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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Continuous In-Line Virus Inactivation for Next Generation Bioprocessing
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Continuous In-Line Virus Inactivation for Next Generation Bioprocessing

机译:下一代生物处理的连续型病毒失活

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摘要

Viral inactivation plays a critical role in assuring the safety of monoclonal antibody (mAb) therapeutics. Traditional viral inactivation involves large holding tanks in which product is maintained at a target low pH for a defined hold time, typically 30-60 min. The drive toward continuous processing and improved facility utilization has provided motivation for development of a continuous viral inactivation process. To this end, a lab-scale prototype viral inactivation system was designed, built, and characterized. Multiple incubation chamber designs are evaluated to identify the optimal design that enables narrow residence time distributions in continuous flow systems. Extensive analysis is conducted supporting rapid low pH viral inactivation and included evaluations with multiple viruses, a range of pH levels, buffer compositions, mAb concentrations, and temperatures. Multiple test conditions are evaluated using the in-line system and results compared to traditional batch-mode viral inactivation. Comparability in kinetics of virus inactivation suggests equivalency between the two approaches.
机译:病毒失活在确保单克隆抗体(MAB)治疗剂的安全性方面发挥着关键作用。传统的病毒失活涉及大型储罐,其中产品保持在靶低pH的靶含量低至定义的保持时间,通常为30-60分钟。朝着连续加工和改进的设施利用率的驱动提供了用于开发连续病毒失活过程的动机。为此,设计,构建和表征了实验室规模的原型病毒失活体系。评估多个培养室设计以确定在连续流动系统中实现窄停留时间分布的最佳设计。进行广泛的分析支持快速低pH病毒失活,并包括多种病毒的评估,一系列pH水平,缓冲液组合物,MAb浓度和温度。与传统的批量模式病毒失活相比,使用型号系统和结果评估多种测试条件。病毒失活动力学的可比性表明两种方法之间的等效性。

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