Comparison of Three Retroviral Vector Systems for Transduction of Nonobese Diabetic/Severe Combined Immunodeficiency Mice Repopulating Human CD34+Cord Blood Cells
- 10 April 2003
- journal article
- research article
- Published by Mary Ann Liebert Inc in Human Gene Therapy
- Vol. 14 (6) , 509-519
- https://doi.org/10.1089/104303403764539305
Abstract
The use of recombinant vectors based on wild-type viruses that are absent in humans and are not associated with any disease in their natural animal hosts or in accidentally infected humans would add an additional level of safety for human somatic gene therapy approaches. These criteria are fulfilled by foamy viruses (FVs), a family of complex retroviruses whose members are widely found among mammals and are apathogenic in all hosts. Here, we show by comparison of identically designed vector constructs that recombinant retroviral vectors based on FVs were as efficient as lentiviral vectors in transducing nonobese diabetic/severe combined immunodeficiency (NOD/SCID) mice repopulating human CD34+ cord blood (CB) cells. The FV vector was able to achieve gene transfer levels up to 84% of engrafted human cells in a short overnight transduction protocol. In contrast, without prestimulation of the target cells, a human immunodeficiency virus type 1 (HIV-1)-based lentiviral vector pseudotyped with gibbon ape leukemia virus envelope (GALV Env) was nearly as inefficient as murine leukemia virus (MLV)-based oncoretroviral vectors in transducing NOD/SCID repopulating cells. The same HIV vector pseudotyped with the vesicular stomatitis virus glycoprotein G (VSV-G) achieved high marking efficiency. Clonality analysis of bone marrow samples showed oligoclonal hematopoiesis with single to multiple insertions per cell, both for FV and HIV vectors. These data demonstrate that vectors based on FVs warrant further investigation and development for medical use.Keywords
This publication has 66 references indexed in Scilit:
- Correction of ADA-SCID by Stem Cell Gene Therapy Combined with Nonmyeloablative ConditioningScience, 2002
- Generation of a Flexible Cell Line with Regulatable, High-Level Expression of HIV Gag/Pol Particles Capable of Packaging HIV-Derived VectorsMolecular Therapy, 2001
- Generation of a Stable Cell Line Producing High-Titer Self-Inactivating Lentiviral VectorsMolecular Therapy, 2001
- Historical Perspective of Foamy Virus Epidemiology and InfectionClinical Microbiology Reviews, 2001
- MDR1 Gene Expression in NOD/SCID Repopulating Cells after Retroviral Gene Transfer under Clinically Relevant ConditionsMolecular Therapy, 2000
- Why aren’t foamy viruses pathogenic?Trends in Microbiology, 2000
- Gene Therapy of Human Severe Combined Immunodeficiency (SCID)-X1 DiseaseScience, 2000
- Spontaneous in vivo reversion to normal of an inherited mutation in a patient with adenosine deaminase deficiencyNature Genetics, 1996
- In Vivo Gene Delivery and Stable Transduction of Nondividing Cells by a Lentiviral VectorScience, 1996
- Markers of Foamy Virus Infections in Monkeys, Apes, and Accidentally Infected Humans: Appropriate Testing Fails to Confirm Suspected Foamy Virus Prevalence in HumansAIDS Research and Human Retroviruses, 1995