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Entrapment of Alpha1-Acid Glycoprotein in High-Performance Affinity Columns for Drug-Protein Binding Studies

机译:高效亲和色谱柱中截留的α1-酸性糖蛋白用于药物-蛋白质结合研究

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摘要

A slurry-based method was developed for the entrapment of alpha1-acid glycoprotein (AGP) for use in high-performance affinity chromatography to study drug interactions with this serum protein. Entrapment was achieved based on the physical containment of AGP in hydrazide-activated porous silica supports and by using mildly oxidized glycogen as a capping agent. The conditions needed for this process were examined and optimized. When this type of AGP column was used in binding studies, the association equilibrium constant (Ka) measured by frontal analysis at pH 7.4 and 37°C for carbamazepine with AGP was found to be 1.0 (± 0.5) × 105 M−1, which agreed with a previously reported value of 1.0 (± 0.1) × 105 M−1. Binding studies based on zonal elution were conducted for several other drugs with such columns, giving equilibrium constants that were consistent with literature values. An entrapped AGP column was also used in combination with a column containing entrapped HSA in a screening assay format to compare the binding of various drugs to AGP and HSA. These results also agreed with previous data that have been reported in literature for both of these proteins. The same entrapment method could be extended to other proteins and to the investigation of additional types of drug-protein interactions. Potential applications include the rapid quantitative analysis of biological interactions and the high-throughput screening of drug candidates for their binding to a given protein.
机译:开发了一种基于浆液的方法,用于捕获α1-酸糖蛋白(AGP),用于高效亲和色谱法,以研究药物与该血清蛋白的相互作用。根据酰肼活化的多孔二氧化硅载体中AGP的物理含量并使用轻度氧化的糖原作为封端剂,实现了包封。检查并优化了此过程所需的条件。当将这种类型的AGP色谱柱用于结合研究时,发现卡马西平与pH值在7.4和37°C下通过正面分析测得的具有AGP的卡马西平的缔合平衡常数(Ka)为1.0(±0.5)×10 5 / sup> M -1 ,该值与先前报告的1.0(±0.1)×10 5 M -1 一致。对其他几种使用此类色谱柱的药物进行了基于区域洗脱的结合研究,得出的平衡常数与文献值一致。夹带的AGP色谱柱也可以与含有夹带的HSA的色谱柱结合使用,以筛选分析的形式进行比较,以比较各种药物与AGP和HSA的结合。这些结果也与文献中报道的这两种蛋白质的先前数据相符。相同的包埋方法可以扩展到其他蛋白质,并可以研究其他类型的药物-蛋白质相互作用。潜在的应用包括生物相互作用的快速定量分析和高通量筛选候选药物与给定蛋白质的结合。

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