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高效生产腺病毒的方法

An Efficient Method for Adenovirus Production.

机构信息

Institute of Cellular Biology and Pathology "Nicolae Simionescu".

Institute of Cellular Biology and Pathology "Nicolae Simionescu";

出版信息

J Vis Exp. 2021 Jun 10(172). doi: 10.3791/61691.

Abstract

Adenoviral transduction has the advantage of a strong and transient induction of the expression of the gene of interest into a broad variety of cell types and organs. However, recombinant adenoviral technology is laborious, time-consuming, and expensive. Here, we present an improved protocol using the pAdEasy system to obtain purified adenoviral particles that can induce a strong green fluorescent protein (GFP) expression in transduced cells. The advantages of this improved method are faster preparation and decreased production cost compared to the original method developed by Bert Vogelstein. The main steps of the adenoviral technology are: (1) the recombination of pAdTrack-GFP with the pAdEasy-1 plasmid in BJ5183 bacteria; (2) the packaging of the adenoviral particles; (3) the amplification of the adenovirus in AD293 cells; (4) the purification of the adenoviral particles from cell lysate and culture medium; and (5) the viral titration and functional testing of the adenovirus. The improvements to the original method consist of (i) the recombination in BJ5183-containing pAdEasy-1 by chemical transformation of bacteria; (ii) the selection of recombinant clones by "negative" and "positive" PCR; (iii) the transfection of AD293 cells using the K2 transfection system for adenoviral packaging; (iv) the precipitation with ammonium sulfate of the viral particles released by AD293 cells in cell culture medium; and (v) the purification of the virus by one-step cesium chloride discontinuous gradient ultracentrifugation. A strong expression of the gene of interest (in this case, GFP) was obtained in different types of transduced cells (such as hepatocytes, endothelial cells) from various sources (human, bovine, murine). Adenoviral-mediated gene transfer represents one of the main tools for developing modern gene therapies.

摘要

腺病毒转导具有将目的基因强而短暂地诱导到多种细胞类型和器官中的表达的优势。然而,重组腺病毒技术既费力、耗时又昂贵。在这里,我们提出了一种使用 pAdEasy 系统的改进方案,以获得可以在转导细胞中诱导强绿色荧光蛋白 (GFP) 表达的纯化腺病毒颗粒。与 Bert Vogelstein 开发的原始方法相比,这种改进方法的优点是制备更快且生产成本降低。腺病毒技术的主要步骤包括:(1)pAdTrack-GFP 与 BJ5183 细菌中的 pAdEasy-1 质粒重组;(2)包装腺病毒颗粒;(3)AD293 细胞中扩增腺病毒;(4)从细胞裂解物和培养基中纯化腺病毒颗粒;(5)腺病毒的滴定和功能测试。对原始方法的改进包括:(i)通过细菌的化学转化在含有 BJ5183 的 pAdEasy-1 中进行重组;(ii)通过“阴性”和“阳性”PCR 选择重组克隆;(iii)使用 K2 转染系统转染 AD293 细胞进行腺病毒包装;(iv)用硫酸铵沉淀 AD293 细胞在细胞培养基中释放的病毒颗粒;和(v)通过一步氯化铯不连续梯度超速离心纯化病毒。在不同来源(人、牛、鼠)的不同类型的转导细胞(如肝细胞、内皮细胞)中获得了目的基因(在这种情况下为 GFP)的强表达。腺病毒介导的基因转移是开发现代基因治疗的主要工具之一。

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