Large scale controlled Fab exchange GMP process to prepare bispecific antibodies

大规模控制Fab交换GMP工艺制备双特异性抗体

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作者:Xia Yao #, Mingquan Xie #, Yinyin Ben, Yixiang Zhu, Gaoqiang Yang, Simon Chi Wai Kwong, Zhengliang Zhang, Mark L Chiu

Conclusion

We presented a robust development strategy for the cFAE process that can be used for a larger scale GMP BsAb production.

Methods

The process optimization of a large-scale good manufacturing practice (GMP) cFAE strategy to prepare BsAbs was based on screening the parameters of temperature, reduction, oxidation, and buffer exchange. We include critical quality standards for the reducing agent cysteamine hydrochloride.

Objective

Bispecific antibodies (BsAbs) have demonstrated significant therapeutic impacts for the treatment of a broad spectrum of diseases that include oncology, auto-immune, and infectious diseases. However, the large-scale production of clinical batches of bispecific antibodies still has many challenges that include having low yield, poor stability, and laborious downstream purification processes. To address such challenges, we describe the optimization of the controlled Fab arm exchange (cFAE) process for the efficient generation of BsAbs.

Results

This large-scale production protocol enabled the generation of bispecific antibodies with >90% exchange yield and at >95% purity. The subsequent downstream processing could use typical mAb procedures. Furthermore, we demonstrated that the bispecific generation protocol can be scaled up to ∼60 L reaction scale using parental monoclonal antibodies that were expressed in a 200 L bioreactor.

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