Boesch Austin W, Brown Eric P, Cheng Hao D, Ofori Maame Ofua, Normandin Erica, Nigrovic Peter A, Alter Galit, Ackerman Margaret E
Thayer School of Engineering, Dartmouth College, Hanover, NH USA.
Molecular and Cellular Biology Program, Dartmouth College, Hanover, NH USA.
MAbs. 2014 Jul-Aug;6(4):915-27. doi: 10.4161/mabs.28808.
Because the variable ability of the antibody constant (Fc) domain to recruit innate immune effector cells and complement is a major factor in antibody activity in vivo, convenient means of assessing these binding interactions is of high relevance to the development of enhanced antibody therapeutics, and to understanding the protective or pathogenic antibody response to infection, vaccination, and self. Here, we describe a highly parallel microsphere assay to rapidly assess the ability of antibodies to bind to a suite of antibody receptors. Fc and glycan binding proteins such as FcγR and lectins were conjugated to coded microspheres and the ability of antibodies to interact with these receptors was quantified. We demonstrate qualitative and quantitative assessment of binding preferences and affinities across IgG subclasses, Fc domain point mutants, and antibodies with variant glycosylation. This method can serve as a rapid proxy for biophysical methods that require substantial sample quantities, high-end instrumentation, and serial analysis across multiple binding interactions, thereby offering a useful means to characterize monoclonal antibodies, clinical antibody samples, and antibody mimics, or alternatively, to investigate the binding preferences of candidate Fc receptors.
由于抗体恒定区(Fc)招募天然免疫效应细胞和补体的能力具有变异性,这是抗体在体内发挥活性的主要因素,因此评估这些结合相互作用的便捷方法对于开发增强型抗体疗法以及理解针对感染、疫苗接种和自身的保护性或致病性抗体反应具有高度相关性。在此,我们描述了一种高度平行的微球检测方法,用于快速评估抗体与一系列抗体受体结合的能力。将Fc和聚糖结合蛋白(如FcγR和凝集素)偶联到编码微球上,并对抗体与这些受体相互作用的能力进行定量。我们展示了对IgG亚类、Fc结构域点突变体以及具有可变糖基化的抗体的结合偏好和亲和力进行定性和定量评估。该方法可作为一种快速替代方法,用于替代那些需要大量样品、高端仪器以及对多种结合相互作用进行系列分析的生物物理方法,从而为表征单克隆抗体、临床抗体样品和抗体模拟物提供一种有用的手段,或者用于研究候选Fc受体的结合偏好。