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High-resolution imaging of the intramolecular structure of indomethacin-carrying dendrimers by scanning tunneling microscopy

机译:通过扫描隧道显微镜对吲哚美辛携带树枝状聚合物分子内结构的高分辨率成像

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Dendrimers have shown great potential in drug delivery because of their enhancement of drug solubility in aqueous media, leading to an increase in in vivo circulation and efficacy to targets. The structure of drug-dendrimer complexes however, is not well-known owing to the difficulties associated with visualizing individual drug molecules attached to dendrimers. Scanning tunneling microscopy (STM) enables visualization of dendrimer intramolecular structures using our approach of metal ion tagging. This work extends the approach to reveal the hierarchical structure of indomethacin-loaded poly(amidoamine) hydroxyl-terminated dendrimers. STM imaging provides structural information such as their height, lateral dimensions, and volume. High-resolution STM images enable the identification and count of individual indomethacin molecules bound to the anterior of dendrimers. Removal of drug molecules by the STM tip allows the calculation of individual drug-dendrimer binding energy, which is consistent with 1-3 hydrogen bonds. These investigations provide new insight into the hierarchical structure and nature of indomethacin-dendrimer interactions and deepen our understanding of the stability and pharmacokinetic behavior of dendrimer-based drug delivery vehicles.
机译:树状大分子由于其在水性介质中的药物溶解性增强而在药物递送中显示出巨大潜力,从而导致体内循环的增加和对靶标的功效。然而,由于与可视化附着于树状聚合物的单个药物分子相关的困难,药物树状聚合物复合物的结构并不为人所知。使用我们的金属离子标记方法,扫描隧道显微镜(STM)可以显示树枝状大分子的分子内结构。这项工作扩展了方法,揭示了吲哚美辛负载的聚(氨基胺)羟基封端的树枝状聚合物的层次结构。 STM成像可提供结构信息,例如其高度,横向尺寸和体积。高分辨率STM图像可识别和计数结合在树枝状分子前部的吲哚美辛分子。通过STM尖端去除药物分子可计算出单个药物与树状聚合物的结合能,该能量与1-3个氢键一致。这些研究提供了对吲哚美辛-树状大分子相互作用的层次结构和性质的新见解,并加深了我们对基于树状大分子的药物递送载体的稳定性和药代动力学行为的理解。

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