Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering, Feringa Nobel Prize Scientist Joint Research Center, School of Chemistry and Molecular Engineering, East China University of Science and Technology, 130 Meilong Rd., Shanghai 200237, China.
National Center for Drug Screening, State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, P. R. China.
Chem Commun (Camb). 2021 Nov 16;57(91):12098-12110. doi: 10.1039/d1cc05157a.
Biomacromolecular drugs have become an important class of therapeutic agents for the treatment of human diseases. Considering their high propensity for being degraded in the human body, the choice of an appropriate delivery system is key to ensure the therapeutic efficacy of biomacromolecular drugs . As an emerging class of supramolecular "host" materials, metal-organic frameworks (MOFs) exhibit advantages in terms of the tunability of pore size, encapsulation efficiency, controllable drug release, simplicity in surface functionalization and good biocompatibility. As a result, MOF-based host-guest systems have been extensively developed as a new class of flexible and powerful platform for the delivery of therapeutic biomacromolecules. In this review, we summarize current research progress in the synthesis of MOFs as delivery materials for a variety of biomacromolecules. Firstly, we briefly introduce the advances made in the use of biomacromolecular drugs for disease therapy and the types of commonly used clinical delivery systems. We then describe the advantages of using MOFs as delivery materials. Secondly, the strategies for the construction of MOF-encapsulated biomacromolecules (Biomacromolecules@MOFs) and the release mechanisms of the therapeutics are categorized. Thirdly, the application of MOFs to deliver different types of biomacromolecules (, antigens/antibodies, enzymes, therapeutic proteins, DNA/RNA, polypeptides, and polysaccharides) for the treatment of various human diseases based on immunotherapy, gene therapy, starvation therapy and oxidation therapy is summarized. Finally, the remaining challenges and available opportunities for MOFs as drug delivery systems are outlined, which we anticipate will encourage additional research efforts directed towards developing Biomacromolecules@MOFs systems for biomedical applications.
生物大分子药物已成为治疗人类疾病的一类重要治疗剂。考虑到它们在人体内易于降解的特性,选择合适的递送系统是确保生物大分子药物治疗效果的关键。作为一类新兴的超分子“主体”材料,金属-有机框架(MOFs)在孔径可调、包封效率高、可控药物释放、表面功能化简单以及良好的生物相容性等方面具有优势。因此,基于 MOF 的主客体体系已被广泛开发为一种新的灵活且强大的治疗生物大分子递药平台。在本文中,我们总结了目前关于各种生物大分子作为递送材料的 MOF 的合成研究进展。首先,我们简要介绍了生物大分子药物在疾病治疗中的应用以及常用的临床递送系统类型。然后,我们描述了将 MOF 用作递送材料的优势。其次,我们对封装生物大分子的 MOF(Biomacromolecules@MOFs)的构建策略和治疗剂的释放机制进行了分类。第三,我们总结了 MOF 在基于免疫疗法、基因疗法、饥饿疗法和氧化疗法的各种人类疾病治疗中用于递送不同类型的生物大分子(抗原/抗体、酶、治疗蛋白、DNA/RNA、多肽和多糖)的应用。最后,我们概述了 MOF 作为药物递送系统存在的挑战和机遇,希望这将鼓励更多的研究努力,开发用于生物医学应用的 Biomacromolecules@MOFs 系统。