Cytokine Transgene Expression and Promoter Usage in Primary CD34+Cells Using Particle-Mediated Gene Delivery
- 10 October 1998
- journal article
- Published by Mary Ann Liebert Inc in Human Gene Therapy
- Vol. 9 (15) , 2197-2205
- https://doi.org/10.1089/hum.1998.9.15-2197
Abstract
Induction or short-term transgenic expression of specific cytokines, growth factors, or other candidate therapeutic genes in hematopoietic progenitor or stem cells is potentially applicable to gene therapy for cancer. In this study, we explored the application of a gene gun technique, as an alternative to viral vectors, for ex vivo gene transfer into and transient gene expression in highly enriched CD34+ cells derived from human umbilical cord blood. Twenty-four hours posttransfection, 32.6 to 1500 pg/l x 10(6) CD34+ cells of transient gene expression was routinely obtained for specific cytokine and reporter genes. Transgene expression at the single-cell level was revealed by X-Gal staining of lacZ cDNA-transfected CD34+ cells. Expression of four candidate therapeutic genes, namely human granulocyte-macrophage colony-stimulating factor, tumor necrosis factor alpha, interleukin 2, and interferon gamma, was detectable for 4 to 7 days in CD34+ cells. A human elongation factor 1alpha promoter/intron 1 transcription unit was identified as a strong cellular promoter for CD34+ cells, exhibiting strength similar to that of the commonly employed cytomegalovirus immediate-early promoter. These results suggest that the nonviral, gene gun technique offers an efficient alternative approach for transient transgenic studies of hematopoietic cells and may provide new possibilities for certain cancer gene therapy strategies using CD34+ cells.Keywords
This publication has 31 references indexed in Scilit:
- DNA cancer vaccines: A gene gun approachImmunology & Cell Biology, 1997
- Gene Therapy for Cancer: What Have We Done and Where Are We Going?JNCI Journal of the National Cancer Institute, 1997
- Genetic Modification of Human Peripheral Blood Lymphocytes with a Transdominant Negative Form of Rev: Safety and ToxicityHuman Gene Therapy, 1995
- Transduction of Human Bone Marrow by Adenoviral VectorHuman Gene Therapy, 1994
- Rapid transgene expression in lymphocyte and macrophage primary cultures after particle bombardment-mediated gene transferJournal of Immunological Methods, 1993
- Human cord blood cells as targets for gene transfer: potential use in genetic therapies of severe combined immunodeficiency disease.The Journal of Experimental Medicine, 1993
- Particle Bombardment-Mediated Gene Transfer and Expression in Rat Brain TissuesNature Biotechnology, 1993
- Amendment to Clinical Research Projects: Genetic Marking With Retroviral Vectors to Study the Feasibility of Stem Cell Gene Transfer and the Biology of Hematopoietic Reconstitution After Autologous Transplantation in Multiple Myeloma, Chronic Myelogenous Leukemia, or Metastatic Breast CancerHuman Gene Therapy, 1993
- Gene Transfer in Human Lymphocytes Using a Vector Based on Adeno-Associated VirusJournal of Immunotherapy, 1992
- Safety Issues Related to Retroviral-Mediated Gene Transfer in HumansHuman Gene Therapy, 1991