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Stimuli-responsive nano-assemblies for remotely controlled drug delivery

机译:刺激响应纳米组件用于远程控制的药物递送

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摘要

Stimuli-responsive nano-assemblies are emerging as promising drug delivery systems (DDSs) with spatial and temporal tenability, which can undergo structural transition for controlled drug release upon excitation by either exogenous or endogenous stimuli. Particularly, exogenous stimuli-responsive nano-assemblies based remotely controlled DDSs, have received much attention due to their accuracy and reliability realized by tunable exogenous triggers such as light, magnetic field, or temperature. In this review, we will briefly introduce the current state-of-the-art technologies of nano-assembly synthesis and summarize the recent advances in remotely controlled nano-assembly-based DDSs activated by different exogenous stimuli or endogenous/exogenous dualstimuli. Furthermore, the pioneering progress in bio-cleanable stimuli-responsive nano-assemblies that holds great relevance to clinical translation will be described. Finally, we will conclude with our perspectives on current issues and future development of this field. The objective of this review is to outline current advances of nano-assemblies as remotely controlled DDSs, in hopes of accelerating the future development of intelligent nanomedicines.
机译:刺激响应的纳米组件是作为具有空间和时间损益的有前途的药物递送系统(DDS),其可以通过外源或内源刺激在激发激发时进行结构转变。特别地,由于其精度和可靠性,通过可调谐外源触发(例如光,磁场或温度)实现的精度和可靠性,因此,基于远离控制的DDS的外源性刺激的纳米组件。在本文中,我们将简要介绍当前的纳米组件合成的最先进的技术,并总结由不同外源刺激或内源性/外源性/外源性双杆菌激活的基于远程控制的基于纳米组件的DDS的最新进展。此外,将描述具有与临床翻译具有良好相关性的生物可清洁刺激纳米组件的开创性进展。最后,我们将以我们对当前问题和未来发展的看法结束。本综述的目的是概述纳米组件的当前进步为远程控制的DDS,希望加速智能纳米型ines的未来发展。

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