Wang Li-Fen
Department of Applied Chemistry and Material Science, Fooyin University, Kaohsiung 831, Taiwan, ROC.
J Pharm Biomed Anal. 2009 Oct 15;50(3):392-6. doi: 10.1016/j.jpba.2009.05.027. Epub 2009 May 30.
This study investigated the inclusion complexes of beta-cyclodextrin with pheniramine and its halogenated derivatives chlorpheniramine and brompheniramine both experimentally and theoretically to characterize the effects of a halogenated phenyl ring on the intermolecular interactions. Fourier transform infrared and nuclear magnetic resonance (NMR) experiments provided evidence of the formation of inclusion complexes and NMR were conducted to evaluate the apparent binding constants. The two-layered hybrid ONIOM method, ONIOM(B3LYP/6-31G(d):PM3), was adopted to optimize the geometry. The linear relationships between the calculated and experimental values for frequencies (with a scaling factor of 0.96) and for magnetic properties (with a scaling factor of 1.05) demonstrate that the quantum chemical calculations were consistent with the experimental spectra. Additionally, the calculated binding energies were consistent with the experimental results: the stability order of the complexes and the trend of the binding energy is: brompheniramine>chlorpheniramine>pheniramine; S-enantiomer>R-enantiomer. Natural Bond Orbital analysis further demonstrated three major electronic delocalizations--from the substituent on the phenyl moiety of pheniramine to beta-CD and from beta-CD to the phenyl and amine moieties in pheniramine--which were the dominant intermolecular forces that were responsible for the substantially different binding strengths. Geometrical data and the partial charge distribution obtained by NBO analysis are provided as supplementary data.
本研究通过实验和理论方法研究了β-环糊精与苯海拉明及其卤代衍生物氯苯那敏和溴苯那敏的包合物,以表征卤代苯环对分子间相互作用的影响。傅里叶变换红外光谱和核磁共振(NMR)实验提供了包合物形成的证据,并进行了NMR实验以评估表观结合常数。采用两层杂化ONIOM方法,即ONIOM(B3LYP/6-31G(d):PM3)来优化几何结构。频率(比例因子为0.96)和磁性(比例因子为1.05)的计算值与实验值之间的线性关系表明,量子化学计算结果与实验光谱一致。此外,计算得到的结合能与实验结果一致:配合物的稳定性顺序和结合能趋势为:溴苯那敏>氯苯那敏>苯海拉明;S-对映体>R-对映体。自然键轨道分析进一步证明了三种主要的电子离域作用——从苯海拉明苯部分的取代基到β-环糊精,以及从β-环糊精到苯海拉明中的苯和胺部分——这些是导致结合强度存在显著差异的主要分子间作用力。通过NBO分析获得的几何数据和部分电荷分布作为补充数据提供。