Department of Chemistry, University of Panama, Panama City, Panama.
Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE, USA.
Methods. 2018 Aug 15;146:39-45. doi: 10.1016/j.ymeth.2018.03.013. Epub 2018 Mar 31.
Protein G can be a valuable binding agent for antibodies and immunoglobulins in methods such as immunosensors, chromatographic-based immunoassays, and immunoaffinity chromatography. This report used the method of peak decay analysis along with frontal analysis and zonal elution studies to characterize the binding, elution and regeneration properties of affinity microcolumns that contained immobilized protein G. Frontal analysis was employed with rabbit immunoglobulin G (IgG) to characterize the binding capacity of these affinity microcolumns. Zonal elution experiments looking at the retained peaks for small injections of labeled rabbit IgG were used to optimize the column regeneration conditions. Peak decay analysis was then used to look at the effects of flow rate and elution pH on the release of several types of IgG from the protein G microcolumns. This approach made it possible to obtain detailed information on the use and behavior of such columns, as could be used in future work to optimize the capture or analysis of IgG and antibodies by such devices. The same approach and tools that were used in this report could also be adapted for work with affinity columns that make use of other supports, binding agents or targets.
蛋白 G 可以作为抗体和免疫球蛋白的有效结合剂,用于免疫传感器、基于色谱的免疫分析和免疫亲和层析等方法。本报告使用峰衰减分析方法结合前沿分析和区域洗脱研究,对含有固定化蛋白 G 的亲和微柱的结合、洗脱和再生特性进行了表征。采用前沿分析方法,用兔免疫球蛋白 G(IgG)对这些亲和微柱的结合容量进行了表征。通过对标记兔 IgG 的小注射保留峰进行区域洗脱实验,优化了柱再生条件。然后使用峰衰减分析研究了流速和洗脱 pH 值对几种 IgG 从蛋白 G 微柱中释放的影响。这种方法可以获得有关此类柱子使用和行为的详细信息,可用于未来的工作中,通过这些设备优化 IgG 和抗体的捕获或分析。本报告中使用的相同方法和工具也可以适应使用其他载体、结合剂或靶标进行的亲和柱研究。