School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou, 510006, P. R. China.
College of Pharmacy, Jinan University, Guangzhou, 510632, P. R. China.
Small. 2021 Feb;17(8):e2005064. doi: 10.1002/smll.202005064. Epub 2021 Jan 28.
For decades, nanoscale metal-organic frameworks (nMOFs) have attracted extensive interest in biomedicine due to their distinct characteristics, including facile synthesis, porous interior, and tunable biocompatibility. With high porosity, versatile nMOFs allow for the facile encapsulation of various therapeutic agents with exceptionally high payloads. Constructed from metal ions and organic linkers through coordination bonds, nMOFs with plentiful functional groups enable the surface modification for active targeting and enhanced biocompatibility. This review outlines the up-to-date progresses on the exploration of nMOFs in the field of biomedicine. First, the classification and synthesis of nMOFs are discussed, followed by the concrete introduction of drug loading strategies of nMOFs and mechanisms of stimulation-responsive drug release. Second, the smart designs of the nMOFs-based platforms for anticancer and antibacterial treatment are summarized. Finally, the basic challenges faced by nMOFs research and the great potential of biomimetic nMOFs are presented. This review article affords an inspiring insight into the interdisciplinary research of nMOFs and their biomedical applications, which holds great expectation for their further clinical translation.
几十年来,由于具有独特的特性,包括易于合成、多孔内部和可调节的生物相容性,纳米级金属有机骨架(nMOFs)在生物医药领域引起了广泛的关注。nMOFs 具有高孔隙率,允许轻松封装各种治疗剂,并具有极高的载药量。nMOFs 由金属离子和有机配体通过配位键构成,具有丰富的官能团,可实现主动靶向和增强生物相容性的表面修饰。本综述概述了 nMOFs 在生物医药领域的最新进展。首先,讨论了 nMOFs 的分类和合成,随后具体介绍了 nMOFs 的药物负载策略和刺激响应性药物释放机制。其次,总结了基于 nMOFs 的抗癌和抗菌治疗的智能设计。最后,提出了 nMOFs 研究面临的基本挑战和仿生 nMOFs 的巨大潜力。本文综述为 nMOFs 的跨学科研究及其在生物医学中的应用提供了一个鼓舞人心的视角,对其进一步的临床转化寄予厚望。