Deura Koichi, Sakama Akihiro, Moriwaki Yasuhiro, Citterio Daniel, Hiruta Yuki
Department of Applied Chemistry, Faculty of Science and Technology, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama, Kanagawa 223-8522, Japan.
Division of Basic Biological Sciences, Faculty of Pharmacy, Keio University, 1-5-30 Shibakoen, Minato-ku, Tokyo 105-8512, Japan.
ACS Appl Mater Interfaces. 2024 Dec 11;16(49):67468-67476. doi: 10.1021/acsami.4c16861. Epub 2024 Nov 26.
The process of antibody purification using Fc affinity ligands such as protein A, G, and L faces several challenges including high cost, low stability, and loss of antibody activity due to harsh elution conditions. Here, we describe a chromatographic purification of antibodies utilizing a pH-responsive mixed-charge polymer that mimics the IgG-binding peptide (Z34C) derived from the B domain of protein A. The protein A mimetic resins were prepared by modifying the surface of a TOYOPEARL, methacrylate resin with a polymer that mimics the amino acid sequence of Z34C and the functions of histidine and acidic and neutral amino acids using histamine methacrylamide (HisMA), methacrylic acid, and neutral monomers. The therapeutic monoclonal antibody (mAb), rituximab, was retained on the column at pH 7 and eluted under mildly acidic conditions at pH 5 using a protein A mimetic resin (HisMA20-EEMA) optimized for antibody interaction. The injected antibodies were selectively captured on the column by hydrophobic and electrostatic interactions with the protein A mimetic polymer under neutral conditions and eluted by electrostatic repulsion under acidic conditions. The HisMA20-EEMA column successfully purified mAbs from mixtures with BSA, mouse ascites fluid, and hybridoma cell culture supernatant. In addition, the HisMA20-EEMA column consistently achieved 90% antibody recovery in 100 consecutive purifications from cell culture supernatant. The antibody purification method presented in this study is low cost, highly durable, easy to synthesize, and allows for mild elution conditions. The results demonstrate that the approach of mimicking IgG-binding peptides with mixed-charge polymers is useful for the development of column packing materials for antibody purification.
使用蛋白A、G和L等Fc亲和配体进行抗体纯化的过程面临着几个挑战,包括成本高、稳定性低以及由于苛刻的洗脱条件导致抗体活性丧失。在此,我们描述了一种利用pH响应性混合电荷聚合物的抗体色谱纯化方法,该聚合物模拟源自蛋白A B结构域的IgG结合肽(Z34C)。通过用一种聚合物修饰TOYOPEARL甲基丙烯酸酯树脂的表面来制备模拟蛋白A的树脂,该聚合物使用组胺甲基丙烯酰胺(HisMA)、甲基丙烯酸和中性单体模拟Z34C的氨基酸序列以及组氨酸、酸性和中性氨基酸的功能。治疗性单克隆抗体(mAb)利妥昔单抗在pH 7时保留在柱上,并使用针对抗体相互作用优化的模拟蛋白A树脂(HisMA20-EEMA)在pH 5的温和酸性条件下洗脱。注入的抗体在中性条件下通过与模拟蛋白A聚合物的疏水和静电相互作用被选择性地捕获在柱上,并在酸性条件下通过静电排斥洗脱。HisMA20-EEMA柱成功地从与牛血清白蛋白、小鼠腹水液和杂交瘤细胞培养上清液的混合物中纯化了单克隆抗体。此外,HisMA20-EEMA柱在从细胞培养上清液连续100次纯化中始终实现了90%的抗体回收率。本研究中提出的抗体纯化方法成本低、耐用性高、易于合成,并允许温和的洗脱条件。结果表明,用混合电荷聚合物模拟IgG结合肽的方法对于开发用于抗体纯化的柱填充材料是有用的。