Suppr超能文献

连续背景折射率信号校正,以提高 UF/DF 和 SPTFF 运行期间单克隆抗体浓度监测的精度。

Continuous background correction of refractive index signal to improve monoclonal antibody concentration monitoring during UF/DF and SPTFF operations.

机构信息

Lonza Biologics Inc., 101 International Dr, Portsmouth, NH, 03801, USA.

出版信息

Bioprocess Biosyst Eng. 2022 Apr;45(4):647-657. doi: 10.1007/s00449-021-02683-8. Epub 2022 Jan 6.

Abstract

Inline refractive index (RI) has the potential for monitoring protein concentration during final bulk concentration. While useful for monitoring and controlling product concentration, RI is sensitive to the respective background buffer being used for processing. This raises concerns around variations in buffer preparations, and during diafiltration where the buffer background is a mixture of different buffers during exchange. This study evaluated whether the use of a RI probe in the permeate line could facilitate continuous background subtraction (dual RI) and improve concentration monitoring during ultrafiltration/diafiltration and single pass TFF concentration for IgG1 and IgG4 antibodies. The proposed dual RI strategy yielded reductions in % error compared to the use of a single refractive index estimate from the retentate line (6.18% vs 8.63% for IgG4 and 2.65% vs 8.85% for IgG1) during traditional ultrafiltration/diafiltration. The improvement in IgG estimates were best during diafiltration where the continuous background subtraction of the permeate RI-enabled continuous monitoring of antibody material without knowledge of what the background buffer was compared to the use of a single RI estimate (6.47% vs 10.79% for IgG4 and 3.29% vs 19.59% for IgG1). In contrast minimal improvement to accuracy was obtained when using SPTFF as a concentration step. The ability to monitor product concentration changes via the proposed dual RI approach removes the need for complex calibrations, minimal worry about changing buffer backgrounds during diafiltration, and could enable better process control during product concentration in the cGMP manufacture of biologics.

摘要

在线折射率(RI)在最终大规模浓缩过程中具有监测蛋白质浓度的潜力。虽然它对于监测和控制产品浓度很有用,但 RI 对用于处理的相应背景缓冲液很敏感。这引起了对缓冲液制备变化的关注,以及在透析过程中,缓冲液背景是不同缓冲液的混合物,在交换过程中会发生变化。本研究评估了在渗透物管线中使用 RI 探头是否可以促进连续背景扣除(双 RI),并改善 IgG1 和 IgG4 抗体的超滤/透析和单次 TFF 浓缩过程中的浓度监测。与使用截留线上的单一折射率估算值相比,所提出的双 RI 策略降低了 %误差(对于 IgG4 为 6.18% 对 8.63%,对于 IgG1 为 2.65% 对 8.85%)在传统的超滤/透析过程中。在透析过程中,改善 IgG 估算值的效果最佳,因为渗透物 RI 的连续背景扣除使抗体材料能够在不知道背景缓冲液是什么的情况下进行连续监测,与使用单一 RI 估算值相比(对于 IgG4 为 6.47% 对 10.79%,对于 IgG1 为 3.29% 对 19.59%)。相比之下,当使用 SPTFF 作为浓缩步骤时,对准确性的改善很小。通过所提出的双 RI 方法监测产品浓度变化的能力消除了对复杂校准的需求,在透析过程中对缓冲液背景变化的担忧最小化,并可以在生物制品的 cGMP 制造过程中更好地控制产品浓度。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验