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灌流细胞培养中有效过滤长度降低,筛系数提高。

Improved sieving coefficient in perfusion cell culture with reduced effective filtration length of hollow fibers.

机构信息

BioProcess Technologies & Engineering, BioPharmaceuticals Development, R&D, AstraZeneca, Gaithersburg, Maryland, USA.

出版信息

Biotechnol Prog. 2024 Sep-Oct;40(5):e3472. doi: 10.1002/btpr.3472. Epub 2024 Apr 24.

DOI:10.1002/btpr.3472
PMID:38655754
Abstract

The hollow fiber filter is the primary cell-retention device used in high-density perfusion cell culture and often used in an alternating tangential flow (ATF) configuration. The limited commercially available diaphragm pumps for ATF prevent utilization of vertical space when scaling beyond 500 L. Stacking hollow fiber filters coupled with viscous cell culture imposes vacuum pressure exceeding facility capabilities. Additionally, the longer filter assembly increases the hold-up volume and exceeds the diaphragm pump's fluid exchange capacity. The conventional tangential flow filtration (TFF) configuration circumvents this issue by exchanging culture from the bioreactor and cell-retention device in a unidirectional recirculation loop; however, the increased filter length when scaled up exacerbates the TFF's inherent issue with product retention from Starling flow. Stacking commercially available 20 cm TFF filters to make up the similar single-module length TFF used for the platform 3 and 50 L perfusion process at 41.5 and 65 cm, respectively, attempts to reduce fouling caused by Starling flow. The permeate of a single-module filter is partitioned into short independent segments through serially stacked filters, each harvested separately. By partitioning the permeate, the sieving coefficient increased for both 3 and 50 L scales. Reduction of Starling flow was confirmed with lower total hydraulic membrane resistance throughout the culture. This work demonstrates a method for increasing sieving coefficient and filter capacity by stacking TFF filters with independent permeate streams.

摘要

中空纤维过滤器是高密度灌注细胞培养中主要的细胞保留装置,通常采用交替切向流(ATF)配置。有限的市售 ATF 隔膜泵在超过 500L 时无法利用垂直空间。堆叠中空纤维过滤器和粘性细胞培养会施加超过设施能力的真空压力。此外,较长的过滤器组件会增加持液量并超过隔膜泵的流体交换能力。传统的切向流过滤(TFF)配置通过在单向再循环回路中从生物反应器和细胞保留装置交换培养物来解决此问题;然而,当放大时,增加的过滤器长度会加剧 TFF 中由于 Starling 流而导致产品保留的固有问题。堆叠市售的 20cm TFF 过滤器以构成类似于用于平台 3 和 50L 灌注工艺的单个模块长度 TFF,分别为 41.5 和 65cm,试图减少 Starling 流引起的堵塞。通过串联堆叠的过滤器将单个模块过滤器的渗透物分成短的独立段,每个段分别收获。通过对渗透物进行分区,3L 和 50L 规模的筛系数都增加了。整个培养过程中总液压膜阻力的降低证实了 Starling 流的减少。这项工作展示了一种通过堆叠具有独立渗透流的 TFF 过滤器来增加筛系数和过滤器容量的方法。

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