Henley W Hampton, He Yan, Mellors J Scott, Batz Nicholas G, Ramsey J Michael, Jorgenson James W
The University of North Carolina at Chapel Hill, United States.
Pfizer, United States.
J Chromatogr A. 2017 Nov 10;1523:72-79. doi: 10.1016/j.chroma.2017.07.059. Epub 2017 Jul 29.
Ultra-high voltage capillary electrophoresis with high electric field strength has been applied to the separation of the charge variants, drug conjugates, and disulfide isomers of monoclonal antibodies. Samples composed of many closely related species are difficult to resolve and quantify using traditional analytical instrumentation. High performance instrumentation can often save considerable time and effort otherwise spent on extensive method development. Ideally, the resolution obtained for a given CE buffer system scales with the square root of the applied voltage. Currently available commercial CE instrumentation is limited to an applied voltage of approximately 30kV and a maximum electric field strength of 1kV/cm due to design limitations. The instrumentation described here is capable of safely applying potentials of at least 120kV with electric field strengths over 2000V/cm, potentially doubling the resolution of the best conventional CE buffer/capillary systems while decreasing analysis time in some applications. Separations of these complex mixtures using this new instrumentation demonstrate the potential of ultra-high voltage CE to identify the presence of previously unresolved components and to reduce analysis time for complex mixtures of antibody variants and drug conjugates.
具有高电场强度的超高压毛细管电泳已应用于单克隆抗体的电荷变体、药物缀合物和二硫键异构体的分离。由许多密切相关的物种组成的样品使用传统分析仪器难以分离和定量。高性能仪器通常可以节省大量原本花费在广泛方法开发上的时间和精力。理想情况下,给定CE缓冲系统获得的分辨率与施加电压的平方根成正比。由于设计限制,目前可用的商业CE仪器的施加电压限制在约30kV,最大电场强度为1kV/cm。这里描述的仪器能够安全地施加至少120kV的电位,电场强度超过2000V/cm,在某些应用中可能使最佳传统CE缓冲液/毛细管系统的分辨率提高一倍,同时减少分析时间。使用这种新仪器对这些复杂混合物进行分离,证明了超高压CE在识别先前未分离成分的存在以及减少抗体变体和药物缀合物复杂混合物分析时间方面的潜力。