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分子形状对疏水性药物寡聚化的影响:环丙沙星和 nutlin 的分子模拟。

The effect of molecular shape on oligomerization of hydrophobic drugs: Molecular simulations of ciprofloxacin and nutlin.

机构信息

Singapore Eye Research Institute, 11 Third Hospital Avenue, #06-00, Singapore 168751.

出版信息

J Chem Phys. 2018 Mar 14;148(10):104902. doi: 10.1063/1.5013056.

Abstract

Molecular aggregation plays a significant role in modulating the solubility, permeability, and bioactivity of drugs. The propensity to aggregate depends on hydrophobicity and on molecular shape. Molecular dynamics simulations coupled with enhanced sampling methods are used to explore the early stages of oligomerization of two drug molecules which have a strong aggregation propensity, but with contrasting molecule shapes: the antibiotic ciprofloxacin and the anticancer drug Nutlin-3A. The planar shape of ciprofloxacin induces the formation of stable oligomers at all cluster sizes. The aggregation of ciprofloxacin is driven by two-body interactions, and transferring one ciprofloxacin molecule to an existing cluster involves the desolvation of two faces and the concomitant hydrophobic interactions between the two faces; thus, the corresponding free energy of oligomerization weakly depends on the oligomer size. By contrast, Nutlin-3A has a star-shape and hence can only form stable oligomers when the cluster size is greater than 8. Free energy simulations further confirmed that the free energy of oligomer formation for Nutlin-3A becomes more favorable as the oligomer becomes larger. The aggregation of star-shaped Nutlin-3A results from many-body interactions and hence the free energy of cluster formation is strongly dependent on the size. The findings of this study provide atomistic insights into how molecular shape modulates the aggregation behavior of molecules and may be factored into the design of drugs or nano-particles.

摘要

分子聚集在调节药物的溶解度、渗透性和生物活性方面起着重要作用。聚集的倾向取决于疏水性和分子形状。采用分子动力学模拟结合增强采样方法,研究了两种具有强烈聚集倾向但分子形状相反的药物分子(抗生素环丙沙星和抗癌药物 Nutlin-3A)的低聚化早期阶段。环丙沙星的平面形状诱导在所有簇尺寸下形成稳定的低聚物。环丙沙星的聚集是由二体相互作用驱动的,将一个环丙沙星分子转移到现有簇中涉及两个面的去溶剂化和两个面之间的疏水性相互作用;因此,相应的低聚化自由能弱依赖于低聚物尺寸。相比之下,Nutlin-3A 具有星形结构,因此只有当簇的尺寸大于 8 时才能形成稳定的低聚物。自由能模拟进一步证实,随着低聚物的增大,Nutlin-3A 的低聚物形成自由能变得更加有利。星形 Nutlin-3A 的聚集是由多体相互作用引起的,因此簇形成的自由能强烈依赖于尺寸。这项研究的结果提供了关于分子形状如何调节分子聚集行为的原子水平的见解,并可能被纳入药物或纳米颗粒的设计中。

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