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首页> 外文期刊>Biotechnology and Bioengineering >Development of a platform process for adenovirus purification that removes human set and nucleolin and provides high purity vector for gene delivery
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Development of a platform process for adenovirus purification that removes human set and nucleolin and provides high purity vector for gene delivery

机译:腺病毒纯化的平台方法的开发,该过程可去除人和核仁素并提供高纯度的载体用于基因传递

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The manufacturing of virus occurs at a modest scale in comparison to many therapeutic proteins mainly because a gene therapy dose is typically only μg of vector. Although modest in scale the generation of high purity virus is challenging due to low viral expression levels and the difficulties in adequately characterizing such a large and complex molecule. A 100L bioreactor might produce only 100mg of virus that must be separated from host and process impurities that are typically greater by several orders of magnitude. Furthermore, in the later purification stages the main milieu component is often virus at low concentration (μg/mL) which may non-specifically adsorb to purification surfaces resulting in a lowered virus recovery. This study describes our approach to develop a scalable, manufacturable robust process for an Adenovirus (Ad) gene therapy vector. A number of analytical tools were developed to guide the purification design. During process development, two human proteins, SET and nucleolin, were identified in viral preparations. To our knowledge, this is the first time that SET and nucleolin have been described in Ad. In this report we detail a process for their removal and the robust removal of all process, product and host cell impurities.
机译:与许多治疗性蛋白质相比,病毒的生产规模不大,主要是因为基因治疗剂量通常仅为载体的微克。尽管规模不大,但由于病毒表达水平低以及难以充分表征这种大而复杂的分子,高纯度病毒的产生仍具有挑战性。 100L生物反应器可能仅产生100mg病毒,必须将其与宿主分离,并处理通常大于几个数量级的杂质。此外,在随后的纯化阶段,主要环境成分通常是低浓度(μg/ mL)的病毒,可能会非特异性地吸附到纯化表面,从而导致病毒回收率降低。这项研究描述了我们为腺病毒(Ad)基因治疗载体开发可扩展,可制造的稳定过程的方法。开发了许多分析工具来指导纯化设计。在工艺开发过程中,在病毒制剂中鉴定出两种人类蛋白质,SET和核仁素。据我们所知,这是首次在Ad中描述SET和核仁素。在此报告中,我们详细介绍了去除它们的过程以及所有过程,产物和宿主细胞杂质的有效去除方法。

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