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对影响双特异性抗体稳定性及自缔合聚集体逆转的环境因素的研究。

Investigation on environmental factors contributing to bispecific antibody stability and the reversal of self-associated aggregates.

作者信息

Ingavat Nattha, Dzulkiflie Nuruljannah, Liew Jia Min, Wang Xinhui, Leong Eunice, Loh Han Ping, Ng Say Kong, Yang Yuansheng, Zhang Wei

机构信息

Downstream Processing Group, Bioprocessing Technology Institute, Agency for Science, Technology and Research (A*STAR), Singapore, Singapore.

Animal Cell Bioprocessing Group, Bioprocessing Technology Institute, Agency for Science, Technology and Research (A*STAR), Singapore, Singapore.

出版信息

Bioresour Bioprocess. 2024 Aug 23;11(1):82. doi: 10.1186/s40643-024-00796-y.

Abstract

Bispecific antibodies (bsAbs) hold promises for enhanced therapeutic potential surpassing that of their parental monoclonal antibodies. However, bsAbs pose great challenges in their manufacturing, and one of the common reasons is their susceptibility to aggregation. Building on previous studies demonstrating the functionality and potential manufacturability of Fab-scFv format bsAb, this investigation delved into the impact of environmental factors-such as pH, buffer types, ionic strength, protein concentrations, and temperatures-on its stability and the reversal of its self-associated aggregates. Mildly acidic, low-salt conditions were found optimal, ensuring bsAb stability for 30 days even at elevated temperature of 40 °C. Furthermore, these conditions facilitated the reversal of its self-associated aggregates to monomers during the initial 7-day incubation period. Our findings underscore the robustness and resilience of Fab-scFv format bsAb, further confirming its potential manufacturability despite its current absence as commercial products.

摘要

双特异性抗体(bsAbs)有望展现出超越其亲本单克隆抗体的增强治疗潜力。然而,双特异性抗体在制造过程中面临巨大挑战,其中一个常见原因是它们易于聚集。基于先前证明Fab-scFv格式双特异性抗体的功能和潜在可制造性的研究,本研究深入探讨了环境因素(如pH值、缓冲液类型、离子强度、蛋白质浓度和温度)对其稳定性以及自缔合聚集体逆转的影响。发现轻度酸性、低盐条件是最佳的,即使在40°C的高温下也能确保双特异性抗体稳定30天。此外,这些条件在最初的7天孵育期内促进了其自缔合聚集体向单体的逆转。我们的研究结果强调了Fab-scFv格式双特异性抗体的稳健性和弹性,进一步证实了其尽管目前尚无商业产品但其具有潜在可制造性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6b3/11343937/0f28564ba700/40643_2024_796_Fig1_HTML.jpg

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