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基于 SPR 技术筛选化学微阵列鉴定小分子亲和配体的亲和层析法进行抗体纯化。

Antibody purification by affinity chromatography based on small molecule affinity ligands identified by SPR-based screening of chemical microarrays.

机构信息

Graffinity Pharmaceuticals GmbH, Heidelberg, Germany.

出版信息

J Chromatogr A. 2011 Jul 22;1218(29):4649-59. doi: 10.1016/j.chroma.2011.05.040. Epub 2011 May 18.

Abstract

Libraries of small molecules were searched for Fc-fragment selective binders to a recombinant human antibody ("MDJ8″, IgG(1)-subtype, κ-light chain) via SPR-based screening of chemical microarrays. Identified hit structures were immobilised on NHS-activated Sepharose for the determination of MDJ8 binding and selectivity versus typical proteineous impurities represented by the spend cell culture supernatant. Columns were packed and the most promising ligands further characterized in terms of binding constants, binding kinetics, as well as dynamic and equilibrium binding capacities. The performance of the best ligand, 2A10, was compared to standard Protein A chromatography. Using ligand 2A10 antibody capture from unprocessed cell culture supernatants was possible at similar recovery yield (>90%), purity (>80%), and eluting concentration (approximately 1 g/L) as with Protein A. Affinity constants (K(d)) of 2A10 were an order of magnitude higher than for the Protein A material, but still in the nM-range, while maximum binding capacities and binding kinetics were in the same order of magnitude. Ligand 2A10 was also able to capture a murine monoclonal antibody, again with similar efficiency as Protein A, as well as a number of humanised therapeutic antibodies. Antibody elution from the 2A10 column was possible using the Protein A standard protocol, i.e. 100mM glycine HCl pH 3.0, but also at near physiological pH, when some organic solvent or modifiers were present. Ligand 2A10 thus constitutes a cheaper, more robust alternative to Protein A as possible generic antibody binder. Moreover, the outlined approach to ligand selection could in principle by used to create suitable affinity ligands for other high value biotech products.

摘要

小分子文库通过基于 SPR 的化学微阵列筛选,寻找对重组人抗体(“MDJ8”,IgG(1)-亚型,κ轻链)的 Fc 片段选择性结合物。鉴定出的命中结构被固定在 NHS 激活的琼脂糖上,用于测定 MDJ8 结合物和对代表性蛋白质杂质(如 spend 细胞培养上清液)的选择性。将柱子填充,并根据结合常数、结合动力学以及动态和平衡结合能力进一步表征最有前途的配体。最佳配体 2A10 的性能与标准 Protein A 层析进行了比较。使用配体 2A10 可以从未经处理的细胞培养上清液中捕获抗体,其回收率(>90%)、纯度(>80%)和洗脱浓度(约 1 g/L)与 Protein A 相似。2A10 的亲和力常数(K(d))比 Protein A 材料高一个数量级,但仍在 nM 范围内,而最大结合容量和结合动力学则处于相同数量级。配体 2A10 还能够捕获鼠单克隆抗体,与 Protein A 一样有效,还能够捕获多种人源化治疗性抗体。可以使用 Protein A 标准方案(即 100mM 甘氨酸 HCl pH 3.0)从 2A10 柱洗脱抗体,也可以在存在一些有机溶剂或修饰剂时在接近生理 pH 的条件下洗脱。因此,配体 2A10 是一种比 Protein A 更便宜、更稳健的替代物,可作为通用抗体结合物。此外,所概述的配体选择方法原则上可用于为其他高价值生物技术产品创建合适的亲和配体。

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