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A green strategy to construct non-covalent stable and bioactive coatings on porous MOF nanoparticles

机译:在多孔MOF纳米颗粒上构建非共价稳定和生物活性涂层的绿色策略

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摘要

Nanoparticles made of metal-organic frameworks (nanoMOFs) attract a growing interest in gas storage, separation, catalysis, sensing and more recently, biomedicine. Achieving stable, versatile coatings on highly porous nanoMOFs without altering their ability to adsorb molecules of interest represents today a major challenge. Here we bring the proof of concept that the outer surface of porous nanoMOFs can be specifically functionalized in a rapid, biofriendly and non-covalent manner, leading to stable and versatile coatings. Cyclodextrin molecules bearing strong iron complexing groups (phosphates) were firmly anchored to the nanoMOFs' surface, within only a few minutes, simply by incubation with aqueous nanoMOF suspensions. The coating procedure did not affect the nanoMOF porosity, crystallinity, adsorption and release abilities. The stable cyclodextrin-based coating was further functionalized with: i) targeting moieties to increase the nanoMOF interaction with specific receptors and ii) poly(ethylene glycol) chains to escape the immune system. These results pave the way towards the design of surface-engineered nanoMOFs of interest for applications in the field of targeted drug delivery, catalysis, separation and sensing.
机译:由金属有机框架(nanoMOF)制成的纳米颗粒在气体存储,分离,催化,传感以及最近的生物医学领域引起了越来越多的兴趣。在高度多孔的nanoMOF上实现稳定,通用的涂层而又不改变其吸附感兴趣分子的能力是当今的一大挑战。在这里,我们带来了概念证明,即可以以快速,生物友好和非共价的方式对多孔nanoMOF的外表面进行特定功能化,从而形成稳定而通用的涂层。仅需与nanoMOF水性悬浮液一起孵育,即可在短短几分钟内将带有强铁络合基团(磷酸盐)的环糊精分子牢固地锚定在nanoMOF的表面。涂布程序不影响nanoMOF的孔隙率,结晶度,吸附和释放能力。稳定的基于环糊精的涂层还可以通过以下功能进行功能化:i)靶向部分以增加与特定受体的nanoMOF相互作用,以及ii)聚乙二醇链逃脱免疫系统。这些结果为在目标药物递送,催化,分离和传感领域中应用的表面工程化的纳米MOFs设计铺平了道路。

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