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α-Cyclodextrin dimer complexes of dopamine and levodopa derivatives to assess drug delivery to the central nervous system: ADME and molecular docking studies

机译:多巴胺和左旋多巴衍生物的α-环糊精二聚体复合物用于评估向中枢神经系统的药物递送:ADME和分子对接研究

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摘要

This paper attempts to predict and emphasize molecular interactions of dopamine, levodopa, and their derivatives (Dopimid compounds) containing 2-phenyl-imidazopyridine moiety with the α-cyclodextrin dimer in order to assess and improve drug delivery to the central nervous system. The molecular docking method is used to determine the energetic profiles, hydrogen bond formation, and hydrophobic effect of 14 host–guest complexes. The results show that the “chemical branching” represented by additional ethyl-acetate residue is energetically unfavorable and promotes a conformational shift due to the high root mean square deviation levels. This phenomenon is characterized by a low number of H-bonds and a significant decrease of the host–guest hydrophobic potential surface. Finally, the overall docking procedure presents a powerful rationale for screening and analyzing various sets of promising drug-like chemical compounds in the fields of supramolecular chemistry, molecular sensing, synthetic receptors, and nanobiotechnology.
机译:本文试图预测和强调包含2-苯基-咪唑并吡啶部分的多巴胺,左旋多巴及其衍生物(多皮胺化合物)与α-环糊精二聚体的分子相互作用,以评估和改善向中枢神经系统的药物传递。分子对接方法用于确定14种主体-客体复合物的能量分布,氢键形成和疏水作用。结果表明,由于较高的均方根偏差水平,以附加的乙酸乙酯残基表示的“化学分支”在能量上不利,并促进构象移位。这种现象的特点是氢键数量少,主客体疏水势能面显着降低。最后,整个对接程序为筛选和分析超分子化学,分子传感,合成受体和纳米生物技术领域的各种有前途的类药物化合物提供了有力的依据。

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