Hapten-Branched Polyethylenimine as a New Antigen Affinity Ligand to Purify Antibodies with High Efficiency and Specificity

聚乙烯亚胺 多克隆抗体 半抗原 亲和层析 抗体 色谱法 琼脂糖 检出限 抗原 配体(生物化学) 一级和二级抗体 免疫分析 材料科学 化学 生物化学 生物 免疫学 受体 转染 基因
作者
Xiangning Han,Hong Lin,Limin Cao,Xiangfeng Chen,Luefeng Wang,Hongwei Zheng,Ziang Zhang,Tushar Ramesh Pavase,Sai Wang,Xun Sun,Jianxin Sui
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:12 (52): 58191-58200 被引量:15
标识
DOI:10.1021/acsami.0c15586
摘要

Purification of antibodies has become a critical factor in antibody production. A high-purity specific antibody against antigens, especially small molecules, seems to be difficult to obtain, even with the help of a protein A affinity column, which is a conventional and broadly used ligand for the separation of antibody and non-antibody proteins. Therefore, it is urgent to develop a cheap, simple, efficient, and stable method to separate the specific antibody from other antibodies. In this study, to improve the sensitivity and accuracy of immunoassay results, enrofloxacin (ENR) was grafted onto polyethylenimine (PEI) by the abundant amino groups and then the whole ligand (ENR–PEI) was conjugated to CNBr–Sepharose 4B to prepare the affinity column for the purification of the specific antibody against ENR from polyclonal antibodies. Scanning electron microscopy and Fourier transform infrared spectroscopy verification showed that Sepharose 4B was successfully modified by ENR–PEI with excellent uniformity. The capacity of the prepared column could reach to 6.15 mg of specific antibody with high purity per milliliter resin due to the high coupling ratio (49.3:1) of ENR on PEI, and the IC50 value of the antibody after purification was 47.58 ng/mL with a lowest limit of detection (IC10) of 1.099 ng/mL—18 times lower than those of the antibody purified through the protein A column. All the results showed that this new kind of resin could be used as the potential ligand in the purification of the trace-specific antibody against antigens in complex mixtures with high efficiency and specificity.

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