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首页> 外文期刊>Biotechnology and Bioengineering >Production of adeno-associated viral vectors in insect cells using triple infection: Optimization of baculovirus concentration ratios
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Production of adeno-associated viral vectors in insect cells using triple infection: Optimization of baculovirus concentration ratios

机译:使用三次感染在昆虫细胞中生产腺相关病毒载体:杆状病毒浓度比的优化

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The production of viral vectors or virus-like particles for gene therapy or vaccinations using the baculovirus expression system is gaining in popularity. Recently, reports of a viral vector based on adeno-associated virus (AAV) produced in insect cells using the baculovirus expression vector system have been published. This system requires the triple infection of cells with baculovirus vectors containing the AAV gene for replication proteins (BacRep), the AAV gene for structural proteins (BacCap), and the AAV vector genome (BacITR). A statistical approach was used to investigate the multiplicities of infection of the three baculoviruses and the results were extended to the production of AAVs containing various transgenes. Highest AAV yields were obtained when BacRep and BacCap, the baculovirus vectors containing genes that code for proteins necessary for the formation of the AAV vector, were added in equal amounts at high multiplicities of infection. These combinations also resulted in the closest ratios of infectious to total AAV particles produced. Overexpression of the AAV structural proteins led to the production of empty AAV capsids, which is believed to overload the cellular machinery, preventing proper encapsidation of the AAV vector transgene, and decreased the viability of the insect cells. Delaying the input of BacCap, to reduce the amount of capsids produced, resulted in lower infectious AAV titers then when all three baculoviruses were put into the system at the same time. The amount of BacITR added to the system can be less than the other two without loss of AAV yield. (c) 2006 Wiley Periodicals, Inc.
机译:使用杆状病毒表达系统生产用于基因治疗或疫苗接种的病毒载体或病毒样颗粒正日益普及。近来,已经报道了使用杆状病毒表达载体系统在昆虫细胞中产生的基于腺伴随病毒(AAV)的病毒载体的报道。该系统需要用杆状病毒载体对细胞进行三次感染,该杆状病毒载体包含用于复制蛋白的AAV基因(BacRep),用于结构蛋白的AAV基因(BacCap)和AAV载体基因组(BacITR)。统计学方法用于研究三种杆状病毒感染的多重性,其结果扩展到包含各种转基因的AAV的生产。当以高感染复数等量添加BacRep和BacCap(杆状病毒载体,其中包含编码形成AAV载体所需的蛋白质的基因)时,可获得最高的AAV产量。这些组合还导致产生的感染性病毒与总AAV颗粒的比例最接近。 AAV结构蛋白的过表达导致空AAV衣壳的产生,这被认为会使细胞机器超载,阻止AAV载体转基因的适当衣壳化,并降低昆虫细胞的生存能力。与同时将所有三种杆状病毒同时放入系统中相比,延迟BacCap的输入以减少产生的衣壳数量导致较低的AAV感染力。在不损失AAV产量的情况下,添加到系统中的BacITR的数量可以少于其他两个。 (c)2006年Wiley Periodicals,Inc.

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