School of Chemical Engineering, National Technical University of Athens (NTUA), 9 Heroon Polytechniou Street, Zografou Campus, 15780 Athens, GR ,Greece.
School of Engineering, Department of Mineral Resources Engineering, University of Western Macedonia, 50100 Kozani, Greece.
J Phys Chem B. 2024 Jul 4;128(26):6291-6307. doi: 10.1021/acs.jpcb.4c02213. Epub 2024 Jun 20.
Berubicin, a chemotherapy medication belonging to the class of anthracyclines, is simulated in double-stranded DNA sequences and cyclodextrins in an aqueous environment via full-atom molecular dynamics simulations on the time scale of microseconds. The drug is studied in both the neutral and protonated states so as to better comprehend the role of its charge in the formed complexes. The noncovalent berubicin-DNA and berubicin-cyclodextrin complexes are investigated in detail, paying special attention to their thermodynamic description by employing the double decoupling method, the solvent balance method, the weighted solvent accessible surface model, and the linear interaction energy method. A novel approach for extracting the desolvation thermodynamics of the binding process is also presented. Both the binding and desolvation Gibbs energies are decomposed into entropic and enthalpic contributions so as to elucidate the nature of complexation and its driving forces. Selected structural and geometrical properties of all the complexes, which are all stable, are analyzed. Both cyclodextrins under consideration are widely utilized for drug delivery purposes, and a comparative investigation between their bound states with berubicin is carried out.
柔红霉素是一种属于蒽环类的化疗药物,在水溶液环境中,通过全原子分子动力学模拟,可以在微秒时间尺度上模拟其在双链 DNA 序列和环糊精中的情况。该药物在中性和质子化两种状态下都进行了研究,以便更好地理解其电荷在形成复合物中的作用。详细研究了非共价结合的柔红霉素-DNA 和柔红霉素-环糊精复合物,特别注意使用双解耦方法、溶剂平衡方法、加权溶剂可及表面模型和线性相互作用能方法对其热力学描述。还提出了一种提取结合过程去溶剂化热力学的新方法。将结合和去溶剂化吉布斯自由能分解为熵和焓贡献,以阐明配合物的性质及其驱动力。分析了所有复合物的选定结构和几何性质,这些复合物都是稳定的。考虑到的两种环糊精都广泛用于药物输送目的,并对它们与柔红霉素的结合状态进行了比较研究。