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染料分子插层 MoO 有机/无机超晶格纳米粒子的制备及其用于荧光成像引导的催化治疗。

Preparation of Dye Molecule-Intercalated MoO Organic/Inorganic Superlattice Nanoparticles for Fluorescence Imaging-Guided Catalytic Therapy.

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, P. R. China.

School of Chemistry and Chemical Engineering, Hunan University of Science and Technology, Xiangtan, 411201, P. R. China.

出版信息

Small. 2022 Jun;18(25):e2200595. doi: 10.1002/smll.202200595. Epub 2022 May 22.

Abstract

Intercalation of organic molecules into the van der Waals gaps of layered materials allows for the preparation of organic/inorganic superlattices for varying promising applications. Herein, the preparation of a series of dye molecule/MoO organic/inorganic superlattice nanoparticles by aqueous intercalation of several dye molecules into layered MoO for fluorescence imaging-guided catalytic therapy is reported. The long MoO nanobelts are treated by ball milling and subsequent aqueous intercalation followed by a cation ion exchange to obtain the dye molecule-intercalated MoO organic/inorganic superlattices. Importantly, because of the activation induced by organic intercalation, the Nile blue (NB)-intercalated MoO (NB-MoO ) nanoparticles show excellent catalytic activity for the generation of reactive oxygen species, that is, hydroxyl radical (·OH) and superoxide anion (·O ), through catalyzing H O and O , respectively. Moreover, the intense fluorescence of the intercalated NB molecules endows NB-MoO with the in vivo fluorescence imaging capability. Thus, the polyvinylpyrrolidone-modified NB-MoO nanoparticles can be used for tumor-specific catalytic therapy to realize efficient cancer cell elimination in vitro and fluorescence imaging-guided tumor ablation in vivo.

摘要

将有机分子插入层状材料的范德华间隙中,可制备用于各种有前途应用的有机/无机超晶格。在此,通过将几种染料分子水相插入层状 MoO 中,制备了一系列染料分子/MoO 有机/无机超晶格纳米粒子,用于荧光成像引导的催化治疗。长 MoO 纳米带经过球磨和随后的水相插层以及阳离子离子交换处理,得到染料分子插层 MoO 有机/无机超晶格。重要的是,由于有机插层的激活作用,尼罗蓝(NB)插层 MoO(NB-MoO)纳米粒子通过分别催化 H2O2 和 O2 生成活性氧物种,即羟基自由基(·OH)和超氧阴离子(·O2-),表现出优异的催化活性。此外,插层 NB 分子的强荧光赋予 NB-MoO 体内荧光成像能力。因此,聚乙烯吡咯烷酮修饰的 NB-MoO 纳米粒子可用于肿瘤特异性催化治疗,以实现体外高效的癌细胞消除和体内荧光成像引导的肿瘤消融。

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