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Theoretical Study on Intermolecular Interactions in Complexes of Cyclodextrins with Bile Acids: DFT and Ab Initio Fragment Molecular Orbital Calculations

机译:胆汁酸复合物分子间相互作用的理论研究:DFT和AB初始分子分子轨道计算

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摘要

Inclusion complexes composed of cyclodextrin (CD) and bile acids have potential applications in drug delivery systems and chiral separation technology. In the present study, intermolecular interactions in 1:1 complexes of alpha-, beta-, and gamma-CDs with cholic acid (CA) or deoxycholic acid were analyzed both in the gas phase and in aqueous phase with density functional theory (B97-D and M06-2X) with the standard 6-31G(d) basis set together with the B3LYP functional for comparison. The association energies depend on the distance between CD and the guest as well as on the relative position and orientation of the guest in the cavity. The most stable binding mode for each complex is consistent with that proposed by NMR experiments. A pair interaction energy decomposition analysis based on ab initio fragment molecular orbital calculations was performed at the FMO-MP2/cc-pVDZ level of theory. It reveals that the beta-CD/CA has more negative host-guest interaction energy than the gamma-CD/CA and that dispersion and electrostatic interactions contribute comparably to the stabilization of the complexes. Several hydrogen bonds between CD and the guest also stabilize the complex.
机译:包含环糊精(CD)和胆汁酸组成的包合物具有药物递送系统和手性分离技术的潜在应用。在本研究中,在气相和密度函数理论中分析1:1α,β-和γ-Cds的分子间相互作用,其中含有胆酸(Ca)或脱氧胆酸在水相中(B97- D和M06-2X)标准6-31G(d)基础与B3LYP功能一起进行比较。关联能量取决于CD和客人之间的距离以及腔内客人的相对位置和方向。每个复合物的最稳定的结合模式与NMR实验提出的一致。基于AB初始分子分子轨道计算的对相互作用能量分解分析在FMO-MP2 / CC-PVDZ水平的理论下进行。它揭示了β-CD / CA具有比γ-CD / CA更多的负宿主 - 客体相互作用能量,并且该分散和静电相互作用与稳定性贡献相当贡献。 CD和客人之间的几个氢键也稳定了复杂的。

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    Ochanomizu Univ Dept Chem &

    Biochem Grad Sch Humanities &

    Sci Bunkyo Ku Tokyo 1128610 Japan;

    Ochanomizu Univ Dept Chem Fac Sci Bunkyo Ku Tokyo 1128610 Japan;

    Ochanomizu Univ Dept Chem &

    Biochem Grad Sch Humanities &

    Sci Bunkyo Ku Tokyo 1128610 Japan;

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  • 正文语种 eng
  • 中图分类 化学;
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