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纳米级金属有机框架及其纳米医学应用。

Nanoscale Metal-Organic Frameworks and Their Nanomedicine Applications.

作者信息

Zhao Dan, Zhang Wang, Wu Zhi-Han, Xu Hui

机构信息

School of Marine Sciences, Ningbo University, Ningbo, China.

College of Plant Protection, Northwest A&F University, Yangling, China.

出版信息

Front Chem. 2022 Jan 24;9:834171. doi: 10.3389/fchem.2021.834171. eCollection 2021.

Abstract

Abundant connectivity among organic ligands and inorganic metal ions makes the physical and chemical characters of metal-organic frameworks (MOFs) could be precisely devised and modulated for specific applications. Especially nanoscale MOFs (NMOFs), a unique family of hybrid nanomaterials, with merits of holding the nature as the mainstay MOFs and demonstrating particle size in nanoscale range which enable them prospect platform in clinic. Adjustability of composition and structure allows NMOFs with different constituents, shapes, and characteristics. Oriented frameworks and highly porous provide enough space for packing therapeutic cargoes and various imaging agents efficiently. Moreover, the relatively labile metal-ligand bonds make NMOFs biodegradable in nature. So far, as a significant class of biomedically relevant nanomaterials, NMOFs have been explored as drug carriers, therapeutic preparation, and biosensing and imaging preparation owing to their high porosity, multifunctionality, and biocompatibility. This review provides up-to-date developments of NMOFs in biomedical applications with emphasis on size control, synthetic approaches, and surfaces functionalization as well as stability, degradation, and toxicity. The outlooks and several crucial issues of this area are also discussed, with the expectation that it may help arouse widespread attention on exploring NMOFs in potential clinical applications.

摘要

有机配体和无机金属离子之间丰富的连接性使得金属有机框架材料(MOFs)的物理和化学性质能够针对特定应用进行精确设计和调控。特别是纳米级MOFs(NMOFs),作为一类独特的混合纳米材料,兼具MOFs的本质特性,并呈现纳米级的粒径,使其成为临床应用的潜在平台。组成和结构的可调节性使得NMOFs具有不同的成分、形状和特性。定向框架和高度多孔性为有效装载治疗性货物和各种成像剂提供了足够的空间。此外,相对不稳定的金属-配体键使NMOFs在本质上具有生物可降解性。到目前为止,作为一类重要的生物医学相关纳米材料,由于其高孔隙率、多功能性和生物相容性,NMOFs已被探索用作药物载体、治疗制剂以及生物传感和成像制剂。本综述介绍了NMOFs在生物医学应用方面的最新进展,重点关注尺寸控制、合成方法、表面功能化以及稳定性、降解和毒性。还讨论了该领域的前景和几个关键问题,期望能有助于引起人们对探索NMOFs在潜在临床应用中的广泛关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d38/8819150/492a3c4c5c3a/fchem-09-834171-g001.jpg

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