Development of a 10 g/L process for a difficult-to-express multispecific antibody format using a holistic process development approach

抗体 效价 单克隆抗体 生物 过程(计算) 细胞培养 计算生物学 计算机科学 免疫学 遗传学 操作系统
作者
Mégane Peltret,Patrick Vetsch,Elodie Farvaque,Romain Mette,Maria Tsachaki,Lionel Duarte,Anaïs Duret,Emilie Vaxelaire,Jana Frank,Benjamin Moritz,Céline Aillerie,Roberto Giovannini,Martin Bertschinger
出处
期刊:Journal of Biotechnology [Elsevier]
卷期号:389: 30-42 被引量:3
标识
DOI:10.1016/j.jbiotec.2024.04.017
摘要

Ichnos has developed a multi-specific antibody platform based on the BEAT® (Bispecific engagement by antibodies based on the T-cell receptor) interface. The increased complexity of the bi- and multi-specific formats generated with this platform makes these molecules difficult-to-express proteins compared to standard monoclonal antibodies (mAbs). This report describes how expression limitations of a bi-specific bi-paratopic BEAT antibody were improved in a holistic approach. An initial investigation allowed identification of a misbalance in the subunits composing the BEAT antibody as the potential root cause. This misbalance was then addressed by a signal peptide optimization, and the overall expression level was increased by the combination of two vector design elements on a single gene vector. Further improvements were made in the selection of cell populations and an upstream (USP) platform process was applied in combination with a cell culture temperature shift. This allowed titer levels of up to 6 g/L to be reached with these difficult-to-express proteins. Furthermore, a high-density seeding process was developed that allowed titers of around 11 g/L for the BEAT antibody, increasing the initial titer by a factor of 10. The approach was successfully applied to a tri-specific antibody with titer levels reaching 10 g/L. In summary, a platform process for difficult-to-express proteins was developed using molecular biology tools, cell line development, upstream process optimization and process intensification.
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