密度泛函方法研究功能化单壁碳纳米管对肼嗪类药物的吸附

Kimia T. Maleki, S. Hamedani
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摘要

背景:近年来,纳米技术的进步为克服靶向给药的局限性提供了机会。纳米药物载体具有改变药物药代动力学的能力,可以提高疗效,减少副作用。本研究的目的是通过密度泛函理论计算来研究肼嗪与功能化碳纳米管的相互作用。材料与方法:研究了羟嗪分子在官能化碳纳米管上的吸附行为。计算采用高斯09软件,采用6-31G *水平的B3LYP密度泛函理论。结果:利用优化后的结构计算了吸附能、最高占据分子轨道(HOMO)、最低未占据分子轨道(LUMO)、态密度图、反应性指数、分子原子参数、热力学性质和分子静电势。结论:热力学函数和吸附能分析表明,所形成的络合物是稳定的。此外,根据键合特征分析结果,观察到肼嗪与功能化碳纳米管之间形成氢键,这种功能化碳纳米管有望成为将肼嗪递送到靶细胞的合适纳米载体。单壁
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Investigation of hydralazine drug adsorption on functionalized single-walled carbon nanotubes by density functional theory (DFT) method
Background : In recent years, advances in nanotechnology presents opportunities to overcome limitations in targeted drug delivery. Nano drug carriers have the ability to change the pharmacokinetics of drugs and can improve efficacy and reduce side effects. The objective of the present work is to study the interaction of Hydralazine with functionalized carbon nanotubes by performing density functional theory calculations. Materials and methods : The behavior of hydralazine molecule adsorbed onto functionalized SWCNT was examined. The calculations were performed by Gaussian 09 software, using B3LYP density functional theory at the 6-31G * level. Results : The optimized structures were used to calculate the adsorption energy, highest occupied molecular orbital (HOMO), lowest unoccupied molecular orbital (LUMO), graphs of density of states, reactivity indexes, parameters of atoms in molecules, thermodynamic properties and molecular electrostatic potential were discussed. Conclusion : Analysis of thermodynamic functions and adsorption energy showed that the complex formed is stable. Furthermore, based on the results of bonding characteristic analysis, it was observed a hydrogen bond formed between hydralazine and functionalized CNT and this type of functionalized carbon nanotube was expected to be suitable nanocarier for delivery of hydralazine to target cells. single-walled
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