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首页> 外文期刊>SIAM journal on applied dynamical systems >An integrated robotic system for high-throughput process development of cell and virus culture conditions: Application to biosafety level 2 live virus vaccines
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An integrated robotic system for high-throughput process development of cell and virus culture conditions: Application to biosafety level 2 live virus vaccines

机译:一种用于细胞和病毒培养条件的高通量过程开发的综合机器人系统:生物安全2级活病毒疫苗的应用

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Live virus vaccines are a critical component of worldwide vaccination strategy for reducing disease burden but often require complex biological production processes that are sensitive to many different factors, both known and often unknown. Prior application of high-throughput process development (HTPD) approaches to these processes has been hampered by a complex design space, low-throughput analytics, and challenges inherent in biosafety level 2 containment and asepsis in laboratory automation. In 2013, we initiated a project with HighRes Biosolutions to design and install an integrated high-throughput screening platform to enable HTPD for biosafety level 2 upstream process development studies. The system incorporates the necessary tools for performing cell and virus culture studies in microplates, as well as advanced analytical capabilities necessary for assessment of cell phenotype, product quality, and antigen yield. To date, we have applied this system to screen optimal media formulations and viral production conditions in support of two viral vaccine programs, with phenotypic assays performed as an integrated part of the workflow. This case study illustrates the power of HTPD in addressing large-scale biological screening challenges by narrowing a vast design space and identifying parameter interactions in live virus production processes.
机译:Live病毒疫苗是全球疫苗接种策略的关键组成部分,用于减少疾病负担,但通常需要对许多不同因素敏感的复杂生物生产过程,既已知和往往未知。通过复杂的设计空间,低通量分析以及生物安全2级遏制和实验室自动化中固有的挑战,对这些进程的方法进行了妨碍了这些过程的方法。 2013年,我们启动了一个项目,具有高核生物化的生物化,可以设计和安装集成的高吞吐量筛选平台,以使HTPD用于生物安全2级上游流程开发研究。该系统包括用于进行微孔板中的细胞和病毒培养研究的必要工具,以及评估细胞表型,产品质量和抗原产量所需的先进分析能力。迄今为止,我们已将该系统应用于筛选最佳培养基配方和病毒生产条件,以支持两种病毒疫苗程序,作为工作流程的集成部分进行表型测定。本案例研究说明了HTPD在通过缩小巨大的设计空间来解决大规模生物筛选挑战,并识别实时病毒生产过程中的参数交互来解决大规模的生物筛选挑战。

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