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高亲和力人 Fc 特异性单克隆抗体,用于捕获动力学分析抗体-抗原相互作用。

High affinity human Fc specific monoclonal antibodies for capture kinetic analyses of antibody-antigen interactions.

机构信息

Therapeutic Proteins, Regeneron Pharmaceuticals, USA.

Therapeutic Proteins, Regeneron Pharmaceuticals, USA.

出版信息

Anal Biochem. 2022 Mar 1;640:114455. doi: 10.1016/j.ab.2021.114455. Epub 2021 Nov 14.

Abstract

We recently demonstrated that capturing human monoclonal antibodies (hmAbs) using high affinity anti-human Fc (AHC) antibodies allows reliable characterization of antibody-antigen interactions. Here, we characterized six human Fc specific mouse monoclonal antibodies (mAbs) and compared their binding profiles with three previously characterized goat AHC polyclonal antibodies (pAbs), exhibiting properties of a good capture reagent. All six mouse AHC mAbs specifically bound with high affinity to the Fc region of hIgG1, hIgG2, hIgG4 and to 43 different hIgG variants, containing substitutions and/or mutations in the hinge and/or Fc region, that have been reported to exhibit modified antibody effector function and/or pharmacokinetics. Biacore sensor surfaces individually derivatized with mouse AHC mAbs exhibited >2.5-fold higher hIgG binding capacity compared to the three goat AHC pAb surfaces and reproducibly captured hIgG over 300 capture-regeneration cycles. The results of the capture kinetic analyses performed on 31 antibody-antigen interactions using surfaces derivatized with either of the two highest affinity AHC mAbs (REGN7942 or REGN7943) were in concordance with those performed using goat AHC pAb surfaces. Our data demonstrate that AHC mAbs such as REGN7942 and REGN7943 that have properties superior than the three goat AHC pAbs are highly valuable research reagents, especially to perform capture kinetic analyses of antibody-antigen interactions on optical biosensors.

摘要

我们最近证明,使用高亲和力抗人 Fc(AHC)抗体捕获人源单克隆抗体(hmAbs)可以可靠地表征抗体-抗原相互作用。在这里,我们对六种人源 Fc 特异性小鼠单克隆抗体(mAbs)进行了表征,并将其结合谱与三种之前表征的山羊 AHC 多克隆抗体(pAbs)进行了比较,这些抗体表现出良好的捕获试剂特性。所有六种小鼠 AHC mAbs 均特异性地以高亲和力结合 hIgG1、hIgG2、hIgG4 的 Fc 区域以及 43 种不同的 hIgG 变体,这些变体在铰链和/或 Fc 区域中含有已报道的修饰抗体效应功能和/或药代动力学的取代和/或突变。单独用小鼠 AHC mAbs 衍生的 Biacore 传感器表面与三种山羊 AHC pAb 表面相比,hIgG 的结合能力高 2.5 倍以上,并且可重复性地捕获 hIgG 超过 300 次捕获-再生循环。使用两种亲和力最高的 AHC mAbs(REGN7942 或 REGN7943)衍生的表面进行的 31 种抗体-抗原相互作用的捕获动力学分析的结果与使用山羊 AHC pAb 表面进行的结果一致。我们的数据表明,REGN7942 和 REGN7943 等 AHC mAbs 具有优于三种山羊 AHC pAb 的特性,是非常有价值的研究试剂,特别是在光学生物传感器上进行抗体-抗原相互作用的捕获动力学分析。

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