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Molecular modelling and 1H-NMR: ultimate tools for the investigation of tolbutamide: beta-cyclodextrin and tolbutamide: hydroxypropyl-beta-cyclodextrin complexes

机译:分子模拟和1H-NmR:研究甲苯磺丁脲的最终工具:β-环糊精和甲苯磺丁脲:羟丙基-β-环糊精复合物

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摘要

A structural study of the inclusion compound of tolbutamide (TBM) with beta-cyclodextrin (beta-CD) and hydroxypropyl-beta-cyclodextrin (HP-beta-CD) was attempted by means of 1H-nuclear magnetic resonance (1H-NMR) experiments and computer molecular modelling. To establish the stoichiometry and stability constant of the beta-CD:TBM complex, the continuous variation method was used. The presence of true inclusion complexes between TBM and beta-CD or HP-beta-CD in solution was clearly evidenced by the 1H-NMR technique. Changes in chemical shifts of H-3 and H-5 protons, located inside the CD cavity, associated with variations in the chemical shifts of TBM aromatic protons provided clear evidence of inclusion complexation, suggesting that the phenyl moiety of the drug molecule was included in the hydrophobic cavity of CDs. This view was further supported by the observation of intermolecular NOEs between TBM and beta-CD and by the aid of a molecular modelling program, which established the most probable structure of the complex. The molecular graphic computation confirmed that the minimum energy, positioning TBM relative to beta-CD, occurs when the aromatic ring of TBM is included within the beta-CD cavity by its wider side, leaving the aliphatic chain externally, which is in good agreement with the results of 1H-NMR studies
机译:尝试通过1H核磁共振(1H-NMR)实验对甲苯磺丁酰胺(TBM)与β-环糊精(β-CD)和羟丙基-β-环糊精(HP-β-CD)的包合物进行结构研究和计算机分子建模。为了建立β-CD:TBM复合物的化学计量和稳定性常数,使用了连续变化法。 1H-NMR技术清楚地证明了溶液中TBM和β-CD或HP-β-CD之间存在真正的包合物。位于CD腔内的H-3和H-5质子的化学位移的变化与TBM芳香族质子的化学位移的变化有关,提供了包合络合的清晰证据,表明该药物分子的苯基部分已包含在其中。 CD的疏水腔。观察TBM和β-CD之间的分子间NOE并借助分子建模程序进一步支持了该观点,该程序建立了该复合物最可能的结构。分子图形计算证实,当TBM的芳香环较宽的一侧包含在β-CD腔内,而脂肪族链在外部留下时,则相对于β-CD定位的TBM的最小能量发生,这与1H-NMR研究的结果

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