Institute of Clinical Chemistry and Laboratory Medicine, Mass Spectrometric Proteomics Group, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Methods Mol Biol. 2021;2178:285-299. doi: 10.1007/978-1-0716-0775-6_19.
In downstream processing, large-scale chromatography plays an important role. For its development, screening experiments followed by pilot-plant chromatography are mandatory steps. Here we describe fast, simple, and inexpensive methods for establishing a preparative chromatography for the separation of complex protein mixtures, based on sample displacement batch chromatography. The methods are demonstrated by anion-exchange chromatography of a human plasma protein fraction (Cohn IV-4), including the screening step and upscaling of the chromatography by a factor of one hundred. The results of the screening experiments and the preparative chromatography are monitored by SDS-PAGE electrophoresis. In summary, we provide a protocol, which should be easily adaptable for the chromatographic large-scale purification of other proteins, in the laboratory as well as in the manufacturing of biopharmaceuticals. These protocols cover the initial piloting steps for establishing a large-scale sample batch chromatography. The results from the piloting steps may also be applied for packed columns for performing simulated-moving-bed (SMB) chromatography rather than batch chromatography.
在下游处理中,大规模的色谱技术起着重要作用。为了发展该技术,筛选实验以及中试工厂规模的色谱实验是强制性的步骤。在此,我们描述了一种快速、简单、廉价的方法,用于基于样品置换批处理色谱法,建立分离复杂蛋白质混合物的制备色谱法。该方法通过人血浆蛋白部分(Cohn IV-4)的阴离子交换色谱进行演示,包括筛选步骤和将色谱法放大 100 倍。筛选实验和制备色谱法的结果通过 SDS-PAGE 电泳进行监测。总之,我们提供了一种方案,该方案应易于适应其他蛋白质的大规模实验室和生物制药生产中的大规模色谱纯化。这些方案涵盖了建立大规模样品批处理色谱的初步试验步骤。这些试验步骤的结果也可应用于用于执行模拟移动床(SMB)色谱法而不是批处理色谱法的填充柱。