Ji Xiaoyuan, Kong Na, Wang Junqing, Li Wenliang, Xiao Yuling, Gan Silvia Tian, Zhang Ye, Li Yujing, Song Xiangrong, Xiong Qingqing, Shi Sanjun, Li Zhongjun, Tao Wei, Zhang Han, Mei Lin, Shi Jinjun
School of Pharmaceutical Sciences (Shenzhen), Sun Yat-sen University, Guangzhou, 510275, China.
Center for Nanomedicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, 02115, USA.
Adv Mater. 2018 Jul 18:e1803031. doi: 10.1002/adma.201803031.
Single atom nonmetal 2D nanomaterials have shown considerable potential in cancer nanomedicines, owing to their intriguing properties and biocompatibility. Herein, ultrathin boron nanosheets (B NSs) are prepared through a novel top-down approach by coupling thermal oxidation etching and liquid exfoliation technologies, with controlled nanoscale thickness. Based on the PEGylated B NSs, a new photonic drug delivery platform is developed, which exhibits multiple promising features for cancer therapy and imaging, including: i) efficient NIR-light-to-heat conversion with a high photothermal conversion efficiency of 42.5%, ii) high drug-loading capacity and triggered drug release by NIR light and moderate acidic pH, iii) strong accumulation at tumor sites, iv) multimodal imaging properties (photoacoustic, photothermal, and fluorescence imaging), and v) complete tumor ablation and excellent biocompatibility. As far as it is known, this is the first report on the top-down fabrication of ultrathin 2D B NSs by the combined thermal oxidation etching and liquid exfoliation, as well as their application as a multimodal imaging-guided drug delivery platform. The newly prepared B NSs are also expected to provide a robust and useful 2D nanoplatform for various biomedical applications.
单原子非金属二维纳米材料因其独特的性质和生物相容性,在癌症纳米医学中展现出了巨大的潜力。在此,通过热氧化蚀刻和液体剥离技术相结合的新型自上而下方法制备了具有可控纳米级厚度的超薄硼纳米片(B NSs)。基于聚乙二醇化的B NSs,开发了一种新的光子药物递送平台,该平台在癌症治疗和成像方面具有多个有前景的特性,包括:i)高效的近红外光到热转换,光热转换效率高达42.5%;ii)高载药能力,可通过近红外光和适度酸性pH触发药物释放;iii)在肿瘤部位有强烈的聚集;iv)多模态成像特性(光声、光热和荧光成像);v)完全肿瘤消融和优异的生物相容性。据所知,这是首次关于通过热氧化蚀刻和液体剥离相结合的自上而下方法制备超薄二维B NSs及其作为多模态成像引导药物递送平台应用的报道。新制备的B NSs也有望为各种生物医学应用提供一个强大且有用的二维纳米平台。