Department of Medical Imaging, Jinling Hospital, School of Medicine, Nanjing University, Nangjing 210002, PR China; Department of Radiology, The First Hospital Affiliated to Soochow University, Suzhou 215006, PR China.
Department of General Surgery, The First Hospital Affiliated to Soochow University, Suzhou 215006, PR China.
J Colloid Interface Sci. 2018 Feb 15;512:439-445. doi: 10.1016/j.jcis.2017.10.085. Epub 2017 Oct 25.
Herein, we demonstrate a coating-etching strategy to directly synthesize hollow Prussian blue (PB) nanocubes with well-dispersed Ag nanoparticles (denoted as Ag-HPB). The method is accomplished by introduction of PB precursors, KFe(CN) and Fe into a reaction system containing AgNO and ascorbic acid, in which a series reactions contain formation of Ag nanoparticles, coating of PB on the nanoparticles, and diffusion of Ag into the PB frameworks occur. The strategy for preparation of the hollow structured Ag-HPB is intrinsically simple and does not require pre-preparation of any sacrificial templates or toxic etching agents. The obtained Ag-HPB nanocubes possess uniform size (69 nm), well-defined hollow structure, strong near-infrared photothermal conversion capacity, and excellent photoacoustic and magnetic resonance imaging abilities. Furthermore, an injectable photothermal implants are prepared for the first time by mixing the Ag-HPB nanocubes with clinically used biological glue, which significantly enhance photothermal anti-tumor efficacy, showing great potential for clinical tumor treatment.
在此,我们展示了一种涂层-蚀刻策略,可直接合成具有良好分散性的银纳米粒子的中空普鲁士蓝(PB)纳米立方(表示为 Ag-HPB)。该方法通过将 PB 前体 KFe(CN) 和 Fe 引入含有 AgNO 和抗坏血酸的反应体系中来完成,其中一系列反应包括形成银纳米粒子、将 PB 涂覆在纳米粒子上以及 Ag 扩散到 PB 框架中。制备中空结构 Ag-HPB 的策略本质上很简单,不需要预先制备任何牺牲模板或有毒蚀刻剂。所获得的 Ag-HPB 纳米立方具有均匀的尺寸(69nm)、明确的中空结构、较强的近红外光热转换能力以及优异的光声和磁共振成像能力。此外,首次通过将 Ag-HPB 纳米立方与临床使用的生物胶混合制备可注射的光热植入物,显著提高了光热抗肿瘤疗效,在临床肿瘤治疗方面具有很大的应用潜力。