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多功能金属氧化物纳米粒子涂层平台:在材料和生物科学中的应用。

Versatile Coating Platform for Metal Oxide Nanoparticles: Applications to Materials and Biological Science.

机构信息

Université Paris Cité, CNRS, Matière et Systèmes Complexes, 75205 Paris, France.

Specific Polymers, ZAC Via Domitia, 150 Avenue des Cocardières, 34160 Castries, France.

出版信息

Langmuir. 2022 May 10;38(18):5323-5338. doi: 10.1021/acs.langmuir.2c00338. Epub 2022 Apr 28.

Abstract

In this feature article, we provide an overview of our research on statistical copolymers as a coating material for metal oxide nanoparticles and surfaces. These copolymers contain functional groups enabling noncovalent binding to oxide surfaces and poly(ethylene glycol) (PEG) polymers for colloidal stability and stealthiness. The functional groups are organic derivatives of phosphorous acid compounds R-HPO, also known as phosphonic acids that have been screened for their strong affinity to metals and for their multidentate binding ability. Herein we develop a polymer-based coating platform that shares features with the self-assembled monolayer (SAM) and layer-by-layer (L-b-L) deposition techniques. The milestones of this endeavor are the synthesis of PEG-based copolymers containing multiple phosphonic acid groups, the implementation of simple protocols combining versatility with high particle production yields, and the experimental evidence of the colloidal stability of the coated particles. As a demonstration, coating studies are conducted on cerium (CeO), iron (γ-FeO), aluminum (AlO), and titanium (TiO) oxides of different sizes and morphologies. We finally discuss applications in the domain of nanomaterials and nanomedicine. We evaluate the beneficial effects of coatings on redispersible nanopowders, contrast agents for in vitro/vivo assays, and stimuli-responsive particles.

摘要

在这篇专题文章中,我们概述了我们在统计共聚物作为金属氧化物纳米粒子和表面涂层材料方面的研究。这些共聚物含有官能团,能够与氧化物表面和聚(乙二醇)(PEG)聚合物非共价结合,从而实现胶体稳定性和隐形性。官能团是膦酸化合物 R-HPO 的有机衍生物,也称为膦酸,它们具有与金属的强亲和力和多齿配位能力,已被筛选出来。在此,我们开发了一种基于聚合物的涂层平台,该平台具有与自组装单层(SAM)和层层(L-b-L)沉积技术共享的特征。这一努力的里程碑是合成含有多个膦酸基团的基于 PEG 的共聚物,实施了将多功能性与高颗粒产率相结合的简单方案,以及涂层颗粒胶体稳定性的实验证据。作为演示,我们对不同尺寸和形态的铈(CeO)、铁(γ-FeO)、铝(AlO)和钛(TiO)氧化物进行了涂层研究。最后,我们讨论了在纳米材料和纳米医学领域的应用。我们评估了涂层对可再分散纳米粉末、体外/体内测定的对比剂以及对刺激响应性颗粒的有益效果。

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