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Multidimensional High-Throughput Screening of Displacers

机译:置换器的多维高通量筛选

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A multidimensional, batch high-throughput screening (MD-HTS) protocol was developed to investigate the effects of various parameters on the selectivity of ionexchange protein displacement systems. A variety of molecules were screened, and the results were employed to provided insights into the influence of displacer chemistry and concentration, resin chemistry, and mobile-phase salt counterion on the efficacy and selectivity of these nonlinear chromatographic systems. These results open up the possibility of tailoring the selectivity of displacement separations by choosing appropriate combinations of operating conditions using the MD-HTS technique. The screens were also employed for the identification of displacers and conditions for the separation of a challenging protein mixture by selective displacement chromatography. Column displacements were carried out with potential lead compounds identified from the MD-HTS screens, and the results confirmed that selective displacement could indeed be achieved for this model mixture. Furthermore, the results indicated that this approach is particularly useful when the order of elution is not changed, but the inherent selectivity is increased in the presence of the displacer. The results presented in this paper demonstrate the utility of the MD-HTS technique for rapid method development in protein ion-exchange displacement chromatography.
机译:开发了多维,批量高通量筛选(MD-HTS)方案,以研究各种参数对离子交换蛋白置换系统选择性的影响。筛选了各种分子,并使用结果提供了有关置换剂化学和浓度,树脂化学以及流动相盐平衡离子对这些非线性色谱系统的功效和选择性的影响的见解。这些结果为通过使用MD-HTS技术选择合适的操作条件组合,提供了调整位移分离选择性的可能性。该筛还用于鉴定置换剂和通过选择性置换色谱法分离具有挑战性的蛋白质混合物的条件。使用从MD-HTS筛查中鉴定出的潜在先导化合物对色谱柱进行了置换,结果证实该模型混合物确实可以实现选择性置换。此外,结果表明,当不改变洗脱顺序,但是在存在置换剂的情况下固有的选择性增加时,该方法特别有用。本文介绍的结果证明了MD-HTS技术在蛋白质离子交换置换色谱中快速开发方法的实用性。

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