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Investigation of thermodynamic and structural properties of drug delivery system based on carbon nanotubes as a carboplatin drug carrier by molecular dynamics simulations

机译:基于碳纳米管作为卡铂药物载体的药物递送系统的热力学和结构性质的分子动力学模拟研究

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Drug delivery is an important application of nanotechnology, in particular the targeted delivery of anticancer drugs using carbon nanotubes. To investigate the anticancer carboplatin’s drug delivery system based on single-walled carbon nanotubes (SWCNTs), molecular dynamic (MD) simulations were applied to carboplatin filling inside pristine SWCNT and wrapping outside the pristine and functionalized SWCNT, and the drug in the free state. No significant difference was observed in the drug conformation in the free form in comparison to complex states with SWCNT. Situating carboplatin inside the pristine nanotube close to the end of the tube is an important option for releasing the drug. The typical motion of the drug outside the pristine SWCNT was along the end to one-third of the tube length, whereas carboxylic group on functionalized SWCNT kept the drug in the tube’s centerline. In addition, our energy analysis determined that the lowest binding free energy belongs to filling carboplatin in the SWCNT, resulting from the van der Waals interactions. MD simulations in comparison to previous experimental evidence confirm that the suitable model for a platinum-based anticancer drug delivery system based on SWCNTs is the encapsulation of these drugs inside nanotubes.
机译:药物递送是纳米技术的重要应用,尤其是使用碳纳米管靶向递送抗癌药物。为了研究基于单壁碳纳米管(SWCNT)的抗癌卡铂药物递送系统,将分子动力学(MD)模拟应用于卡铂在原始SWCNT内部的填充以及在原始和功能化SWCNT外部的包​​裹,以及药物处于游离状态。与具有SWCNT的复杂状态相比,在游离形式的药物构象中没有观察到显着差异。在原始纳米管内部靠近管末端放置卡铂是释放药物的重要选择。原始SWCNT外面药物的典型运动是沿着末端移动到管长的三分之一,而功能化SWCNT上的羧基使药物保持在管的中心线。此外,我们的能量分析确定了最低的结合自由能属于填充在碳纳米管中的卡铂,这是由于范德华相互作用引起的。与先前的实验证据相比,MD模拟证实了基于SWCNTs的铂基抗癌药物递送系统的合适模型是将这些药物封装在纳米管中。

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