State Key Laboratory of Chemical Resource Engineering, School of Science , Beijing University of Chemical Technology , 15 Beisanhuan Road , Beijing 100029 , P.R. China.
Nano Lett. 2019 Feb 13;19(2):1179-1189. doi: 10.1021/acs.nanolett.8b04618. Epub 2019 Jan 18.
Developing nanophotothermal agents (PTAs) with satisfied photothermal conversion efficiency (PTCE) in the second NIR window (1000-1350 nm, NIR II) holds great promise for enhanced photothermal therapy effect. Herein, we develop a NIR-II PTA with advanced PTCE, based on a new two-dimensional ultrathin tellurium oxide/ammonium tungsten bronze (TeO/(NH) WO) nanoribbons (TONW NRs). The doped ammonia ions-mediated-free-electrons injection into the lowest unoccupied molecular orbital band of WO combined with the electronic transitions between W ions and the lone pair of electrons in Te atoms achieve excellent NIR absorption of TONW NRs resulting from localized surface plasmon resonance. The polyethylene glycol functionalized TONW NRs (PEG-TONW NRs) exhibit good stability and biocompatibility, displaying a PTCE high to 43.6%, surpassing many previous nano-PTAs active in the NIR II region, leading to remarkable tumor ablation ability both in vitro and in vivo. Meanwhile, advanced X-ray computed tomography (CT) and photoacoustic (PA) imaging capability of PEG-TONW NRs were also realized. Given the admirable photothermal effect in NIR II region, good biocompatibility, and advanced CT/PA imaging diagnosis capability, the novel PEG-TONW NRs is promising in future personalized medicine applications.
开发具有满意的光热转换效率(PTCE)的近红外二区(1000-1350nm,NIR II)纳米光热剂对于增强光热治疗效果具有很大的前景。在此,我们基于一种新型二维超薄氧化碲/铵钨青铜(TeO/(NH) WO)纳米带(TONW NRs),开发了一种具有先进 PTCE 的近红外二区 PTA。掺杂的氨离子介导的自由电子注入 WO 的最低未占据分子轨道带,以及 W 离子和 Te 原子中孤对电子之间的电子跃迁,导致 TONW NRs 具有优异的近红外吸收,这归因于局域表面等离子体共振。聚乙二醇功能化的 TONW NRs(PEG-TONW NRs)表现出良好的稳定性和生物相容性,具有高达 43.6%的 PTCE,超过了许多以前在近红外二区活跃的纳米 PTA,在体外和体内都表现出显著的肿瘤消融能力。同时,还实现了 PEG-TONW NRs 的先进 X 射线计算机断层扫描(CT)和光声(PA)成像能力。鉴于其在近红外二区令人钦佩的光热效应、良好的生物相容性以及先进的 CT/PA 成像诊断能力,新型 PEG-TONW NRs 有望在未来的个性化医疗应用中得到应用。