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Magnetic forces enable controlled drug delivery by disrupting endothelial cell-cell junctions

机译:磁力可以通过破坏内皮细胞-细胞连接来实现受控的药物递送

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摘要

The vascular endothelium presents a major transport barrier to drug delivery by only allowing selective extravasation of solutes and small molecules. Therefore, enhancing drug transport across the endothelial barrier has to rely on leaky vessels arising from disease states such as pathological angiogenesis and inflammatory response. Here we show that the permeability of vascular endothelium can be increased using an external magnetic field to temporarily disrupt endothelial adherens junctions through internalized iron oxide nanoparticles, activating the paracellular transport pathway and facilitating the local extravasation of circulating substances. This approach provides a physically controlled drug delivery method harnessing the biology of endothelial adherens junction and opens a new avenue for drug delivery in a broad range of biomedical research and therapeutic applications.
机译:血管内皮通过仅允许溶质和小分子的选择性渗出而对药物递送提出了主要的运输障碍。因此,增强跨内皮屏障的药物运输必须依赖于由疾病状态例如病理性血管生成和炎症反应引起的渗漏血管。在这里,我们表明可以使用外部磁场通过内在的氧化铁纳米粒子暂时破坏内皮粘附连接,激活细胞旁运输途径并促进循环物质的局部渗出,从而增加血管内皮的通透性。这种方法提供了一种利用内皮粘附连接生物学的物理控制药物递送方法,并为广泛的生物医学研究和治疗应用中的药物递送开辟了新途径。

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