MAbs. 2014 Jan-Feb;6(1):197-203. doi: 10.4161/mabs.27126.
Composite antibody mixtures designed to combat diseases present a new, rapidly emerging technology in the field of biopharmaceuticals. The combination of multiple antibodies can lead to increased effector response and limit the effect of escape variants that can propagate the disease. However, parallel development of analytical technologies is required to provide fast, thorough, accurate, and robust characterization of these mixtures. Here, we evaluate the utility of native mass spectrometry on an Orbitrap platform with high mass resolving power to characterize composite mixtures of up to 15 separate antibodies. With this technique, unambiguous identification of each antibody in the mixtures was achieved. Mass measurements of the intact antibodies varied 7 ppm on average, allowing highly reproducible identification and quantitation of each compound in these complex mixtures. We show that with the high mass-resolving power and robustness of this technology, high-resolution native mass spectrometry can be used efficiently even for batch-to batch characterization.
用于治疗疾病的复合抗体混合物是生物制药领域一种新的、迅速出现的技术。多种抗体的组合可以提高效应器的反应,并限制可以传播疾病的逃逸变体的影响。然而,需要并行开发分析技术,以便对这些混合物进行快速、彻底、准确和稳健的特性描述。在这里,我们评估了具有高质量分辨率的轨道阱平台上的纳升电喷雾电离(nanoESI)-高分辨质谱(HRMS)在分析多达 15 种不同抗体的复合混合物中的应用。使用该技术,混合物中每种抗体都可以得到明确的鉴定。完整抗体的质量测量值平均变化 7 ppm,允许对这些复杂混合物中的每种化合物进行高度可重复的鉴定和定量。我们表明,即使对于批间分析,该技术的高质量分辨率和稳健性也可高效地使用高分辨纳升电喷雾电离-高分辨质谱进行分析。