Genetically modified skin fibroblasts persist long after transplantation but gradually inactivate introduced genes.
- 15 February 1991
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 88 (4) , 1330-1334
- https://doi.org/10.1073/pnas.88.4.1330
Abstract
Genetically engineered fibroblasts have been successfully used to produce therapeutic proteins in animals, but sustained production of the proteins has not been achieved. This limits the potential of fibroblast-mediated gene therapy in humans. We have studied the phenomenon of decreased production in rats by using retroviral vectors carrying genes encoding human adenosine deaminase and neomycin phosphotransferase. While transplanted skin fibroblasts containing vector sequences persisted at constant levels for at least 8.5 mo, vector expression decreased by greater than 1500-fold after 1 mo. Cellular or antibody-mediated immune responses were not detected in transplanted animals, and expression could not be restored in fibroblasts recultivated from the grafts. This phenomenon is reminiscent of sequence-specific gene inactivation observed in other cell types. Because genetic manipulation and expression of foreign proteins did not affect survival of the transplanted cells, effective long-term therapy may be possible with the use of alternative gene regulatory elements.Keywords
This publication has 27 references indexed in Scilit:
- Long-Term Expression of Human Adenosine Deaminase in Mice after Transplantation of Bone Marrow Infected with Amphotropic Retroviral VectorsHuman Gene Therapy, 1990
- Grafting Genetically Modified Cells to the Damaged Brain: Restorative Effects of NGF ExpressionScience, 1988
- Regulation of Insulin-Gene ExpressionNew England Journal of Medicine, 1987
- Clonal Gene Therapy: Transplanted Mouse Fibroblast Clones Express Human α1-Antitrypsin Gene in VivoScience, 1987
- Functional analysis of a retroviral host-range mutant: altered long terminal repeat sequences allow expression in embryonal carcinoma cells.Proceedings of the National Academy of Sciences, 1987
- Chromosomal position or virus mutation permits retrovirus expression in embryonal carcinoma cellsCell, 1986
- Factors involved in production of helper virus-free retrovirus vectorsSomatic Cell and Molecular Genetics, 1986
- Non-function of a Moloney murine leukaemia virus regulatory sequence in F9 embryonal carcinoma cellsNature, 1984
- De novo methylation and expression of retroviral genomes during mouse embryogenesisNature, 1982
- Sodium butyrate inhibits histone deacetylation in cultured cellsCell, 1978