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运用固定化人血清白蛋白的超快速亲和色谱法分析药物与蛋白的结合。

Analysis of drug-protein binding by ultrafast affinity chromatography using immobilized human serum albumin.

机构信息

Chemistry Department, University of Nebraska, Lincoln, NE 68588-0304, USA.

出版信息

J Chromatogr A. 2010 Apr 23;1217(17):2796-803. doi: 10.1016/j.chroma.2010.02.026. Epub 2010 Feb 23.

Abstract

Human serum albumin (HSA) was explored for use as a stationary phase and ligand in affinity microcolumns for the ultrafast extraction of free drug fractions and the use of this information for the analysis of drug-protein binding. Warfarin, imipramine, and ibuprofen were used as model analytes in this study. It was found that greater than 95% extraction of all these drugs could be achieved in as little as 250 ms on HSA microcolumns. The retained drug fraction was then eluted from the same column under isocratic conditions, giving elution in less than 40 s when working at 4.5 mL/min. The chromatographic behavior of this system gave a good fit with that predicted by computer simulations based on a reversible, saturable model for the binding of an injected drug with immobilized HSA. The free fractions measured by this method were found to be comparable to those determined by ultrafiltration, and equilibrium constants estimated by this approach gave good agreement with literature values. Advantages of this method include its speed and the relatively low cost of microcolumns that contain HSA. The ability of HSA to bind many types of drugs also creates the possibility of using the same affinity microcolumn to study and measure the free fractions for a variety of pharmaceutical agents. These properties make this technique appealing for use in drug-binding studies and in the high-throughput screening of new drug candidates.

摘要

人血清白蛋白(HSA)被探索用作亲和微柱的固定相和配体,用于超快提取游离药物分数,并利用这些信息分析药物-蛋白结合。华法林、丙咪嗪和布洛芬在本研究中用作模型分析物。研究发现,在 HSA 微柱上,所有这些药物的提取率都可以在 250ms 内达到 95%以上。然后在等度条件下从同一柱上洗脱保留的药物部分,当以 4.5mL/min 的速度工作时,洗脱时间不到 40s。该系统的色谱行为与基于注射药物与固定化 HSA 结合的可逆、饱和模型的计算机模拟预测非常吻合。通过这种方法测量的游离分数与超滤法测定的游离分数相当,通过该方法估计的平衡常数与文献值吻合较好。该方法的优点包括速度快和含有 HSA 的微柱成本相对较低。HSA 能够结合许多类型的药物,这也为使用相同的亲和微柱研究和测量各种药物的游离分数创造了可能性。这些特性使该技术在药物结合研究和新药物候选物的高通量筛选中具有吸引力。

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