Structural Determination of Antioxidant and Anticancer Flavonoid Rutin in Solution through DFT Calculations of 1H NMR Chemical Shifts

被引:28
|
作者
De Souza, Leonardo A. [1 ]
Da Silva, Haroldo C. [1 ]
De Almeida, Wagner B. [1 ]
机构
[1] Univ Fed Fluminense, Dept Quim Inorgan, Inst Quim, Outeiro Sao Joao Batista S-N,Campus Valonguinho, BR-24020141 Niteroi, RJ, Brazil
来源
CHEMISTRYOPEN | 2018年 / 7卷 / 11期
关键词
H-1 NMR spectroscopy; density functional calculations; flavonoids; molecular conformation; rutin; INCLUSION COMPLEX; DENSITY FUNCTIONALS; CISPLATIN; THERMOCHEMISTRY; IMPLEMENTATION; KAEMPFEROL; DISPERSION; MECHANISM; PEEL; M06;
D O I
10.1002/open.201800209
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
As the knowledge of the predominant molecular structure of antioxidant and anticancer flavonoid rutin in solution is very important for understanding the mechanism of action, a quantum chemical investigation of plausible rutin structures including solvent effects is of relevance. In this work, DFT calculations were performed to find possible minimum energy structures for the rutin molecule. H-1 NMR chemical shift DFT calculations were carried out in DMSO solution using the polarizable continuum model (PCM) to simulate the solvent effect. Analysis of the experimental and theoretical H-1 NMR chemical shift profiles offers a powerful fingerprint criterion to determine the predominant molecular structure in solution. Therefore, our aim is to find the best match between experimental (in DMSO-d) and theoretical (PCM-DMSO) H-1 NMR spectrum profiles. Among 34 optimized structures located on the potential energy surface, we found that structure 32, with a B-ring deviated 30 degrees from a planar configuration (geometry usually assumed for polyphenols), showed an almost perfect agreement with experimental the H-1 NMR pattern when compared to the corresponding fully optimized planar geometry. This structure is also predicted as the global minimum based on room-temperature Gibbs free energy calculations in solution and, therefore, should be experimentally observed. This is new and valuable structural information regarding structure-activity relationship studies, and such information is hard to obtain by experimentalists without the aid of the X-ray diffraction technique.
引用
收藏
页码:902 / 913
页数:12
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