Advances in antibody manufacturing using mammalian cells.

K John Morrow
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引用次数: 23

Abstract

In this review, we describe recent advances in antibody processing technology including: (1) development of proprietary cell lines; (2) improved expression systems optimized by selective technologies to boost underperformers; (3) improved protein-free and serum-free culture media; and (4) attention to glycosylation and other post-translational modifications. Advances in computer technology and sophisticated redesign of bioreactors have been major contributors to the dramatic improvements in antibody yields that have been documented in the last decade. Disposable bioreactor components are now widespread, resulting in improved yields, better quality product and lower costs for producers. Downstream innovations include (1) disposable devices for clarification and purification, (2) improved resins and ligands, and (3) new designs of hardware for improved performance. While there are numerous factors contributing to the increased yields that have been obtained, the most sustained of these is the introduction of disposable technologies on both the upstream and the downstream ends of the process. With the continuing introduction of improved computer technology and technological innovation, there is every reason to believe that quality and quantity of antibody products will continue to improve in the coming years, and supply will be adequate to meet the forthcoming needs of the industry.

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利用哺乳动物细胞制造抗体的研究进展。
在这篇综述中,我们描述了抗体处理技术的最新进展,包括:(1)专有细胞系的开发;(2)通过选择性技术优化改进表达系统,提升表现不佳者;(3)改良无蛋白、无血清培养基;(4)注意糖基化和其他翻译后修饰。在过去的十年中,计算机技术的进步和生物反应器的复杂重新设计是抗体产量显著提高的主要原因。一次性生物反应器组件现在广泛使用,从而提高了产量,提高了产品质量,降低了生产者的成本。下游创新包括(1)用于澄清和净化的一次性设备,(2)改进的树脂和配体,以及(3)用于提高性能的新硬件设计。虽然有许多因素促成了产量的增加,但其中最持久的是在该过程的上游和下游两端引入了一次性技术。随着计算机技术的不断改进和技术创新,我们有充分的理由相信抗体产品的质量和数量将在未来几年继续提高,供应将足以满足即将到来的行业需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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