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Transformable nanodrugs for overcoming the biological barriers in the tumor environment during drug delivery

机译:用于克服药物递送过程中肿瘤环境中生物屏障的可转化纳米药物

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摘要

Drug delivery systems have been studied massively with explosive growth in the last few decades. However, challenges such as biological barriers are still obstructing the delivery efficiency of nanomedicines. Reports have shown that the physicochemical properties, such as the morphologies of nanodrugs, could highly affect their biodistribution and bioavailability. Therefore, transformable nanodrugs that take advantage of different sizes and shapes allow for overcoming multiple biological barriers, providing promising prospects for drug delivery. This review aims to present an overview of the most recent developments of transformable nanodrugs in this emerging field. First, the design principles and transformation mechanisms which serve as guidelines for smart nanodrugs are summarized. Afterward, their applications in overcoming biological barriers, including the bloodstream, intratumoral pressure, cellular membrane, endosomal wrapping, and nuclear membrane, are highlighted. Finally, discussions on the current developments and future perspectives of transformable nanodrugs are given.
机译:研究了大规模药物输送系统过去几十年的爆炸性增长。然而,挑战,如生物屏障仍然是阻碍的交付效率纳米药物。物理化学性质,如纳米药物的形态,可以高度影响他们的biodistribution和生物利用度。因此,可变形的纳米药物利用不同的大小和形状允许克服多重生物屏障,为给药提供了广阔的前景。本文旨在概述最近的可变形的发展纳米药物在这个新兴领域。设计原则和转换机制作为智能纳米药物的指南总结了。克服生理障碍,包括血液,瘤内压力,细胞膜,endosomal包装和核膜,突出显示。对当前和未来的发展观点的可变形的纳米药物考虑到。

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