Kircheva Nikoleta, Dobrev Stefan, Dasheva Lyubima, Koleva Iskra, Nikolova Valya, Angelova Silvia, Dudev Todor
Institute of Optical Materials and Technologies "Acad. J. Malinowski", Bulgarian Academy of Sciences 1113 Sofia Bulgaria
Faculty of Chemistry and Pharmacy, Sofia University "St. Kl. Ohridski" 1164 Sofia Bulgaria
RSC Adv. 2020 Jul 27;10(47):28139-28147. doi: 10.1039/d0ra04387g.
Supramolecular complexes based on classical synthetic macrocyclic host molecules such as cyclodextrins and calixarenes have received much attention recently due to their broad applications as biological and chemical sensors, bioimaging agents, drug delivery carriers, light-emitting materials, Cucurbit[]urils comprise another group of cavitands known for their high affinity for various guest molecules. Nonetheless, some aspects of their coordination chemistry remain enigmatic. Although they are recognized as potential biomimetic scaffolds, they are still not tested as metalloenzyme models and not much is known about their metal-binding properties. Furthermore, there is no systematic study on the key factors controlling the processes of metal coordination to these systems. In the computational study herein, DFT molecular modeling has been employed in order to investigate the interactions of biologically essential (mono- and divalent) metal cations to cucurbit[]urils and evaluate the major determinants shaping the process. The thermodynamic descriptors (Gibbs energies in the gas phase and in a water medium) of the corresponding complexation reactions have been estimated. The results obtained shed light on the mechanism of host-guest recognition and disclose which factors more specifically affect the metal binding process.
基于经典合成大环主体分子(如环糊精和杯芳烃)的超分子复合物,由于其作为生物和化学传感器、生物成像剂、药物递送载体、发光材料等的广泛应用,近年来受到了广泛关注。葫芦[n]脲是另一类穴状配体,以其对各种客体分子的高亲和力而闻名。然而,它们配位化学的某些方面仍然神秘莫测。尽管它们被认为是潜在的仿生支架,但仍未作为金属酶模型进行测试,对其金属结合特性也知之甚少。此外,对于控制这些体系金属配位过程的关键因素,尚未有系统的研究。在本文的计算研究中,采用了密度泛函理论(DFT)分子建模来研究生物必需的(单价和二价)金属阳离子与葫芦[n]脲的相互作用,并评估影响该过程的主要决定因素。已经估算了相应络合反应的热力学描述符(气相和水介质中的吉布斯自由能)。所得结果揭示了主客体识别的机制,并揭示了哪些因素更具体地影响金属结合过程。