Taxifolin Adsorption on Nitrogenated Graphenes: Theoretical Insights

Solids Pub Date : 2024-07-01 DOI:10.3390/solids5030023
I. Petrushenko
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Abstract

Solid-state drug delivery systems for the drug substances transport are of great importance nowadays. In the present work, the non-covalent interactions between taxifolin (Tax) and graphene as well as nitrogenated (N-doped) graphenes were systematically studied by using a wide set of theoretical techniques. Symmetry-adapted perturbation theory (SAPT0) calculations confirmed more favorable adsorption of Tax on N-doped graphenes compared to pristine graphene. It was established that dispersion interactions play the main role in the attractive interactions (>60%), whereas electrostatic and induction forces contribute only moderately to the attraction (~25% and 7–8%, respectively). Independent gradient model (IGM) analysis visually demonstrated the existence of dispersion interactions and hydrogen bonding in the studied Tax complexes. Ab initio molecular dynamics calculations indicated stability of these complexes at different temperatures. Our results show that N-doped graphenes with the enhanced interaction energy (Eint) toward Tax are promising candidates for the technical realization of the targeted drug delivery systems.
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氮化石墨烯上的紫杉醇吸附:理论见解
如今,固态药物传输系统对药物物质的传输具有重要意义。在本研究中,研究人员利用多种理论技术系统地研究了紫杉醇(Taxifolin)与石墨烯以及氮化(N-掺杂)石墨烯之间的非共价相互作用。对称适配扰动理论(SAPT0)计算证实,与原始石墨烯相比,氮掺杂石墨烯对 Tax 的吸附更为有利。结果表明,分散相互作用在吸引作用中起主要作用(大于 60%),而静电力和感应力对吸引作用的贡献不大(分别为 25% 和 7-8%)。独立梯度模型(IGM)分析直观地证明了所研究的 Tax 复合物中存在弥散相互作用和氢键。Ab initio 分子动力学计算表明,这些复合物在不同温度下具有稳定性。我们的研究结果表明,掺杂 N 的石墨烯与 Tax 的相互作用能(Eint)增强,有望在技术上实现靶向给药系统。
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