Department of Life Sciences Engineering, Faculty of New Sciences and Technologies, University of Tehran, P.O. Box: 14395-1561, Tehran, Iran.
Department of Cell and Molecular Biology, School of Biology, College of Science, University of Tehran, P.O. Box: 14155-6455, Tehran, Iran.
J Chem Inf Model. 2020 Mar 23;60(3):1791-1803. doi: 10.1021/acs.jcim.9b01087. Epub 2020 Jan 29.
Cucurbit[]urils (CB[], = 5, 6, 7, 8, 10, 14) and their derivatives due to the hydrophobic cavities and polar carbonyl portals have been considerably explored for their potential uses as drug delivery systems. It is important to understand how these macrocyclic compounds interact with guests. Camptothecin (CPT), as a natural alkaloid, is a topoisomerase inhibitor with antitumor activity against breast, pancreas, and lung cancers. The application of this drug in cancer therapy is restricted due to its low aqueous solubility and high toxicity. Recently, the complex formation between the cucurbit[7]uril (CB[7])/acyclic cucurbit[4]uril (aCB[4]) nanocontainers and CPT have been evaluated to overcome the potential drawbacks of the related drug. Herein, using computational methods, we identified the interaction mechanism of CPT with CB[7]/aCB[4]s, which consist of benzene and naphthalene sidewalls (aCB[4] and aCB[4], respectively) since the experimental approaches have not completely provided information at the molecular level. Our molecular docking and molecular dynamics (MD) simulations show that CB[7] and its two acyclic derivatives form stable inclusion complexes with CPT especially through hydrophobic interactions. We also found that aCB[4]s with the aromatic sidewalls can attach to CPT through π-π interactions. This investigation highlights aCB[4]s due to the structural properties and flexible nature as better nanocontainers for controlled release delivery of pharmaceutical agents in comparison with the CB[7] nanocontainer.
葫芦[ ]脲(CB[ ],= 5、6、7、8、10、14)及其衍生物由于具有疏水性空腔和极性羰基门,因此被广泛探索用于药物传递系统。了解这些大环化合物如何与客体相互作用非常重要。喜树碱(CPT)是一种天然生物碱,作为拓扑异构酶抑制剂,对乳腺癌、胰腺癌和肺癌具有抗肿瘤活性。由于其低水溶性和高毒性,该药物在癌症治疗中的应用受到限制。最近,对葫芦[7]脲(CB[7])/无环葫芦[4]脲(aCB[4])纳米容器与 CPT 的络合作用进行了评估,以克服相关药物的潜在缺点。在此,我们使用计算方法确定了 CPT 与 CB[7]/aCB[4]s 的相互作用机制,其中 CB[7]/aCB[4]s 由苯和萘侧壁(分别为 aCB[4]和 aCB[4])组成,因为实验方法尚未完全提供分子水平的信息。我们的分子对接和分子动力学(MD)模拟表明,CB[7]及其两个无环衍生物与 CPT 形成稳定的包合复合物,特别是通过疏水相互作用。我们还发现具有芳香侧壁的 aCB[4]s 可以通过π-π相互作用与 CPT 结合。这项研究突出了 aCB[4]s,由于其结构特性和灵活性质,与 CB[7]纳米容器相比,作为控制释放药物传递的更好的纳米容器。