Department of Functional Chemistry and Engineering, Kyoto Institute of Technology, 1, Matsugasaki-Hashikami-Cho, Sakyo-ku, Kyoto 606-0951, Japan.
Department of Functional Chemistry and Engineering, Kyoto Institute of Technology, 1, Matsugasaki-Hashikami-Cho, Sakyo-ku, Kyoto 606-0951, Japan.
J Biosci Bioeng. 2022 Sep;134(3):233-239. doi: 10.1016/j.jbiosc.2022.06.002. Epub 2022 Jul 4.
We developed affinity chromatographic resins that immobilized rabbit single-chain Fv antibodies (scFvs). By biopanning using antigen-coupled multilamellar vesicles (Ag-MLVs), 152 types of original scFv clones that specifically bind to human IgG were isolated and identified. Apparent dissociation rate constants, k, of six different candidates were less than 10 s and their dissociation constants, Ks, were ranged from 5.56 × 10 to 4.04 × 10 M. Consequently, the clones, R1-27, R2-18, and R3-26 were further investigated for use in affinity purification of human IgG. Both the clones, R1-27 and R3-26 maintained more than 40% of antigen-binding activities on the surface of affinity resins. Especially, R3-26 had a relatively high alkaline resistance. The direct separation of human IgG from 10% FBS-D-MEM by use of the column with R1-27 achieved 97.2% purity, while the column with R3-26 showed almost 100% recovery. The affinity resins at the densities between 4.32 and 15.19 mg-scFv/cm exhibited maximum binding amount of human IgG, while the highest ligand utilization was achieved by use of the resin at approximately 9 mg-scFv/cm. The resin exhibited 7.69 mg/cm of equilibrium binding capacity (EBC) in affinity chromatography. It was expected that the EBC of affinity resins was strongly dependent on the specific surface area as well as the pore volume of the base resin. Therefore, the strategies to develop affinity ligands will be beneficial for development of on-demand affinity columns with higher affinity/selectivity, chemical resistance, while optimization of pore size and pore volume for scFv-coupled resins will further improve the EBC.
我们开发了固定有兔单链 Fv 抗体 (scFv) 的亲和层析树脂。通过用抗原偶联的多层囊泡 (Ag-MLVs) 进行生物淘选,分离并鉴定了 152 种特异性结合人 IgG 的原始 scFv 克隆。六种不同候选物的表观解离速率常数 k 均小于 10 s,其解离常数 Ks 范围为 5.56×10-74.04×10-7 M。因此,进一步研究了克隆 R1-27、R2-18 和 R3-26 用于亲和纯化人 IgG。两种克隆 R1-27 和 R3-26 在亲和树脂表面均保持超过 40%的抗原结合活性。特别是 R3-26 具有相对较高的碱性耐受性。使用 R1-27 填充的柱子可直接从 10% FBS-D-MEM 中分离人 IgG,纯度达到 97.2%,而使用 R3-26 填充的柱子几乎可达到 100%的回收率。在 4.3215.19 mg-scFv/cm 密度之间的亲和树脂显示出人 IgG 的最大结合量,而使用约 9 mg-scFv/cm 的树脂可实现最高的配体利用率。在亲和层析中,该树脂的平衡结合容量 (EBC) 为 7.69 mg/cm。预计亲和树脂的 EBC 强烈依赖于基质树脂的比表面积和孔体积。因此,开发亲和配体的策略将有利于开发具有更高亲和力/选择性、耐化学性的按需亲和柱,而优化 scFv 偶联树脂的孔径和孔体积将进一步提高 EBC。