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附加双特异性抗体的分子疏水性和结构灵活性对蛋白A色谱的影响。

Effects of molecule hydrophobicity and structural flexibility of appended bispecific antibody on Protein A chromatography.

作者信息

Wang Xinhui, Ingavat Nattha, Liew Jia Min, Dzulkiflie Nuruljannah, Loh Han Ping, Kok Yee Jiun, Bi Xuezhi, Yang Yuansheng, Zhang Wei

机构信息

Downstream Processing, Bioprocessing Technology Institute (BTI), Agency for Science, Technology and Research (A*STAR), 20 Biopolis Way, #06-01 Centros, Singapore 138668, Singapore.

Cell Line Development, Bioprocessing Technology Institute (BTI), Agency for Science, Technology and Research (A*STAR), 20 Biopolis Way, #06-01 Centros, Singapore 138668, Singapore.

出版信息

J Chromatogr A. 2024 Aug 30;1731:465206. doi: 10.1016/j.chroma.2024.465206. Epub 2024 Jul 22.

Abstract

Appended bispecific antibody (aBsAb) with two single chain variable fragments (scFv) linked at the c-terminus of its heavy chains is one of the promising formats in bispecific therapeutics. The presence of hydrophobic and flexible scFv fragments render aBsAb molecules higher molecule hydrophobicity and structural flexibility compared to monoclonal antibody (mAb), thus making its purification more challenging. We set out to investigate how the unique molecular properties of aBsAb affect its performance on Protein A chromatography. We showed that aBsAb has a high propensity for chromatography-induced aggregation due to its high molecule hydrophobicity, and this couldn't be improved by the addition of common chaotropic salts. Moreover, the presence of chaotropic salts, such as arginine hydrochloride (Arg-HCl), retarded aBsAb elution during Protein A chromatography rather than facilitating which was widely observed in mAb Protein A elution. Nevertheless, we were able to overcome the aggregation issue by optimizing elution condition and improved aBsAb purity from 29 % to 93 % in Protein A eluate with a high molecular weight (HMW) species of less than 5 %. We also showed that the high molecular flexibility of aBsAb leads to different hydrodynamic sizes of the aBsAb molecule post Protein A elution, neutralization, and re-acidification, which are pH dependent. This is different from mAbs where their sizes do not change post neutralization even with re-exposure to acid. The above unique observations of aBsAb in Protein A chromatography were clearly explained from the perspectives of its high molecular hydrophobicity and structural flexibility.

摘要

附加双特异性抗体(aBsAb)由两个单链可变片段(scFv)在其重链的C末端连接而成,是双特异性治疗中有前景的形式之一。与单克隆抗体(mAb)相比,疏水且灵活的scFv片段的存在使aBsAb分子具有更高的分子疏水性和结构灵活性,因此其纯化更具挑战性。我们着手研究aBsAb独特的分子特性如何影响其在蛋白A色谱上的性能。我们发现,由于aBsAb具有高分子疏水性,其在色谱过程中极易发生聚集,并且添加常见的离液盐并不能改善这一情况。此外,离液盐(如盐酸精氨酸(Arg-HCl))的存在在蛋白A色谱过程中延迟了aBsAb的洗脱,而不是像在mAb蛋白A洗脱中广泛观察到的那样促进洗脱。尽管如此,我们通过优化洗脱条件克服了聚集问题,并将蛋白A洗脱液中aBsAb的纯度从29%提高到了93%,高分子量(HMW)物种含量低于5%。我们还表明,aBsAb的高分子灵活性导致其在蛋白A洗脱、中和及再酸化后具有不同的流体力学尺寸,这些尺寸取决于pH值。这与mAb不同,mAb即使再次暴露于酸性环境中,其尺寸在中和后也不会改变。从aBsAb的高分子疏水性和结构灵活性的角度清楚地解释了其在蛋白A色谱中的上述独特现象。

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