Matsuda Ryan, Jobe Donald, Beyersdorf Jared, Hage David S
Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE 68588-0304, USA.
Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE 68588-0304, USA.
J Chromatogr A. 2015 Oct 16;1416:112-20. doi: 10.1016/j.chroma.2015.09.023. Epub 2015 Sep 9.
A method combining on-line immunoextraction microcolumns with high-performance affinity chromatography (HPAC) was developed and tested for use in examining drug-protein interactions with normal or modified proteins. Normal human serum albumin (HSA) and glycated HSA were used as model proteins for this work. High-performance immunoextraction microcolumns with sizes of 1.0-2.0 cm × 2.1mm i.d. and containing anti-HSA polyclonal antibodies were developed and tested for their ability to bind normal HSA or glycated HSA. These microcolumns were able to extract up to 82-93% for either type of protein at 0.05-0.10 mL/min and had a binding capacity of 0.34-0.42 nmol HSA for a 1.0 cm × 2.1mm i.d. microcolumn. The immunoextraction microcolumns and their adsorbed proteins were tested for use in various approaches for drug binding studies. Frontal analysis was used with the adsorbed HSA/glycated HSA to measure the overall affinities of these proteins for the drugs warfarin and gliclazide, giving comparable values to those obtained previously using similar protein preparations that had been covalently immobilized within HPAC columns. Zonal elution competition studies with gliclazide were next performed to examine the specific interactions of this drug at Sudlow sites I and II of the adsorbed proteins. These results were also comparable to those noted in prior work with covalently immobilized samples of normal HSA or glycated HSA. These experiments indicated that drug-protein binding studies can be carried out by using on-line immunoextraction microcolumns with HPAC. The same method could be used in the future with clinical samples and other drugs or proteins of interest in pharmaceutical studies or biomedical research.
开发并测试了一种将在线免疫萃取微柱与高效亲和色谱法(HPAC)相结合的方法,用于研究药物与正常或修饰蛋白质之间的相互作用。正常人血清白蛋白(HSA)和糖化HSA被用作这项研究的模型蛋白。制备了内径为2.1mm、长度为1.0 - 2.0 cm且含有抗HSA多克隆抗体的高效免疫萃取微柱,并测试了它们结合正常HSA或糖化HSA的能力。这些微柱在流速为0.05 - 0.10 mL/min时,对两种类型的蛋白质的萃取率高达82 - 93%,对于内径为1.0 cm×2.1mm的微柱,其结合容量为0.34 - 0.42 nmol HSA。对免疫萃取微柱及其吸附的蛋白质进行了测试,用于药物结合研究的各种方法。采用前沿分析法对吸附的HSA/糖化HSA进行分析,以测量这些蛋白质对华法林和格列齐特的整体亲和力,得到的值与先前使用共价固定在HPAC柱内的类似蛋白质制剂所获得的值相当。接下来进行了格列齐特的区域洗脱竞争研究,以检查该药物在吸附蛋白质的Sudlow位点I和II处的特异性相互作用。这些结果也与先前使用正常HSA或糖化HSA的共价固定样品的研究结果相当。这些实验表明,可以使用带有HPAC的在线免疫萃取微柱进行药物 - 蛋白质结合研究。在未来,相同的方法可用于临床样品以及药物研究或生物医学研究中其他感兴趣的药物或蛋白质。