首页> 外文期刊>Journal of Molecular Liquids >Comparative DFT study of inclusion complexes of thymidine-carborane conjugate with beta-cyclodextrin and heptakis (2,6-O-dimethyl)-beta-cyclodextrin in water
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Comparative DFT study of inclusion complexes of thymidine-carborane conjugate with beta-cyclodextrin and heptakis (2,6-O-dimethyl)-beta-cyclodextrin in water

机译:β-环糊精与β-环糊精与β-环糊精(2,6- O-二甲基) - 环糊精在水中的胸苷 - 碳硼烷缀合物包合物的比较DFT研究

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Carboranes are unusual compounds with unique structural and chemical properties, which play an increasingly important role in the design of new potential pharmaceuticals. One of the noteworthy properties of closocarboranes is their very high hydrophobicity, which can facilitate transport of carborane-containing compounds across biological membranes, but at the same time may limit their therapeutic availability. This problem can be solved by complexing the drug with cyclodextrins. In the present work, properties of thymidine-carborane conjugate (TC) and its ability to form in aqueous solution inclusion complexes with two cyclodextrins: beta-CD and DM-beta-CD, are investigated using the density functional (DFT) method B3LYP-GD2/6-31G (d, p) and the Polarizable Continuum Model (PCM) of water. The most stable structures of the molecules alone TC, DM-beta-CD, as well as of the complexes TC: beta-CD and TC: DM-beta-CD in water, arc presented. It is shown that in aqueous solution TC preferentially adopts a twisted shape, which differs significantly from its crystallographic structure. In the lowest energy complexes with both cyclodextrins, TC is docked in the host molecule via the wider entry point of CD, with the carborane cluster completely submersed in the cyclodextrin cavity. The corresponding complexation energies for TC: beta-CD and TC: DM-beta-CD are very similar, of about -49 kcal/mol, but the formation of TC: DM-beta-CD is thermodynamically more favored. The solvation, interaction and deformation energies, as well as frontier orbitals in the complexes are analyzed in detail. An effect of the complex formation on the IR and NMR spectra of the individual molecules is also presented and discussed. (C) 2020 Elsevier B.V. All rights reserved.
机译:碳钢植物是具有独特结构和化学性质的异常化合物,这在新潜在药物的设计中起着越来越重要的作用。白圆糖烷的值得注意的特性是它们非常高的疏水性,这可以促进跨越生物膜的含碳硼化合物的转运,但同时可以限制其治疗性可用性。通过将药物与环糊精络合来解决这个问题。在本作工作中,使用密度官能团(DFT)方法B3Lyp-研究了胸苷 - 碳硼烷偶联物(Tc)的性质及其在水溶液中形成的能力,其与两个环糊精:β-CD和DM-Beta-Cd进行研究。 GD2 / 6-31G(D,P)和水的可极化连续体模型(PCM)。单独的分子的最稳定的结构TC,DM-BETA-CD以及复合物TC:β-CD和TC:DM-β-CD在水中,呈弧形。结果表明,在水溶液中,TC优先采用扭曲形状,其与其晶体结构显着不同。在具有环糊精的最低能量络合物中,通过较宽的CD的入口点在宿主分子中停靠在宿主分子中,碳硼烷簇完全浸没在环糊精腔中。用于Tc的相应络合能量:β-CD和Tc:DM-Beta-Cd非常相似,约-49kcal / mol,但Tc的形成:DM-Beta-Cd热力学上更有利。详细分析了溶剂化,相互作用和变形能,以及复合物中的前沿轨道。还介绍并讨论了复杂形成对单个分子的IR和NMR光谱的影响。 (c)2020 Elsevier B.v.保留所有权利。

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