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生产、纯化和滴定用于基因传递目的的慢病毒载体。

Production, purification and titration of a lentivirus-based vector for gene delivery purposes.

机构信息

Medical Biotechnology Department, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.

出版信息

Cytotechnology. 2014 Dec;66(6):1031-8. doi: 10.1007/s10616-013-9652-5. Epub 2014 Mar 6.

Abstract

Viral vectors are valuable tools to deliver genetic materials into cells. Vectors derived from human immunodeficiency virus type 1 are being widely used for gene delivery, mainly because they are able to transduce both dividing and non-dividing cells which leads to stable and long term gene expression. In addition, these types of vectors are safe, with low toxicity, high stability and cell type specificity. Therefore, this work was aimed to produce lentivirus-based vector using a three-plasmid system. To produce this system, the eGFP marker gene was cloned into the plasmid pWPXLd. Subsequently, this vector plasmid, along with packaging plasmids, psPAX2 and envelope plasmid, pMD2.G, was co-transfected into packaging cell line (293T) using calcium phosphate method. 48 h post transfection, the constructed viral vector was harvested, purified and concentrated and stored at -80 °C for next experiments. The titration of the vector was carried out, using ELISA, flowcytometry, and fluorescent microscopy. Finally, transduction of HEK-293T, CHO, HepG2, MCF-7, MEFs and Jurkat cell lines was carried out with indicated cell numbers and multiplicities of infections of the vector in the presence of polybrene. Using this system, high titer lentivirus at titers of up to 2 × 10(8) transducing units/ml (TU/ml) was successfully generated and its transduction efficacy was improved by seven to over 20-fold in various cell types. We demonstrate the applicability of this vector for the efficient transduction of dividing and non-dividing cells, including HEK-293T, CHO, HepG2, MCF-7, MEFs and Jurkat cell line. Transduction efficiency yielded titers of (6.3 ± 1.2) 10(5) TU/ml. Furthermore, lentivirus transferred transgene was expressed at high level in the target cells and expression was followed until 90 days after transduction. Thus, the vector generated in this work, might be able to deliver the transgene into a wide range of mammalian cells.

摘要

病毒载体是将遗传物质递送到细胞中的有价值的工具。源自人类免疫缺陷病毒 1 的载体被广泛用于基因传递,主要是因为它们能够转导分裂和非分裂细胞,从而导致稳定和长期的基因表达。此外,这些类型的载体安全、毒性低、稳定性高且具有细胞类型特异性。因此,本工作旨在使用三质粒系统生产慢病毒载体。为了生产该系统,将 eGFP 标记基因克隆到质粒 pWPXLd 中。随后,将该载体质粒与包装质粒 psPAX2 和包膜质粒 pMD2.G 一起通过磷酸钙转染法共转染到包装细胞系(293T)中。转染后 48 小时,收获、纯化和浓缩构建的病毒载体,并储存在-80°C 以备后续实验使用。使用 ELISA、流式细胞术和荧光显微镜对载体进行滴定。最后,在聚凝胺存在下,用指示的细胞数和载体的感染复数将 HEK-293T、CHO、HepG2、MCF-7、MEFs 和 Jurkat 细胞系进行转导。使用该系统,成功地产生了高达 2×10(8)转导单位/ml (TU/ml) 的高滴度慢病毒,并且在各种细胞类型中,其转导效率提高了 7 倍以上,超过 20 倍。我们证明了该载体在有效转导分裂和非分裂细胞中的适用性,包括 HEK-293T、CHO、HepG2、MCF-7、MEFs 和 Jurkat 细胞系。转导效率产生的滴度为(6.3±1.2)×10(5)TU/ml。此外,在转导后 90 天内,慢病毒转移的转基因在靶细胞中高水平表达。因此,本工作中生成的载体可能能够将转基因递送到广泛的哺乳动物细胞中。

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