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Molecular origin of drug release by water boiling inside carbon nanotubes from reactive molecular dynamics simulation and DFT perspectives

机译:从反应分子动力学模拟和DFT角度看碳纳米管内部水沸腾释放药物的分子起源

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摘要

Owing to their nanosized hollow cylindrical structure, CNTs hold the promise to be utilized as desired materials for encapsulating molecules which demonstrate wide inferences in drug delivery. Here we evaluate the possibility of drug release from the CNTs with various types and edge chemistry by reactive MD simulation to explain the scientifically reliable relations for proposed process. It was shown that heating of CNTs (up to 750 K) cannot be used for release of incorporated drug (phenylalanine) into water and even carbonated water solvent with very low boiling temperature. This is due to the strong physisorption (π-stacking interaction) between the aromatic of encapsulated drug and CNT sidewall which causes the drug to bind the nanotube sidewall. We have further investigated the interaction nature and release mechanism of water and drug confined/released within/from the CNTs by DFT calculations and the results confirmed our MD simulation findings. The accuracy of DFT method was also validated against the experimental and theoretical values at MP2/CCSD level. Therefore, we find that boiling of water/carbonated water confined within the CNTs could not be a suitable technique for efficient drug release. Our atomistic simulations provide a well-grounded understanding for the release of drug molecules confined within CNTs.
机译:由于其纳米级的中空圆柱形结构,CNT有望被用作封装分子的理想材料,这些分子在药物输送中表现出广泛的推论。在这里,我们通过反应性MD模拟评估了具有各种类型和边缘化学性质的CNT从药物中释放出来的可能性,从而解释了所提出方法的科学可靠关系。结果表明,加热碳纳米管(最高750 K)不能用于将掺入的药物(苯丙氨酸)释放到水甚至沸腾温度很低的碳酸水溶剂中。这是由于包封的药物的芳族化合物与CNT侧壁之间强烈的物理吸附(π堆积相互作用),这导致药物与纳米管侧壁结合。通过DFT计算,我们进一步研究了水与限制在CNT中/从CNT中释放的药物与水的相互作用性质和释放机理,结果证实了我们的MD模拟结果。还针对MP2 / CCSD级别的实验和理论值验证了DFT方法的准确性。因此,我们发现限制在CNT中的水/碳酸水的沸腾不是有效药物释放的合适技术。我们的原子模拟提供了对限制在CNT中的药物分子释放的充分了解。

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