Department of Biochemistry, Faculty of Life Sciences, A.M. University, Aligarh, UP 202002, India.
Department of Chemistry, Faculty of Science, A.M. University, Aligarh, U.P. 202002, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2021 Mar 15;249:119296. doi: 10.1016/j.saa.2020.119296. Epub 2020 Dec 10.
Insight into the mechanistic binding of bovine serum albumin (BSA) with doxofylline can layout pivotal enlightenment with relevance to pharmacokinetics and pharmacodynamics properties. Herein, many spectroscopic techniques and computational methods had been employed to interpret the structural and binding dynamics of BSA-doxofylline interaction. Doxofylline quenched the intrinsic fluorescence of BSA by static quenching. The stoichiometry and the binding constant of the BSA-doxofylline complex were 1:1 and in the order of 10 M. It was also concluded that the binding process was spontaneous and exothermic, primarily based on the thermodynamic study. Circular dichroism and three-dimensional excitation-emission matrix fluorescence results concluded pronounced conformational and microenvironmental changes in BSA structure on binding with doxofylline. The influence of metal ions and vitamins on the binding affinity of the BSA-doxofylline system were also explored. The in vitro findings were further supported by in silico analysis. With a score value of -6.25 kcal/mol, molecular docking showed strong interactions. Molecular dynamics simulation interpretation also suggested the stable binding with lower deviation in the values of RMSD and RMSF obtained by uninterrupted long simulation run. These studies will propose the optimum potency of distribution of the doxofylline into the bloodstream for asthma treatment.
深入了解牛血清白蛋白(BSA)与茶碱的作用机制,可以为药代动力学和药效动力学性质提供重要启示。在此,采用了多种光谱技术和计算方法来解释 BSA-茶碱相互作用的结构和结合动力学。茶碱通过静态猝灭猝灭了 BSA 的内源性荧光。BSA-茶碱复合物的化学计量比和结合常数为 1:1,数量级为 10 M。基于热力学研究,还得出了结合过程是自发的和放热的结论。圆二色性和三维激发-发射矩阵荧光结果表明,BSA 结构在与茶碱结合时发生了明显的构象和微环境变化。还探讨了金属离子和维生素对 BSA-茶碱体系结合亲和力的影响。体外研究结果得到了计算机模拟分析的进一步支持。分子对接显示,得分值为-6.25 kcal/mol,具有很强的相互作用。分子动力学模拟解释也表明,在不间断的长时间模拟运行中,通过较低的 RMSD 和 RMSF 值获得了稳定的结合。这些研究将为茶碱在治疗哮喘时在血液中最佳分布的效力提供依据。