Bina Ali, Raissi Heidar, Hashemzadeh Hassan, Farzad Farzaneh
Department of Chemistry, University of Birjand Birjand Iran
RSC Adv. 2021 May 26;11(31):18809-18817. doi: 10.1039/d1ra02361f. eCollection 2021 May 24.
Polymeric nanoparticles have emerged as efficient carriers for anticancer drug delivery because they can improve the solubility of hydrophobic drugs and also can increase the bio-distribution of drugs throughout the bloodstream. In this work, a computational study is performed on a set of new pH-sensitive polymer-drug compounds based on an intelligent polymer called poly(β-malic acid) (PMLA). The molecular dynamics (MD) simulation is used to explore the adsorption and dynamic properties of PMLA-doxorubicin (PMLA-DOX) interaction with the graphene oxide (GOX) surface in acidic and neutral environments. The PMLA is bonded to DOX through an amide bond (PMLA-ami-DOX) and a hydrazone bond (PMLA-hz-DOX) and their adsorption behavior is compared with free DOX. Our results confirm that the polymer-drug prodrug shows unique properties. Analysis of the adsorption behavior reveals that this process is spontaneous and the most stable complex with a binding energy of -1210.262 kJ mol is the GOX/PMLA-hz-DOX complex at normal pH. On the other hand, this system has a great sensitivity to pH so that in an acidic environment, its interaction with GOX became weaker while such behavior is not observed for the PMLA-ami-DOX complex. The results obtained from this study provide accurate information about the interaction of the polymer-drug compounds and nanocarriers at the atomic level, which can be useful in the design of smart drug delivery systems.
聚合物纳米颗粒已成为抗癌药物递送的有效载体,因为它们可以提高疏水性药物的溶解度,还可以增加药物在整个血流中的生物分布。在这项工作中,基于一种名为聚(β-苹果酸)(PMLA)的智能聚合物,对一组新型pH敏感聚合物-药物化合物进行了计算研究。分子动力学(MD)模拟用于探索PMLA-阿霉素(PMLA-DOX)在酸性和中性环境中与氧化石墨烯(GOX)表面的吸附和动力学性质。PMLA通过酰胺键(PMLA-ami-DOX)和腙键(PMLA-hz-DOX)与DOX结合,并将它们的吸附行为与游离DOX进行比较。我们的结果证实了聚合物-药物前药具有独特的性质。对吸附行为的分析表明,这个过程是自发的,在正常pH下,结合能为-1210.262 kJ/mol的最稳定复合物是GOX/PMLA-hz-DOX复合物。另一方面,该系统对pH非常敏感,以至于在酸性环境中,它与GOX的相互作用变弱,而PMLA-ami-DOX复合物则没有观察到这种行为。这项研究获得的结果提供了关于聚合物-药物化合物与纳米载体在原子水平上相互作用的准确信息,这对于智能药物递送系统的设计可能是有用的。