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使用基于猿猴疱疹病毒的载体将标记基因转移至人造血细胞中。

Marker gene transfer into human haemopoietic cells using a herpesvirus saimiri-based vector.

作者信息

Doody G M, Leek J P, Bali A K, Ensser A, Markham A F, de Wynter E A

机构信息

Molecular Medicine Unit, University of Leeds, Leeds LS9 7TF, UK.

出版信息

Gene Ther. 2005 Feb;12(4):373-9. doi: 10.1038/sj.gt.3302422.

Abstract

Herpesvirus-based gene therapy vectors offer an attractive alternative to retroviral vectors because of their episomal nature and ability to accommodate large transgenes. Saimiriine herpesvirus 2 (HVS) is a prototypical gamma-2 herpesvirus that can latently infect numerous different cell types. A cosmid-generated HVS vector in which transforming genes have been deleted and the marker gene encoding enhanced green fluorescent protein (HVS-GFP) has been incorporated was evaluated for its potential to transduce CD34+ haemopoietic progenitors selected from cord blood. Expression of GFP could subsequently be readily detected in cells of the erythroid lineage in both CFU-GEMM assays and liquid differentiation cultures. These results confirm the potential of HVS as a candidate vector for gene therapy applications using primitive haemopoietic cells and suggest that it may be applicable to disorders affecting cells of the erythroid lineage.

摘要

基于疱疹病毒的基因治疗载体由于其附加体性质和容纳大转基因的能力,为逆转录病毒载体提供了一种有吸引力的替代方案。松鼠猴疱疹病毒2(HVS)是一种典型的γ-2疱疹病毒,可潜伏感染多种不同细胞类型。评估了一种通过黏粒产生的HVS载体,其中转化基因已被删除,并掺入了编码增强型绿色荧光蛋白的标记基因(HVS-GFP),以评估其转导从脐带血中选出的CD34+造血祖细胞的潜力。随后,在CFU-GEMM试验和液体分化培养中,均可在红系谱系的细胞中轻松检测到GFP的表达。这些结果证实了HVS作为使用原始造血细胞进行基因治疗应用的候选载体的潜力,并表明它可能适用于影响红系谱系细胞的疾病。

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