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用于转导人CD34阳性细胞的逆转录病毒载体的优化

Optimization of a retroviral vector for transduction of human CD34 positive cells.

作者信息

Szyda Anna, Paprocka Maria, Krawczenko Agnieszka, Lenart Katarzyna, Heimrath Jerzy, Grabarczyk Piotr, Mackiewicz Andrzej, Duś Danuta

机构信息

Institute of Immunology and Experimental Therapy, Polish Academy of Sciences, Wrocław, Poland.

出版信息

Acta Biochim Pol. 2006;53(4):815-23. Epub 2006 Dec 11.

Abstract

Human stem and progenitor cells have recently become objects of intensive studies as an important target for gene therapy and regenerative medicine. Retroviral vectors are among the most effective tools for genetic modification of these cells. However, their transduction efficiency strongly depends on the choice of the ex vivo transduction system. The aim of this study was to elaborate a system for retroviral vector transduction of human CD34 positive cells isolated from cord blood. The retroviral vector pMINV EGFP was chosen for transduction of two human erythroblastoid cell lines: KG-1a (CD34 positive) and K562 (CD34 negative). For vector construction, three promoters and two retroviral vector packaging cell lines were used. To optimize the physicochemical conditions of the transduction process, different temperatures of supernatant harvesting, the influence of centrifugation and the presence of transduction enhancing agents were tested. The conditions elaborated with KG-1a cells were further applied for transduction of CD34 positive cells isolated from cord blood. The optimal efficiency of transduction of CD34 positive cells with pMINV EGFP retroviral vector (26% of EGFP positive cells), was obtained using infective vector with LTR retroviral promoter, produced by TE FLY GA MINV EGFP packaging cell line. The transduction was performed in the presence of serum, at 37 degrees C, with co-centrifugation of cells with viral supernatants and the use of transduction enhancing agents. This study confirmed that for gene transfer into CD34 positive cells, the detailed optimization of each element of the transduction process is of great importance.

摘要

人类干细胞和祖细胞最近已成为深入研究的对象,作为基因治疗和再生医学的重要靶点。逆转录病毒载体是对这些细胞进行基因改造的最有效工具之一。然而,它们的转导效率很大程度上取决于体外转导系统的选择。本研究的目的是精心设计一种用于转导从脐带血中分离出的人类CD34阳性细胞的逆转录病毒载体系统。选择逆转录病毒载体pMINV EGFP转导两个人类成红细胞系:KG-1a(CD34阳性)和K562(CD34阴性)。在载体构建中,使用了三种启动子和两种逆转录病毒载体包装细胞系。为了优化转导过程的物理化学条件,测试了不同的上清液收获温度、离心的影响以及转导增强剂的存在情况。用KG-1a细胞精心设计的条件进一步应用于转导从脐带血中分离出的CD34阳性细胞。使用由TE FLY GA MINV EGFP包装细胞系产生的带有LTR逆转录病毒启动子的感染性载体,获得了pMINV EGFP逆转录病毒载体转导CD34阳性细胞的最佳效率(26%的EGFP阳性细胞)。转导在血清存在下于37℃进行,细胞与病毒上清液共离心,并使用转导增强剂。本研究证实,对于将基因导入CD34阳性细胞,转导过程中每个要素的详细优化非常重要。

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