Metal Organic Frameworks (MOFs) as efficient carrier for targeted nanodrug delivery

R. Karki, D. Adhikari, K. Adhikari, N. Pantha
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Abstract

A controllable and targeted drug delivery system development is imperative and important to reduce side effects and enhance the therapeutic efficacy of drugs. Metal-organic frameworks (MOFs), an emerging type of hybrid porous materials synthesized from metal ions or clusters abridged by organic linkers. They have attracted increasing attention in the recent years owing to the unique physical structures possessed, and the potential for wide range of applications. The superior properties of MOFs, such as well-defined pore aperture, tailorable composition and structure, tunable size, versatile functionality, high agent loading, and improved biocompatibility, have made them promising candidates as drug delivery hosts. MOFs for drug encapsulation and delivery is of great interest and many very promising results have been found, indicating that these porous solids exhibit several advantages over existing systems. This review highlights the recent advances in the synthesis, functionalization, and applications of MOFs in nanodrug delivery, and has classified them using drug loading strategies.
金属有机骨架作为靶向递送纳米药物的有效载体
开发一种可控的靶向给药系统对减少药物副作用、提高药物疗效具有重要意义。金属-有机骨架(mof)是一种新型的杂化多孔材料,由金属离子或金属团簇通过有机连接而合成。近年来,由于其独特的物理结构和广泛的应用潜力,引起了越来越多的关注。mof的优越特性,如明确的孔径、可定制的成分和结构、可调节的尺寸、多功能、高药物负载和改善的生物相容性,使其成为有希望的药物传递宿主。用于药物包封和递送的mof引起了极大的兴趣,并且已经发现了许多非常有希望的结果,表明这些多孔固体比现有系统具有许多优点。本文综述了mof的合成、功能化及其在纳米药物传递中的应用的最新进展,并根据载药策略对其进行了分类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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