Hamishehkar Hamed, Hosseini Soheila, Naseri Abdolhossein, Safarnejad Azam, Rasoulzadeh Farzaneh
Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Biotechnology Research Center and School of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran.
Bioimpacts. 2016;6(3):125-133. doi: 10.15171/bi.2016.19. Epub 2016 Sep 28.
The drug-plasma protein interaction is a fundamental issue in guessing and checking the serious drug side effects related with other drugs. The purpose of this research was to study the interaction of cephalexin with bovine serum albumin (BSA) and displacement reaction using site probes. The interaction mechanism concerning cephalexin (CPL) with BSA was investigated using various spectroscopic methods and molecular modeling method. The binding sites number, n, apparent binding constant, K, and thermodynamic parameters, ΔG, ΔH, and ΔS were considered at different temperatures. To evaluate the experimental results, molecular docking modeling was calculated. The distance, r=1.156 nm between BSA and CPL were found in accordance with the Forster theory of non-radiation energy transfer (FRET) indicating energy transfer occurs between BSA and CPL. According to the binding parameters and ΔG= negative values and ΔS= 28.275 j molK, a static quenching process is effective in the CPL-BSA interaction spontaneously. ΔG for the CPL-BSA complex obtained from the docking simulation is -28.99 kj mol, which is close to experimental ΔG of binding, -21.349 kj mol that indicates a good agreement between the results of docking methods and experimental data. The outcomes of spectroscopic methods revealed that the conformation of BSA changed during drug-BSA interaction. The results of FRET propose that CPL quenches the fluorescence of BSA by static quenching and FRET. The displacement study showed that phenylbutazon and ketoprofen displaced CPL, indicating that its binding site on albumin is site I and Gentamicin cannot be displaced from the binding site of CPL. All results of molecular docking method agreed with the results of experimental data.
药物与血浆蛋白的相互作用是推测和检查与其他药物相关的严重药物副作用的一个基本问题。本研究的目的是研究头孢氨苄与牛血清白蛋白(BSA)的相互作用以及使用位点探针的置换反应。采用多种光谱方法和分子建模方法研究了头孢氨苄(CPL)与BSA的相互作用机制。在不同温度下考虑了结合位点数n、表观结合常数K和热力学参数ΔG、ΔH和ΔS。为了评估实验结果,计算了分子对接模型。根据福斯特非辐射能量转移(FRET)理论,发现BSA与CPL之间的距离r = 1.156 nm,表明能量在BSA和CPL之间发生转移。根据结合参数以及ΔG为负值和ΔS = 28.275 J molK,静态猝灭过程在CPL - BSA相互作用中自发有效。从对接模拟获得的CPL - BSA复合物的ΔG为 - 28.99 kJ mol,接近结合实验ΔG - 21.349 kJ mol,这表明对接方法的结果与实验数据之间有良好的一致性。光谱方法的结果表明,在药物 - BSA相互作用过程中BSA的构象发生了变化。FRET的结果表明,CPL通过静态猝灭和FRET猝灭了BSA的荧光。置换研究表明,保泰松和酮洛芬置换了CPL,表明其在白蛋白上的结合位点是位点I,庆大霉素不能从CPL的结合位点被置换。分子对接方法的所有结果与实验数据结果一致。