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Titanocene / cyclodextrin supramolecular systems: a theoretical approach

机译:钛茂/环糊精超分子体系:理论方法

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Background Recently, various metallocenes were synthesized and analyzed by biological activity point of view (such as antiproliferative properties): ruthenocenes, cobaltoceniums, titanocenes, zirconocenes, vanadocenes, niobocenes, molibdocenes etc. Two main disadvantages of metallocenes are the poor hydrosolubility and the hydrolytic instability. These problems could be resolved in two ways: synthetically modifying the structure or finding new formulations with enhanced properties. The aqueous solubility of metallocenes with cytostatic activities could be enhanced by molecular encapsulation in cyclodextrins, as well as the hydrolytic instability of these compounds could be reduced. Results This study presents a theoretical approach on the nanoencapsulation of a series of titanocenes with cytotoxic activity in α-, β-, and γ-cyclodextrin. The HyperChem 5.11 package was used for building and molecular modelling of titanocene and cyclodextrin structures, as well as for titanocene/cyclodextrin complex optimization. For titanocene/cyclodextrin complex optimization experiments, the titanocene and cyclodextrin structures in minimal energy conformations were set up at various distances and positions between molecules (molecular mechanics functionality, MM+). The best interaction between titanocene structures and cyclodextrins was obtained in the case of β- and γ-cyclodextrin, having the hydrophobic moieties oriented to the secondary face of cyclodextrin. The hydrophobicity of titanocenes (logP) correlate with the titanocene-cyclodextrin interaction parameters, especially with the titanocene-cyclodextrin interaction energy; the compatible geometry and the interaction energy denote that the titanocene/β- and γ-cyclodextrin complex can be achieved. Valuable quantitative structure-activity relationships (QSARs) were also obtained in the titanocene class by using the same logP as the main parameter for the in vitro cytotoxic activity against HeLa, K562, and Fem-x cell lines. Conclusions According to our theoretical study, the titanocene/cyclodextrin inclusion compounds can be obtained (high interaction energy; the encapsulation is energetically favourable). Further, the most hydrophobic compounds are better encapsulated in β- and γ-cyclodextrin molecules and are more stable (from energetically point of view) in comparison with α-cyclodextrin case. This study suggests that the titanocene / β- and γ-cyclodextrin complexes (or synthetically modified cyclodextrins with higher water solubility) could be experimentally synthesized and could have enhanced cytotoxic activity and even lower toxicity.
机译:背景技术近来,从生物活性的观点(例如抗增殖性质)出发,合成并分析了各种茂金属:钌茂金属,钴ce,钛茂金属,锆茂,钒钒,铌茂,钼烯等。茂金属的两个主要缺点是差的水溶性和水解不稳定性。 。这些问题可以通过两种方式解决:综合修改结构或寻找具有增强性能的新配方。具有细胞抑制活性的茂金属的水溶性可以通过分子包封在环糊精中来增强,并且可以降低这些化合物的水解不稳定性。结果本研究为一系列在细胞中具有α-,β-和γ-环糊精活性的钛钛烷纳米包封提供了一种理论方法。 HyperChem 5.11软件包用于建立钛茂和环糊精结构的分子模型,以及用于钛茂/环糊精复合物的优化。对于钛茂/环糊精复合物优化实验,在分子之间的不同距离和位置(分子力学功能,MM +)建立了具有最小能量构象的钛茂和环糊精结构。在β-和γ-环糊精的情况下,获得了钛茂金属结构与环糊精之间的最佳相互作用,其中疏水部分定向于环糊精的次级表面。钛钛烯的疏水性(logP)与钛茂与环糊精的相互作用参数有关,特别是与钛茂与环糊精的相互作用能有关。相容的几何形状和相互作用能表示可以实现钛茂/β-和γ-环糊精复合物。通过使用相同的logP作为针对HeLa,K562和Fem-x细胞系的体外细胞毒活性的主要参数,在钛茂类中也获得了宝贵的定量构效关系(QSAR)。结论根据我们的理论研究,可获得钛茂/环糊精包合物(高相互作用能;在能量上有利于封装)。此外,与α-环糊精的情况相比,最疏水的化合物更好地封装在β-和γ-环糊精分子中,并且更稳定(从能量的观点来看)。这项研究表明,可以通过实验合成钛茂/β-和γ-环糊精复合物(或具有更高水溶性的合成修饰的环糊精),并具有增强的细胞毒活性,甚至更低的毒性。

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