Santos S G, Santana J V, Maia F F, Lemos V, Freire V N, Caetano E W S, Cavada B S, Albuquerque E L
Departamento de Física, Universidade Federal do Ceará, Campus do Pici Caixa Postal 6030, 60455-900 Fortaleza, Ceará, Brazil.
J Phys Chem B. 2008 Nov 13;112(45):14267-72. doi: 10.1021/jp8048263. Epub 2008 Oct 22.
Adsorption of ascorbic acid (AsA) on C60 is investigated using classical molecular mechanics and density functional theory (DFT). Classical annealing was performed to explore the space of molecular configurations of ascorbic acid adsorbed on C60, searching for optimal geometries. From the structure with the smallest total energy, 10 initial configurations were prepared by applying rotations of 90 degrees about three orthogonal axes. Each one of these configurations was optimized using DFT (for both LDA and GGA exchange-correlation functionals), and an estimate of their total and adsorption energies was found. Different configurations have minimal adsorption energies (defined here as the total energy of the adsorbate minus the total energy of the separate molecules) from -0.54 to -0.10 eV, with distinct optimal distances between the AsA and C60 centers of mass. According to a Hirshfeld population analysis, AsA is, in general, an acceptor of electrons from C60. Our results demonstrate the feasibility of noncovalent functionalization of C60 with AsA and provide minimal energy values for the several different configurations investigated. These results should be considered in reactions as a possible way to prevent against the oxidative damage and toxicity of C60. The beneficial effects of using AsA-C60 includes its action when administered together with levodopa, against the neurotoxicity generated by levodopa isolated, which opens new strategies for the Parkinson's disease treatment.
采用经典分子力学和密度泛函理论(DFT)研究了抗坏血酸(AsA)在C60上的吸附情况。进行经典退火以探索吸附在C60上的抗坏血酸分子构型空间,寻找最优几何结构。从总能量最小的结构出发,通过绕三个正交轴旋转90度制备了10种初始构型。使用DFT(针对LDA和GGA交换相关泛函)对这些构型中的每一种进行了优化,并得出了它们的总能量和吸附能量估计值。不同构型的最小吸附能量(此处定义为吸附质的总能量减去单独分子的总能量)在-0.54至-0.10 eV之间,AsA与C60质心之间有明显的最佳距离。根据Hirshfeld布居分析,一般来说,AsA是来自C60的电子受体。我们的结果证明了用AsA对C60进行非共价功能化的可行性,并为所研究的几种不同构型提供了最小能量值。在反应中应考虑这些结果,将其作为防止C60氧化损伤和毒性的一种可能方法。使用AsA-C60的有益效果包括其与左旋多巴一起给药时的作用,可对抗单独使用左旋多巴产生的神经毒性,这为帕金森病治疗开辟了新策略。