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用于连续病毒灭活的新型模块化可扩展培养箱的设计、构建与优化。

Design, construction, and optimization of a novel, modular, and scalable incubation chamber for continuous viral inactivation.

作者信息

Orozco Raquel, Godfrey Scott, Coffman Jon, Amarikwa Linus, Parker Stephanie, Hernandez Lindsay, Wachuku Chinenye, Mai Ben, Song Brian, Hoskatti Shashidhar, Asong Jinkeng, Shamlou Parviz, Bardliving Cameron, Fiadeiro Marcus

机构信息

Boehringer Ingelheim, Process Science Department, Fremont, CA, 94555.

Boehringer Ingelheim, Global Innovation and Technology Department, Fremont, CA, 94555.

出版信息

Biotechnol Prog. 2017 Jul;33(4):954-965. doi: 10.1002/btpr.2442. Epub 2017 Mar 17.

Abstract

We designed, built or 3D printed, and screened tubular reactors that minimize axial dispersion to serve as incubation chambers for continuous virus inactivation of biological products. Empirical residence time distribution data were used to derive each tubular design's volume equivalent to a theoretical plate (VETP) values at a various process flow rates. One design, the Jig in a Box (JIB), yielded the lowest VETP, indicating optimal radial mixing and minimal axial dispersion. A minimum residence time (MRT) approach was employed, where the MRT is the minimum time the product spends in the tubular reactor. This incubation time is typically 60 minutes in a batch process. We provide recommendations for combinations of flow rates and device dimensions for operation of the JIB connected in series that will meet a 60-min MRT. The results show that under a wide range of flow rates and corresponding volumes, it takes 75 ± 3 min for 99% of the product to exit the reactor while meeting the 60-min MRT criterion and fulfilling the constraint of keeping a differential pressure drop under 5 psi. Under these conditions, the VETP increases slightly from 3 to 5 mL though the number of theoretical plates stays constant at about 1326 ± 88. We also demonstrated that the final design volume was only 6% ± 1% larger than the ideal plug flow volume. Using such a device would enable continuous viral inactivation in a truly continuous process or in the effluent of a batch chromatography column. Viral inactivation studies would be required to validate such a design. © 2017 American Institute of Chemical Engineers Biotechnol. Prog., 33:954-965, 2017.

摘要

我们设计、制造或3D打印并筛选了轴向扩散最小化的管式反应器,用作生物制品连续病毒灭活的孵育室。利用经验停留时间分布数据得出各管式设计在不同工艺流速下的理论板当量体积(VETP)值。一种设计,即盒中夹具(JIB),具有最低的VETP,表明其径向混合最佳且轴向扩散最小。采用了最短停留时间(MRT)方法,其中MRT是产品在管式反应器中花费的最短时间。在间歇过程中,该孵育时间通常为60分钟。我们针对串联连接的JIB运行的流速和设备尺寸组合提供了建议,以满足60分钟的MRT。结果表明,在广泛的流速和相应体积范围内,99%的产品在满足60分钟MRT标准并满足将压差降保持在5 psi以下的约束条件下,需要75±3分钟才能流出反应器。在这些条件下,VETP从3 mL略有增加至5 mL,尽管理论板数保持在约1326±88不变。我们还证明,最终设计体积仅比理想平推流体积大6%±1%。使用这样的设备能够在真正的连续过程或间歇色谱柱的流出物中实现连续病毒灭活。需要进行病毒灭活研究来验证这种设计。© 2017美国化学工程师学会生物技术进展,33:954 - 965,2017。

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