at the same differentiation state, at the same time and location, into the brains of newborn mouse littermates, and monitored in parallel for over a year in vivo (without immunosuppression). Therefore, the sole variables were transgene chromosomal insertion site and copy number. We then adapted and optimized a technique that tests, at the single cell level, persistence of stem cell-mediated transgene expression in vivo based on correlating the presence of the transgene in a given NSC's nucleus (by fluorescence in situ hybridization [FISH]) with the frequency of that transgene's product within the same cell (by combined immunohistochemistry [IHC]). Under the above-stated conditions, insertion site is likely the most contributory variable dictating transgene downregulation in an NSC after 3 months in vivo. We also observed that this obstacle could be effectively and safely counteracted by simple serial infections (as few as three) inserting redundant copies of the transgene into the prospective donor NSC. (The preservation of normal growth control mechanisms and an absence of tumorigenic potential can be readily screened and ensured ex vivo prior to transplantation.) The combined FISH/IHC strategy employed here for monitoring the dynamics of transgene expression at the single cell level in vivo may be used for other types of therapeutic and housekeeping genes in endogenous and exogenous stem cells of many organs and lineages
Files in This Item:
T200902966.pdf Download
DOI
10.1002/cne.21957
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Pediatrics (소아과학교실) > 1. Journal Papers
Yonsei Authors
Park, Kook In(박국인) ORCID logo https://orcid.org/0000-0001-8499-9293
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/104523
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