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首页> 外文期刊>Journal of Molecular Liquids >Insights on self-aggregation phenomena of 1-indanone thiosemicarbazones and the formation of inclusion complexes with hydroxypropyl-beta-cyclodextrin by Molecular Dynamics simulations
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Insights on self-aggregation phenomena of 1-indanone thiosemicarbazones and the formation of inclusion complexes with hydroxypropyl-beta-cyclodextrin by Molecular Dynamics simulations

机译:分子动力学模拟对1-茚满酮硫代半咔唑酮自团聚现象及与羟丙基-β-环糊精形成包合物的见解

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摘要

1-Indanone thiosemicarbazones (TSCs) display a broad spectrum of pharmacological activities. However, their extremely poor solubility and self-aggregation tendency in water hurdles the reliable evaluation of the activity in vitro. To overcome these drawbacks, the formation of complexes with different natural and chemically modified cyclodextrins (CDs) has been investigated. Aiming to gain further insight into the molecular mechanisms involved in the interaction of these new chemical entities with CDs, this work investigated for the first time the interaction of two types of 1-indanone TSCs with hydroxyl-propyl-beta-CD (HP beta-CD) by Molecular Dynamics (MD) simulations. Results were in good agreement with the experimental work and revealed the fundamental contribution of the substituents in the 1-indanone aromatic ring not only to the intrinsic aqueous solubility but also more importantly to the self-aggregation and the ability of the TSC to form stable complexes with the CD. In the particular case of the 5,6-dimethoxy-l-indanone derivative, the increase of the solubility in presence of HP(3-CD stems from a considerable decrease of the TSC-TSC intermolecular interactions and the formation of inclusion complexes that are stable for a short time. Then, the high self-aggregation tendency of this TSC destabilizes the complex and leads to the initial TSC insolubilization and subsequent precipitation. (C) 2016 Elsevier B.V. All rights reserved.
机译:1-茚满酮硫代半胱氨酸(TSC)显示出广泛的药理活性。然而,它们在水中的极差的溶解度和自聚集趋势妨碍了体外活性的可靠评估。为了克服这些缺点,已经研究了形成具有不同天然和化学修饰的环糊精(CD)的复合物。为了进一步了解这些新化学实体与CD相互作用所涉及的分子机制,这项工作首次研究了两种类型的1-茚满酮TSC与羟丙基PP-CD(HPβ- CD)的分子动力学(MD)模拟。结果与实验工作很好地吻合,并且揭示了1-茚满酮芳环中取代基的基本贡献不仅对固有的水溶性,而且对更重要的是自聚集和TSC形成稳定络合物的能力。与CD。在5,6-二甲氧基-1-茚满酮衍生物的特殊情况下,在HP(3-CD)存在下溶解度的增加源于TSC-TSC分子间相互作用的显着降低和包合物的形成。 (TS)2016 Elsevier BV版权所有。此TSC的高自聚集趋势使复合物不稳定并导致最初的TSC不溶化和随后的沉淀。

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