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用于蛋白A捕获过程控制的连续Fc检测

Continuous Fc detection for protein A capture process control.

作者信息

Patil Ujwal, Crum Mary, Vu Binh, Wasden Katherine, Kourentzi Katerina, Willson Richard C

机构信息

Biology and Biochemistry, University of Houston, Houston, USA.

Chemical and Biomolecular Engineering, University of Houston, Houston, TX, USA.

出版信息

Biosens Bioelectron. 2020 Oct 1;165:112327. doi: 10.1016/j.bios.2020.112327. Epub 2020 May 29.

Abstract

Purification of therapeutic monoclonal antibodies usually involves a protein A affinity capture step. Because column breakthrough of antibody in complex, UV-absorbing culture fluid cannot be readily detected in real time, processes are designed so conservatively that column capacity is usually underutilized, wasting adsorbent and reducing productivity. We have developed a fluorescence-based monitoring technology which allows real-time mAb monitoring and used it to detect IgG in column breakthrough. The column effluent was continuously contacted with soluble fluorescein-labeled Fc-binding ligands to produce an immediately-detectable shift in both fluorescence polarization and intensity. To extend the upper limit of inlet flow rate, a 14:1 split-ratio flow splitter was tested with an inlet flow of 15 mL/min (0.9 L/h), producing a sampling stream at 1 mL/min while still enabling continuous detection functionality. We observed significant shifts in fluorescence intensity in CHO cell culture fluid spiked with human IgG, and detected 0.02-0.1 g/L human IgG in protein A column breakthrough at a flow velocity of 80 cm/h. The increase in fluorescence intensity upon 0.1% breakthrough of an 1 g/L feed was used to trigger column switching using Python-enabled two-way communication with the standard Unicorn OPC process control protocol. The technology allows rapid, continuous and reliable monitoring of IgG in a flowing process stream, without elaborate sample preparation.

摘要

治疗性单克隆抗体的纯化通常涉及蛋白A亲和捕获步骤。由于复杂的、具有紫外吸收的培养液中抗体的柱穿透难以实时检测,因此工艺设计得很保守,以至于柱容量通常未得到充分利用,造成吸附剂浪费并降低了生产率。我们开发了一种基于荧光的监测技术,可实现单克隆抗体的实时监测,并用于检测柱穿透中的IgG。使柱流出物与可溶性荧光素标记的Fc结合配体持续接触,从而在荧光偏振和强度上产生即时可检测的变化。为了扩展入口流速的上限,测试了一种分流比为14:1的分流器,入口流速为15 mL/min(0.9 L/h),产生1 mL/min的采样流,同时仍能实现连续检测功能。我们观察到添加了人IgG的CHO细胞培养液的荧光强度有显著变化,并在流速为80 cm/h时检测到蛋白A柱穿透中0.02 - 0.1 g/L的人IgG。利用与标准Unicorn OPC过程控制协议的Python双向通信,以1 g/L进料0.1%穿透时荧光强度的增加来触发柱切换。该技术能够在不进行复杂样品制备的情况下,对流动过程中的IgG进行快速、连续且可靠的监测。

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