Cui Mingyue, Liu Sangmo, Song Bin, Guo Daoxia, Wang Jinhua, Hu Guyue, Su Yuanyuan, He Yao
Laboratory of Nanoscale Biochemical Analysis Institute of Functional Nano & Soft Materials (FUNSOM), and Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, 199 Ren'ai Road, Suzhou, 215123, Jiangsu, People's Republic of China.
Nanomicro Lett. 2019 Sep 9;11(1):73. doi: 10.1007/s40820-019-0306-9.
The utilization of diagnosis to guide/aid therapy procedures has shown great prospects in the era of personalized medicine along with the recognition of tumor heterogeneity and complexity. Herein, a kind of multifunctional silicon-based nanostructure, i.e., gold nanoparticles-decorated fluorescent silicon nanorods (Au@SiNRs), is fabricated and exploited for tumor-targeted multimodal imaging-guided photothermal therapy. In particular, the prepared Au@SiNRs feature high photothermal conversion efficiency (~ 43.9%) and strong photothermal stability (photothermal performance stays constant after five-cycle NIR laser irradiation), making them high-performance agents for simultaneously photoacoustic and infrared thermal imaging. The Au@SiNRs are readily modified with targeting peptide ligands, enabling an enhanced tumor accumulation with a high value of ~ 8.74% ID g. Taking advantages of these unique merits, the Au@SiNRs are superbly suitable for specifically ablating tumors in vivo without appreciable toxicity under the guidance of multimodal imaging. Typically, all the mice treated with the Au@SiNRs remain alive, and no distinct tumor recurrence is observed during 60-day investigation.
随着对肿瘤异质性和复杂性的认识,在个性化医疗时代,利用诊断来指导/辅助治疗程序已展现出巨大前景。在此,一种多功能硅基纳米结构,即金纳米粒子修饰的荧光硅纳米棒(Au@SiNRs)被制备并用于肿瘤靶向多模态成像引导的光热治疗。特别地,所制备的Au@SiNRs具有高光热转换效率(约43.9%)和强光热稳定性(在五次近红外激光照射后光热性能保持恒定),使其成为用于同时进行光声和红外热成像的高性能试剂。Au@SiNRs易于用靶向肽配体修饰,实现了~8.74% ID/g的高肿瘤摄取率,从而增强了肿瘤蓄积。利用这些独特优点,Au@SiNRs非常适合在多模态成像引导下在体内特异性消融肿瘤且无明显毒性。通常,所有用Au@SiNRs治疗的小鼠均存活,并且在60天的观察期内未观察到明显的肿瘤复发。