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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Theoretical and Experimental Study of Inclusion Complexes Formed by Isoniazid and Modified β-Cyclodextrins: ~1H NMR Structural Determination and Antibacterial Activity Evaluation
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Theoretical and Experimental Study of Inclusion Complexes Formed by Isoniazid and Modified β-Cyclodextrins: ~1H NMR Structural Determination and Antibacterial Activity Evaluation

机译:异烟肼与修饰的β-环糊精形成包合物的理论和实验研究:〜1H NMR结构测定和抗菌活性评价

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摘要

Me-β-cyclodextrin (Me-βCD) and HP-β-cyclodextrin (HP-βCD) inclusion complexes with isoniazid (INH) were prepared with the aim of modulating the physicochemical and biopharmaceutical properties of the guest molecule, a well-known antituberculosis drug. The architectures of the complexes were initially proposed according to NMR data Job plot and ROESY followed by density functional theory (DFT) calculations of ~1H NMR spectra using the PBE1PBE functional and 6-31G(d,p) basis set, including the water solvent effect with the polarizable continuum model (PCM), for various inclusion modes, providing support for the experimental proposal. An analysis of the ~1H NMR chemical shift values for the isoniazid (H6',8' and H5',9') and cyclodextrins (H3,5) C~1H hydrogens, which are known to be very adequately described by the DFT methodology, revealed them to be extremely useful, promptly confirming the inclusion complex formation. An included mode which describes Me-βCD partially enclosing the hydrazide group of the INH is predicted as the most favorable supramolecular structure that can be used to explain the physicochemical properties of the encapsulated drug. Antibacterial activity was also evaluated, and the results indicated the inclusion complexes are a potential strategy for tuberculosis treatment.
机译:制备具有异烟肼(INH)的Me-β-环糊精(Me-βCD)和HP-β-环糊精(HP-βCD)包合物,以调节客体分子(一种著名的抗结核病)的理化和生物药学特性药品。最初根据NMR数据Job plot和ROESY提出复合物的体系结构,然后使用PBE1PBE官能团和6-31G(d,p)基础集(包括水溶剂)对〜1H NMR光谱进行密度泛函理论(DFT)计算可极化连续体模型(PCM)对各种包含模式的影响,为实验方案提供了支持。对异烟肼(H6',8'和H5',9')和环糊精(H3,5)C〜1H氢的〜1H NMR化学位移值的分析,众所周知,DFT方法已充分描述了这些氢,表明它们非常有用,并迅速确认了包合物的形成。包含模式(描述Me-βCD部分包围INH的酰肼基)被预测为最有利的超分子结构,可用于解释所封装药物的理化性质。还评估了抗菌活性,结果表明包合物是结核病治疗的潜在策略。

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