Laboratory of Biochemical Genetics, National Heart, Lung, and Blood Institute, Bethesda, Maryland 20892, USA.
Mol Ther. 2009 Nov;17(11):1888-96. doi: 10.1038/mt.2009.128. Epub 2009 Jun 16.
Scalable methods of recombinant adeno-associated virus (rAAV) production have gained much recent interest as the field of rAAV-mediated gene therapy approaches the clinic. In particular, the production of rAAV vectors in insect cells via the use of recombinant baculovirus technology has proven to be an efficient and scalable means of rAAV production. Here, we describe a method for the production of rAAV serotypes 1 and 2 in insect cells using a simplified baculovirus-AAV expression vector system coupled with particle purification via affinity chromatography. The number of separate baculovirus constructs required for rAAV production was reduced by genetically modifying the AAV rep gene to allow expression of the AAV-encoded replication enzymes, Rep78 and Rep52, from a single mRNA species and combining the modified rep gene with an AAV cap gene expression cassette in a single baculovirus construct. Additionally, we describe lysis, binding, and elution conditions compatible with a commercially available affinity medium (AVB Sepharose High Performance) used to purify rAAV particles to near homogeneity in a single chromatography step. Using the described method, we obtained an average yield of 7 x 10(4) purified rAAV particles per cell (range: 3.7 x 10(4) to 9.6 x 10(4)) from suspension cultures of recombinant baculovirus-infected insect cells.
作为腺相关病毒 (rAAV) 介导的基因治疗方法进入临床的领域,最近人们对可扩展的 rAAV 生产方法产生了浓厚的兴趣。特别是,通过使用重组杆状病毒技术在昆虫细胞中生产 rAAV 载体已被证明是一种高效且可扩展的 rAAV 生产方法。在这里,我们描述了一种使用简化的杆状病毒 - AAV 表达载体系统在昆虫细胞中生产 rAAV 血清型 1 和 2 的方法,该方法通过亲和层析进行粒子纯化。通过遗传修饰 AAV rep 基因,允许从单个 mRNA 物种表达 AAV 编码的复制酶 Rep78 和 Rep52,将生产 rAAV 所需的单独杆状病毒构建体的数量减少,并将修饰后的 rep 基因与 AAV 衣壳基因表达盒组合在单个杆状病毒构建体中。此外,我们描述了适合商业上可获得的亲和介质(AVB Sepharose High Performance)的裂解、结合和洗脱条件,该亲和介质用于在单个色谱步骤中纯化 rAAV 粒子,使其接近均相。使用所描述的方法,我们从重组杆状病毒感染的昆虫细胞的悬浮培养物中获得了每细胞平均 7 x 10(4)个纯化的 rAAV 粒子(范围:3.7 x 10(4) 至 9.6 x 10(4))。