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TFF 灌注过程中的共流过滤流:将跨流与透膜压力解耦以改善产物筛分。

Co-current filtrate flow in TFF perfusion processes: Decoupling transmembrane pressure from crossflow to improve product sieving.

机构信息

School of Life Science, Institute for Pharma Technology, University of Applied Sciences and Arts Northwestern Switzerland, Muttenz, Switzerland.

Research Division Biochemical Engineering, Institute of Chemical Environmental and Bioscience Engineering, Vienna University of Technology, Vienna, Austria.

出版信息

Biotechnol Bioeng. 2024 Feb;121(2):640-654. doi: 10.1002/bit.28589. Epub 2023 Nov 15.

DOI:10.1002/bit.28589
PMID:37965698
Abstract

Hollow fiber-based membrane filtration has emerged as the dominant technology for cell retention in perfusion processes yet significant challenges in alleviating filter fouling remain unsolved. In this work, the benefits of co-current filtrate flow applied to a tangential flow filtration (TFF) module to reduce or even completely remove Starling recirculation caused by the axial pressure drop within the module was studied by pressure characterization experiments and perfusion cell culture runs. Additionally, a novel concept to achieve alternating Starling flow within unidirectional TFF was investigated. Pressure profiles demonstrated that precise flow control can be achieved with both lab-scale and manufacturing-scale filters. TFF systems with co-current flow showed up to 40% higher product sieving compared to standard TFF. The decoupling of transmembrane pressure from crossflow velocity and filter characteristics in co-current TFF alleviates common challenges for hollow fiber-based systems such as limited crossflow rates and relatively short filter module lengths, both of which are currently used to avoid extensive pressure drop along the filtration module. Therefore, co-current filtrate flow in unidirectional TFF systems represents an interesting and scalable alternative to standard TFF or alternating TFF operation with additional possibilities to control Starling recirculation flow.

摘要

中空纤维膜过滤技术已成为灌注过程中细胞截留的主要技术,但缓解过滤器堵塞的重大挑战仍未得到解决。在这项工作中,通过压力特性实验和灌注细胞培养实验研究了共流滤液应用于切向流过滤(TFF)模块的好处,以减轻甚至完全消除模块内轴向压降引起的Starling 再循环。此外,还研究了一种在单向 TFF 中实现交替 Starling 流的新方法。压力曲线表明,实验室规模和制造规模的过滤器都可以实现精确的流量控制。与标准 TFF 相比,具有共流的 TFF 系统的产品筛分率高达 40%。在共流 TFF 中,跨膜压力与错流速度和过滤器特性解耦,缓解了基于中空纤维的系统的常见挑战,例如有限的错流速度和相对较短的过滤模块长度,这两者目前都用于避免沿过滤模块的压降过大。因此,单向 TFF 系统中的共流滤液是标准 TFF 或交替 TFF 操作的一个有趣且可扩展的替代方案,并有额外的可能来控制 Starling 再循环流量。

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