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Measurement of Drug-Protein Dissociation Rates by High-Performance Affinity Chromatography and Peak Profiling

机译:高性能亲和色谱和峰分析法测定药物-蛋白质的解离速率

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The rate at which a drug or other small solute interacts with a protein is important in understanding the biological and pharmacokinetic behavior of these agents. One approach that has been developed for examining these rates involves the use of high-performance affinity chromatography (HPAC) and estimates of band-broadening through peak profiling. Previous work with this method has been based on a comparison of the statistical moments for a retained analyte versus nonretained species at a single, high flow rate to obtain information on stationary phase mass transfer. In this study an alternative approach was created that allows a broad range of flow rates to be used for examining solute-protein dissociation rates. Chromatographic theory was employed to derive equations that could be used with this approach on a single column, as well as with multiple columns to evaluate and correct for the impact of stagnant mobile phase mass transfer. The interaction of L-tryptophan with human serum albumin was used as a model system to test this method. A dissociation rate constant of 2.7 (+-0.2) s~(-1) was obtained by this approach at pH 7.4 and 37 deg C, which was in good agreement with previous values determined by other methods. The techniques described in this report can be applied to other biomolecular systems and should be valuable for the determination of drug-protein dissociation rates.
机译:药物或其他小溶质与蛋白质相互作用的速率对于理解这些试剂的生物学和药代动力学行为很重要。已开发出一种用于检查这些速率的方法,该方法涉及使用高效亲和色谱(HPAC)和通过峰分析进行谱带扩展估计。以前使用此方法的工作是基于在单个高流速下对保留的分析物与非保留的物质的统计矩进行比较,以获得有关固定相传质的信息。在这项研究中,创建了一种替代方法,该方法可将广泛的流速用于检查溶质-蛋白质的解离速率。色谱理论被用来推导可用于这种方法的方程,该方程可用于单根色谱柱以及多根色谱柱,以评估和校正流动相停滞传质的影响。 L-色氨酸与人血清白蛋白的相互作用被用作模型系统来测试该方法。通过这种方法在pH 7.4和37℃下获得的离解速率常数为2.7(+ -0.2)s〜(-1),这与其他方法测定的先前值非常吻合。本报告中描述的技术可以应用于其他生物分子系统,并且对于确定药物-蛋白质的解离速率应该是有价值的。

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