Tong Hong-Fei, Lin Dong-Qiang, Chu Wen-Ning, Zhang Qi-Lei, Gao Dong, Wang Rong-Zhu, Yao Shan-Jing
Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, China.
Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, China.
J Chromatogr A. 2016 Jan 15;1429:258-64. doi: 10.1016/j.chroma.2015.12.047. Epub 2015 Dec 21.
Hydrophobic charge-induction chromatography (HCIC) has advantages of high capacity, salt-tolerance and convenient pH-controlled elution. However, the binding specificity might be improved with multimodal molecular interactions. New ligand W-ABI that combining tryptophan and 5-amino-benzimidazole was designed with the concept of mutimodal charge-induction chromatography (MCIC). The indole and benzimidazole groups of the ligand could provide orientated mutimodal binding to target IgG under neutral pH, while the imidazole groups could induce the electrostatic repulsion forces for efficient elution under acidic pH. W-ABI ligand was coupled successfully onto agarose gel, and IgG adsorption behaviors were investigated. High affinity to IgG was found with the saturated adsorption capacity of 70.4 mg/ml at pH 7, and the flow rate of mobile phase showed little impact on the dynamic binding capacity. In addition, efficient elution could be achieved at mild acidic pH with high recovery. Two separation cases (IgG separation from albumin containing feedstock and monoclonal antibody purification from cell culture supernatant) were verified with high purity and recovery. In general, MCIC with the specially-designed ligand is an expanding of HCIC with improved adsorption selectivity, which would be a potential alternative to Protein A-based capture for the cost-effective purification of antibodies.
疏水电荷诱导色谱(HCIC)具有高容量、耐盐性以及pH控制洗脱方便等优点。然而,通过多模式分子相互作用可以提高结合特异性。基于多模式电荷诱导色谱(MCIC)的概念,设计了一种结合色氨酸和5-氨基苯并咪唑的新型配体W-ABI。该配体的吲哚和苯并咪唑基团可在中性pH下为目标IgG提供定向多模式结合,而咪唑基团可在酸性pH下诱导静电排斥力以实现高效洗脱。W-ABI配体成功偶联到琼脂糖凝胶上,并研究了IgG的吸附行为。发现在pH 7时对IgG具有高亲和力,饱和吸附容量为70.4 mg/ml,流动相流速对动态结合容量影响很小。此外,在温和酸性pH下可实现高效洗脱且回收率高。验证了两个分离案例(从含白蛋白的原料中分离IgG以及从细胞培养上清液中纯化单克隆抗体),纯度和回收率均很高。总体而言,具有特殊设计配体的MCIC是对HCIC的扩展,其吸附选择性得到了改善,这将是一种潜在的替代基于蛋白A的捕获方法,用于经济高效地纯化抗体。