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scFv-IgG 双特异性抗体大小变异体的表征和分析。

Characterization and analysis of scFv-IgG bispecific antibody size variants.

机构信息

a Department of Analytical Sciences , MedImmune , Gaithersburg , USA.

b Department of Purification Process Sciences , MedImmune , Gaithersburg , USA.

出版信息

MAbs. 2018 Nov-Dec;10(8):1236-1247. doi: 10.1080/19420862.2018.1505398. Epub 2018 Sep 20.

Abstract

Bispecific antibodies are an emergent class of biologics that is of increasing interest for therapeutic applications. In one bispecific antibody format, single-chain variable fragments (scFv) are linked to or inserted in different locations of an intact immunoglobulin G (IgG) molecule to confer dual epitope binding. To improve biochemical stability, cysteine residues are often engineered on the heavy- and light-chain regions of the scFv to form an intrachain disulfide bond. Although this disulfide bond often improves stability, it can also introduce unexpected challenges to manufacturing or development. We report size variants that were observed for an appended scFv-IgG bispecific antibody. Structural characterization studies showed that the size variants resulted from the engineered disulfide bond on the scFv, whereby the engineered disulfide was found to be either open or unable to form an intrachain disulfide bond due to cysteinylation or glutathionylation of the cysteines. Furthermore, the scFv engineered cysteines also formed intermolecular disulfide bonds, leading to the formation of highly stable dimers and aggregates. Because both the monomer variants and dimers showed lower bioactivity, they were considered to be product-related impurities that must be monitored and controlled. To this end, we developed and optimized a robust, precise, and accurate high-resolution size-exclusion chromatographic method, using a statistical design-of-experiments methodology.

摘要

双特异性抗体是一类新兴的生物制剂,对于治疗应用越来越受到关注。在一种双特异性抗体形式中,单链可变片段 (scFv) 被连接或插入完整免疫球蛋白 G (IgG) 分子的不同位置,以赋予双重表位结合。为了提高生化稳定性,scFv 的重链和轻链区域经常设计半胱氨酸残基以形成链内二硫键。尽管这种二硫键通常可以提高稳定性,但它也可能给制造或开发带来意想不到的挑战。我们报告了一种附加 scFv-IgG 双特异性抗体中观察到的大小变异体。结构特征研究表明,大小变异体是由 scFv 上的工程化二硫键引起的,工程化二硫键由于半胱氨酸的半胱氨酸化或谷胱甘肽化而发现是打开的或无法形成链内二硫键。此外,scFv 工程化的半胱氨酸还形成了分子间二硫键,导致高度稳定的二聚体和聚集体的形成。由于单体变体和二聚体都表现出较低的生物活性,因此它们被认为是与产品相关的杂质,必须进行监测和控制。为此,我们使用统计实验设计方法开发并优化了一种强大、精确和准确的高分辨率尺寸排阻色谱方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7556/6284595/ef949d5f27d7/kmab-10-08-1505398-g001.jpg

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