Cai Mengru, Chen Gongsen, Qin Liuying, Qu Changhai, Dong Xiaoxv, Ni Jian, Yin Xingbin
School of Chinese Material Medical, Beijing University of Chinese Medicine, Beijing 102488, China.
Beijing Research Institute of Chinese Medicine, Beijing University of Chinese Medicine, Beijing 100029, China.
Pharmaceutics. 2020 Mar 5;12(3):232. doi: 10.3390/pharmaceutics12030232.
In recent years, metal organic frameworks (MOFs) have been widely developed as vehicles for the effective delivery of drugs to tumor tissues. Due to the high loading capacity and excellent biocompatibility of MOFs, they provide an unprecedented opportunity for the treatment of cancer. However, drugs which are commonly used to treat cancer often cause side effects in normal tissue accumulation. Therefore, the strategy of drug targeting delivery based on MOFs has excellent research significance. Here, we introduce several intelligent targeted drug delivery systems based on MOFs and their characteristics as drug-loading systems, and the challenges of MOFs are discussed. This article covers the following types of MOFs: Isoreticular Metal Organic Frameworks (IRMOFs), Materials of Institute Lavoisier (MILs), Zeolitic Imidazolate Frameworks (ZIFs), University of Oslo (UiOs), and MOFs-based core-shell structures. Generally, MOFs can be reasonably controlled at the nanometer size to effectively achieve passive targeting. In addition, different ligands can be modified on MOFs for active or physicochemical targeting. On the one hand, the targeting strategy can improve the concentration of the drugs at the tumor site to improve the efficacy, on the other hand, it can avoid the release of the drugs in normal tissues to improve safety. Despite the challenges of clinical application of MOFs, MOFs have a number of advantages as a kind of smart delivery vehicle, which offer possibilities for clinical applications.
近年来,金属有机框架材料(MOFs)作为将药物有效递送至肿瘤组织的载体得到了广泛发展。由于MOFs具有高负载能力和优异的生物相容性,它们为癌症治疗提供了前所未有的机遇。然而,常用于治疗癌症的药物往往会在正常组织中蓄积而产生副作用。因此,基于MOFs的药物靶向递送策略具有优异的研究意义。在此,我们介绍了几种基于MOFs的智能靶向药物递送系统及其作为载药系统的特点,并讨论了MOFs面临的挑战。本文涵盖以下几种类型的MOFs:同构金属有机框架材料(IRMOFs)、拉瓦锡研究所材料(MILs)、沸石咪唑酯框架材料(ZIFs)、奥斯陆大学材料(UiOs)以及基于MOFs的核壳结构。一般来说,MOFs可以在纳米尺寸上得到合理控制,以有效实现被动靶向。此外,可以在MOFs上修饰不同的配体用于主动靶向或物理化学靶向。一方面,靶向策略可以提高药物在肿瘤部位的浓度以提高疗效,另一方面,它可以避免药物在正常组织中释放以提高安全性。尽管MOFs在临床应用方面存在挑战,但作为一种智能递送载体,MOFs具有诸多优势,为临床应用提供了可能性。