Institute for Organic Chemistry and Biochemistry, Technische Universität Darmstadt, Darmstadt, Germany; Merck KGaA, PTD, Darmstadt, Germany.
Biotechnol J. 2014 May;9(5):698-701. doi: 10.1002/biot.201400029. Epub 2014 Apr 4.
The use of antigen-binding fragments (Fabs) as biotherapeutic agents is gaining interest and thus requires development of adequate purification strategies aimed at separating Fabs from other proteins. Thus, the feasibility of using a copolymer for separation of Fabs from monoclonal antibodies (mAbs) and fragment constant regions (Fcs) was evaluated, employing a blend of purified solutions of these proteins. The use of a copolymer exerting both hydrophobic as well as anionic properties resulted in high precipitation yields for both the mAb and Fc fragment, even at ionic strength of 150 mM NaCl. On the contrary, Fabs exhibited reduced precipitation yields upon copolymer addition. These observations are attributed to differences in protein physicochemical parameters, allowing mAbs and Fcs to be precipitated via conjoint electrostatic and hydrophobic interactions. In contrast, Fabs were mainly precipitated via electrostatic interactions, being reduced at higher ionic strength. This finding was corroborated by hydrophobicity analysis using 2-p-toluidinonaphthalene-6-sulfonate, showing enhanced hydrophobicity of Fcs compared to mAbs alone, while Fabs exhibited the lowest hydrophobicity. Within the context of increasing demand for Fabs as therapeutic proteins, these results may open up a simpler purification strategy for this protein class, potentially also to be implemented within the context of polymer-driven protein purification during fermentation.
抗原结合片段 (Fab) 作为生物治疗剂的应用越来越受到关注,因此需要开发适当的纯化策略,旨在将 Fab 从其他蛋白质中分离出来。因此,评估了使用共聚物从单克隆抗体 (mAb) 和片段恒定区 (Fc) 中分离 Fab 的可行性,方法是使用这些蛋白质的纯化溶液混合物。使用同时具有疏水性和阴离子特性的共聚物,即使在 150 mM NaCl 的离子强度下,也能获得 mAb 和 Fc 片段的高沉淀产率。相比之下,添加共聚物后 Fab 的沉淀产率降低。这些观察结果归因于蛋白质物理化学参数的差异,允许 mAb 和 Fc 通过联合静电和疏水相互作用沉淀。相比之下,Fab 主要通过静电相互作用沉淀,在较高的离子强度下会减少。使用 2-对甲苯基萘-6-磺酸盐进行疏水性分析证实了这一发现,结果表明 Fc 比单独的 mAb 具有更高的疏水性,而 Fab 的疏水性最低。在对 Fab 作为治疗性蛋白质的需求不断增加的背景下,这些结果可能为该蛋白质类别的更简单的纯化策略开辟了道路,也可能在发酵过程中聚合物驱动的蛋白质纯化的背景下实施。