Institute of Pharmaceutics, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China; Hangzhou Institute of Innovative Medicine, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China.
ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, Queensland 4072, Australia.
J Control Release. 2020 Jun 10;322:566-592. doi: 10.1016/j.jconrel.2020.03.051. Epub 2020 Apr 8.
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 dual-stimuli. 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.
刺激响应型纳米组装体作为一种具有时空可控性的新型药物传递系统(DDS),在外源或内源性刺激下可通过结构转变来控制药物释放。特别是,基于外源刺激的远程控制 DDS 的外源刺激响应型纳米组装体由于其可通过光、磁场或温度等可调外源触发来实现精确和可靠的控制,受到了广泛关注。在本综述中,我们将简要介绍纳米组装体合成的最新技术进展,并总结不同外源刺激或内源性/外源双刺激激活的远程控制纳米组装体 DDS 的最新进展。此外,我们还将介绍与临床转化密切相关的生物可降解刺激响应型纳米组装体的开创性进展。最后,我们将对该领域的当前问题和未来发展进行展望。本综述的目的是概述作为远程控制 DDS 的纳米组装体的最新进展,以期加速智能纳米医学的未来发展。