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首页> 外文期刊>ACS Omega >Impact of Doxorubicin on Self-Organization of Congo Red: Quantum Chemical Calculations and Molecular Dynamics Simulations
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Impact of Doxorubicin on Self-Organization of Congo Red: Quantum Chemical Calculations and Molecular Dynamics Simulations

机译:多柔比蛋白对刚果红:量子化学计算与分子动力学模拟的影响

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Quantum-chemical calculations and molecular dynamics simulation were applied to a model self-organization process of Congo red (CR) molecules in aqueous solution and the impact of doxorubicin (DOX) molecules on such a process. It was demonstrated that both pure CR/CR and mixed CR/DOX dimers were stable. Van der Waals interactions between aromatic units were responsible for a stacked dimer formation. An important source of stabilization in the CR/CR dimer was the polarization energy. In the CR/DOX mixed dimer long range, electrostatic interactions were the main driving force leading to complexation. An implicit solvent model showed that the formation of the CR/CR dimer was favored over the CR/DOX one. Molecular dynamics simulations demonstrated rapid complexation. In the pure CR system, short sequences of ribbon-like structures were formed. Such structures might be glued by hydrogen bonds to form bigger complexes. It was shown that the aromatic part of the DOX molecule enters CR ribbons with the sugar part covering the CR ribbons. These findings demonstrated that CR may find applications as a carrier in delivering DOX molecules; however, further more extensive investigations are required.
机译:量子化学计算和分子动力学模拟应用于水溶液中刚果红色(Cr)分子的模型自组织过程及多柔比蛋白(DOX)分子对这种方法的影响。证明纯Cr / Cr和混合Cr / dox二聚体均稳定。芳族单元之间的van der Wa种相互作用负责堆叠二聚体形成。 Cr / Cr二聚体中的一个重要稳定来源是极化能量。在Cr / dox混合二聚体长范围内,静电相互作用是导致络合的主要驱动力。隐性溶剂模型表明,Cr / Cr二聚体的形成在Cr / dox一体上受到青睐。分子动力学模拟表现出快速络合。在纯CR系统中,形成有丝带结构的短序列。这种结构可以通过氢键粘合以形成更大的络合物。结果表明,DOX分子的芳族部分用覆盖Cr丝带的糖部进入Cr丝带。这些发现表明CR可以在提供DOX分子中发现作为载体的应用;但是,需要进一步的更广泛的调查。

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