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Production of HIV-1 gp120 in packed-bed bioreactor using the vaccinia virus/T7 expression system

机译:使用痘苗病毒/ T7表达系统在填充床生物反应器中生产HIV-1 gp120

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The HeLa cell-vaccinia virus system is an attractive method for producing recombinant mammalian proteins with proper post-translation modifications. This approach is especially important for the production of HIV-1 envelope glycoprotein, gp120, since more than half of its total mass is due to carbohydrates. A recombinant vaccinia virus/T7 RNA polymerase expression system was developed to express and produce large amounts of gp120 tagged with six histidine residues. In this system, the expressed T7RNA polymerase from one virus drives the transcription of the gp120 encoded in the second virus. During the process development phase, the following parameters were studied: infection time, infection duration, multiplicity of infection, ratio of the twoviruses, medium composition, and medium replacement strategy during the infection phase. The chosen production method was based on using the packed-bed bioreactor. The HeLa cells were immobilized on fibrous disks (Fibra-Cel) packed in an internal basketpositioned in a vertically mixed bioreactor (Celligen Plus), and 25 g of carriers were packed in a 10.6-L (working volume) reactor. The process included a growth stage followed by a production stage. In the growth stage, the bed was perfused with a serum-containing medium, allowing the cells to grow to saturation, and in the production stage, done using serum-free medium, the cells were infected with the two recombinant viruses. The expressed protein was secreted, collected from the culture fluid, and purified. The specific production was found to be between 2 and 3 #mu#g of protein/10~6 cells, and the volumetric production was around 10 mg/50 g carriers.
机译:HeLa细胞痘苗病毒系统是一种产生具有适当翻译后修饰的重组哺乳动物蛋白质的有吸引力的方法。该方法对于生产HIV-1包膜糖蛋白gp120尤其重要,因为其总质量的一半以上来自碳水化合物。开发了重组牛痘病毒/ T7 RNA聚合酶表达系统,以表达和产生大量带有六个组氨酸残基的gp120。在该系统中,一种病毒表达的T7RNA聚合酶驱动第二种病毒编码的gp120的转录。在过程开发阶段,研究了以下参数:感染时间,感染持续时间,感染复数,两种病毒的比例,培养基组成和培养基替代策略。选择的生产方法基于使用填充床生物反应器。将HeLa细胞固定在纤维盘(Fibra-Cel)上,该纤维盘装在内部篮中,该篮放置在垂直混合的生物反应器(Celligen Plus)中,并将25 g载体装在10.6升(工作体积)反应器中。该过程包括成长阶段,随后是生产阶段。在生长阶段,向床中灌注含血清的培养基,使细胞生长至饱和状态;在生产阶段,使用无血清的培养基进行培养,用两种重组病毒感染细胞。分泌表达的蛋白质,从培养液中收集并纯化。发现比产量为2-3μμg蛋白质/ 10〜6个细胞,体积产量为约10mg / 50g载体。

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