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药物 - 牛血清白蛋白结合模型中分子间相互作用及药物竞争结合的电子顺磁共振研究

EPR studies of intermolecular interactions and competitive binding of drugs in a drug-BSA binding model.

作者信息

Akdogan Y, Emrullahoglu M, Tatlidil D, Ucuncu M, Cakan-Akdogan G

机构信息

Materials Science and Engineering Department, I[combining dot above]zmir Institute of Technology, 35430 Urla, I[combining dot above]zmir, Turkey.

Department of Chemistry, I[combining dot above]zmir Institute of Technology, 35430 Urla, I[combining dot above]zmir, Turkey.

出版信息

Phys Chem Chem Phys. 2016 Aug 10;18(32):22531-9. doi: 10.1039/c6cp04137j.

Abstract

Understanding intermolecular interactions between drugs and proteins is very important in drug delivery studies. Here, we studied different binding interactions between salicylic acid and bovine serum albumin (BSA) using electron paramagnetic resonance (EPR) spectroscopy. Salicylic acid was labeled with a stable radical (spin label) in order to monitor its mobilized (free) or immobilized (bound to BSA) states. In addition to spin labeled salicylic acid (SL-salicylic acid), its derivatives including SL-benzoic acid, SL-phenol, SL-benzene, SL-cyclohexane and SL-hexane were synthesized to reveal the effects of various drug binding interactions. EPR results of these SL-molecules showed that hydrophobic interaction is the main driving force. Whereas each of the two functional groups (-COOH and -OH) on the benzene ring has a minute but detectable effect on the drug-protein complex formation. In order to investigate the effect of electrostatic interaction on drug binding, cationic BSA (cBSA) was synthesized, altering the negative net charge of BSA to positive. The salicylic acid loading capacity of cBSA is significantly higher compared to that of BSA, indicating the importance of electrostatic interaction in drug binding. Moreover, the competitive binding properties of salicylic acid, ibuprofen and aspirin to BSA were studied. The combined EPR results of SL-salicylic acid/ibuprofen and SL-ibuprofen/salicylic acid showed that ibuprofen is able to replace up to ∼83% of bound SL-salicylic acid, and salicylic acid can replace only ∼14% of the bound SL-ibuprofen. This indicates that ∼97% of all salicylic acid and ibuprofen binding sites are shared. On the other hand, aspirin replaces only ∼23% of bound SL-salicylic acid, and salicylic acid replaces ∼50% of bound SL-aspirin, indicating that ∼73% of all salicylic acid and aspirin binding sites are shared. These results show that EPR spectroscopy in combination with the spin labeling technique is a very powerful method to investigate drug binding dynamics in detail.

摘要

在药物递送研究中,了解药物与蛋白质之间的分子间相互作用非常重要。在此,我们使用电子顺磁共振(EPR)光谱研究了水杨酸与牛血清白蛋白(BSA)之间不同的结合相互作用。为了监测水杨酸的移动(游离)或固定(与BSA结合)状态,用水杨酸标记了一个稳定自由基(自旋标记)。除了自旋标记的水杨酸(SL - 水杨酸)外,还合成了其衍生物,包括SL - 苯甲酸、SL - 苯酚、SL - 苯、SL - 环己烷和SL - 己烷,以揭示各种药物结合相互作用的影响。这些SL - 分子的EPR结果表明,疏水相互作用是主要驱动力。而苯环上的两个官能团(-COOH和-OH)中的每一个对药物 - 蛋白质复合物的形成都有微小但可检测的影响。为了研究静电相互作用对药物结合的影响,合成了阳离子BSA(cBSA),将BSA的负净电荷改变为正电荷。与BSA相比,cBSA的水杨酸负载能力显著更高,表明静电相互作用在药物结合中的重要性。此外,还研究了水杨酸、布洛芬和阿司匹林与BSA的竞争性结合特性。SL - 水杨酸/布洛芬和SL - 布洛芬/水杨酸的联合EPR结果表明,布洛芬能够取代高达约83%的结合态SL - 水杨酸,而水杨酸只能取代约14%的结合态SL - 布洛芬。这表明所有水杨酸和布洛芬结合位点的约97%是共享的。另一方面,阿司匹林只能取代约23%的结合态SL - 水杨酸,而水杨酸能取代约50%的结合态SL - 阿司匹林,表明所有水杨酸和阿司匹林结合位点的约73%是共享的。这些结果表明,EPR光谱与自旋标记技术相结合是一种非常强大的方法,可用于详细研究药物结合动力学。

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