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用于哺乳动物悬浮培养灌注的微流控细胞截留装置。

Microfluidic Cell Retention Device for Perfusion of Mammalian Suspension Culture.

机构信息

Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, MA, USA.

H Prentice Consulting LLC, Carlisle, MA, USA.

出版信息

Sci Rep. 2017 Jul 27;7(1):6703. doi: 10.1038/s41598-017-06949-8.

Abstract

Continuous production of biologics, a growing trend in the biopharmaceutical industry, requires a reliable and efficient cell retention device that also maintains cell viability. Current filtration methods, such as tangential flow filtration using hollow-fiber membranes, suffer from membrane fouling, leading to significant reliability and productivity issues such as low cell viability, product retention, and an increased contamination risk associated with filter replacement. We introduce a novel cell retention device based on inertial sorting for perfusion culture of suspended mammalian cells. The device was characterized in terms of cell retention capacity, biocompatibility, scalability, and long-term reliability. This technology was demonstrated using a high concentration (>20 million cells/mL) perfusion culture of an IgG-producing Chinese hamster ovary (CHO) cell line for 18-25 days. The device demonstrated reliable and clog-free cell retention, high IgG recovery (>99%) and cell viability (>97%). Lab-scale perfusion cultures (350 mL) were used to demonstrate the technology, which can be scaled-out with parallel devices to enable larger scale operation. The new cell retention device is thus ideal for rapid perfusion process development in a biomanufacturing workflow.

摘要

连续生产生物制剂是生物制药行业的一个发展趋势,这需要一种可靠且高效的细胞截留装置,同时还要保持细胞活力。目前的过滤方法,如使用中空纤维膜的切向流过滤,存在膜污染问题,这会导致细胞活力、产物截留率降低,以及与更换过滤器相关的污染风险增加等可靠性和生产效率方面的重大问题。我们引入了一种基于惯性分选的新型细胞截留装置,用于悬浮哺乳动物细胞的灌流培养。该装置在细胞截留能力、生物相容性、可扩展性和长期可靠性方面进行了表征。该技术使用高浓度(>2000 万细胞/mL)的 IgG 产生的中国仓鼠卵巢(CHO)细胞系进行了 18-25 天的灌流培养来进行验证。该装置可实现可靠且无堵塞的细胞截留,高 IgG 回收率(>99%)和细胞活力(>97%)。该技术使用 350 毫升的实验室规模灌流培养进行了验证,该技术可以通过并行设备进行扩展,以实现更大规模的操作。因此,新型细胞截留装置非常适合在生物制造工作流程中快速进行灌流工艺开发。

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