首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Efficient transduction and engraftment of G-CSF-mobilized peripheral blood CD34+ cells in nonhuman primates using GALV-pseudotyped gammaretroviral vectors.
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Efficient transduction and engraftment of G-CSF-mobilized peripheral blood CD34+ cells in nonhuman primates using GALV-pseudotyped gammaretroviral vectors.

机译:使用GALV伪型γ逆转录病毒载体,可在非人灵长类动物中有效地转导和移植G-CSF动员的外周血CD34 +细胞。

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摘要

The optimal stem cell source for stem cell gene therapy has yet to be determined. Most large-animal studies have utilized peripheral blood or marrow-derived cells collected after administration of granulocyte colony-stimulating factor (G-SCF) and stem cell factor (SCF); however, SCF is unavailable for clinical use in the United States and the European Union. A recent study in a competitive repopulation assay in the rhesus macaque showed very inefficient marking of G-CSF-mobilized (G/only) peripheral blood (G-PBSC) CD34(+) cells relative to G-CSF and SCF-mobilized cells using vectors with an amphotropic pseudotype. Because G-PBSC would be the preferred target cell population for most clinical stem cell gene therapy applications, we asked whether we could achieve efficient transduction and engraftment of G-PBSC using Phoenix-GALV-pseudotyped vectors. We transplanted three baboons with G/only mobilized CD34(+) cells transduced with GALV-pseudotyped retroviral vectors. We observed high-level, persistent engraftment of gene-modified G-PBSC in all animals with gene marking levels in granulocytes up to 60%. We analyzed amphotropic (PIT2) and GALV (PIT1) receptor expression in G/only cells and found preferential expression of PIT1 after G/only, which may explain the inferior results with amphotropic pseudotypes. These findings demonstrate that high stem cell gene transfer levels can be achieved using G-CSF-mobilized PBSC with Phoenix-GALV-pseudotyped vectors.
机译:用于干细胞基因治疗的最佳干细胞来源尚未确定。大多数大型动物研究都利用了粒细胞集落刺激因子(G-SCF)和干细胞因子(SCF)给药后收集的外周血或骨髓来源的细胞。但是,在美国和欧盟,SCF无法用于临床。恒河猴猕猴的竞争性种群重新测定的最新研究表明,相对于使用G-CSF和SCF的细胞,使用G-CSF的(G / PBS)外周血(G-PBSC)CD34(+)细胞标记效率非常低两性假型的向量。因为对于大多数临床干细胞基因治疗应用而言,G-PBSC将是首选的靶细胞群,所以我们询问是否可以使用Phoenix-GALV-假型载体实现G-PBSC的有效转导和植入。我们将三个狒狒与G /仅通过GALV假型逆转录病毒载体转导的动员CD34(+)细胞一起移植。我们观察到在所有动物中高水平,持久地植入了基因修饰的G-PBSC,粒细胞中的基因标记水平高达60%。我们分析了G / only细胞中的两性(PIT2)和GALV(PIT1)受体表达,发现G / only后PIT1优先表达,这可能解释了两性假型的劣等结果。这些发现表明,使用G-CSF动员的PBSC和Phoenix-GALV假型载体可以实现高干细胞基因转移水平。

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