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Ultrasound-mediated micellar drug delivery

机译:超声介导的胶束药物传递

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摘要

During the last decade, nanomedicine has emerged as a new field of medicine that utilises nanoscale materials for delivery of drugs, genes and imaging agents. The efficiency of drug delivery may be enhanced by the application of directed energy, which provides for drug targeting and enhanced intracellular uptake. In this paper, we present a review of recent advances in the ultrasound-mediated drug delivery with the emphasis on polymeric micelles as tumour-targeted drug carriers. This new modality of drug targeting to tumours is based on the drug encapsulation in polymeric micelles followed by a localised release at the tumour site triggered by focused ultrasound. The rationale behind this approach is that drug encapsulation in micelles decreases systemic concentration of free drug and provides for a passive drug targeting to tumours via the enhanced permeability and retention (EPR) effect, therefore reducing unwanted drug interactions with healthy tissues. Ultrasound affects micellar drug delivery on various levels. Mild hyperthermia induced by ultrasound may enhance micelle extravasation into tumour tissue; mechanical action of ultrasound results in drug release from micelles and enhances the intracellular uptake of both released and encapsulated drug. In addition, polymeric micelles sensitise multidrug resistant (MDR) cells to the action of drugs.
机译:在过去的十年中,纳米医学已经成为一种新的医学领域,它利用纳米材料来传递药物,基因和显像剂。可以通过应用定向能量来增强药物递送的效率,该定向能量提供了药物靶向和增强的细胞内摄取。在本文中,我们介绍了超声介导的药物输送的最新进展,重点是聚合物胶束作为靶向肿瘤的药物载体。这种靶向肿瘤的药物新形式是基于将药物封装在聚合物胶束中,然后通过聚焦超声触发在肿瘤部位的局部释放。这种方法的基本原理是,将药物封装在胶束中会降低游离药物的全身浓度,并通过增强的渗透性和保留(EPR)效应提供被动靶向肿瘤的药物,从而减少药物与健康组织的相互作用。超声波会在不同程度上影响胶束药物的递送。超声引起的轻度高温可能会增加胶束渗入肿瘤组织。超声波的机械作用导致药物从微团中释放出来,并增强了释放和包封药物的细胞内吸收。另外,聚合胶束使耐多药(MDR)细胞对药物的作用敏感。

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