Development of safe and efficient retroviral vectors for Gaucher disease
被引:0
作者:
M Havenga
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机构:Gene Therapy Section,Department of Molecular Cell Biology
M Havenga
R Fisher
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h-index: 0
机构:Gene Therapy Section,Department of Molecular Cell Biology
R Fisher
P Hoogerbrugge
论文数: 0引用数: 0
h-index: 0
机构:Gene Therapy Section,Department of Molecular Cell Biology
P Hoogerbrugge
B Roberts
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h-index: 0
机构:Gene Therapy Section,Department of Molecular Cell Biology
B Roberts
D Valerio
论文数: 0引用数: 0
h-index: 0
机构:Gene Therapy Section,Department of Molecular Cell Biology
D Valerio
HHG van Es
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h-index: 0
机构:Gene Therapy Section,Department of Molecular Cell Biology
HHG van Es
机构:
[1] Gene Therapy Section,Department of Molecular Cell Biology
[2] Medical Faculty,Department of Pediatrics
[3] Leiden University,undefined
[4] IntroGene BV,undefined
[5] Sophia Children’s Hospital,undefined
[6] Genzyme Corporation,undefined
来源:
Gene Therapy
|
1997年
/
4卷
关键词:
retrovirus;
gene therapy;
Gaucher disease;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
We have generated amphotropic and Gibbon ape leukemia (GaLV) viruses carrying either a full-length (IG-GC2) or a shortened glucocerebrosidase cDNA (IG-GC4). For all recombinant retroviruses, a single infection was sufficient to augment glucocerebrosidase activity in unselected Gaucher type I and type II fibroblasts to levels which can be considered therapeutic. Transfer efficiency of the glucocerebrosidase cDNA into normal human and Gaucher type I CD34+ cells, using supernatant transduction, ranged from 4 to 50% as established on vector-positive CFU-GM. In these experiments, GaLV and amphotropic virus were equally efficient in transducing early human progenitors. Importantly, mixing amphotropic and GaLV pseudo-typed retroviruses resulted in significantly higher transduction efficiencies as compared with single infections, up to 70% vector-positive CFU-GM. Glucocerebrosidase activity, measured in the progeny of human CD34+ cells, increased up to 460% compared with mock-infected CD34+ cells. Upon transduction of Gaucher CD34+ bone marrow cells the glucocerebrosidase deficiency was reversed.