Huang Haiyan, Li Menlong, Gu Jingsi, Roy Shubham, Jin Jian, Kuang Ting, Zhang Yinghe, Hu Genwen, Guo Bing
School of Science, Shenzhen Key Laboratory of Advanced Functional Carbon Materials Research and Comprehensive Application, Harbin Institute of Technology, Shenzhen, 518055, China.
Education Center and Experiments and Innovations, Harbin Institute of Technology, Shenzhen, 518055, China.
J Nanobiotechnology. 2024 Dec 23;22(1):788. doi: 10.1186/s12951-024-03074-3.
Cyanine dye-containing nanoparticles have widely been used in "all-in-one" NIR fluorescence imaging (FI)-guided photothermal therapy (PTT) because of their intrinsically large extinction coefficient and available physical and chemical modulation methods to tune absorption and emission wavelengths. The combination of good brightness and excellent tumor-targeting capacity is the key to realize efficient NIR-II FI-guided PTT. In this study, by covalently decorating NIR-II absorptive cyanine dyes with bulky AIE motify, we demonstrate how steric hindrance suppresses π-π stacking-induced fluorescence quenching and contributes to the good brightness of NIR-II FI of subcutaneous glioblastoma. The resulting cyanine dye (C-TPAE) is 5 times brighter than the original cyanine dye in the formulated liposomal nanoparticles and C-TPAE-AL has a high photothermal conversion efficiency of 62.4%, with good colloidal and light stability. Importantly, the ApoE peptide is absorbed on the liposomal surface, yielding lipoprotein-mimicking nanoparticles, which achieve active targeting of glioblastoma and efficient FI-guided PTT without tumor recurrence without any side effects on normal organs (heart, kidneys, liver, spleen, or lung). This research highlights a facile design route for bright NIR-II emissive and NIR-II photothermal cyanine dyes and indicates that cyanine dye-containing biomimetic theranostic nanoplatforms are promising candidates for future precision therapy.
含菁染料的纳米颗粒因其固有的大消光系数以及可用于调节吸收和发射波长的物理和化学调制方法,已广泛应用于“一体化”近红外荧光成像(FI)引导的光热疗法(PTT)。良好的亮度与出色的肿瘤靶向能力相结合是实现高效近红外二区荧光成像引导光热疗法的关键。在本研究中,通过用具有聚集诱导发光特性的大体积基团共价修饰近红外二区吸收性菁染料,我们展示了空间位阻如何抑制π-π堆积诱导的荧光猝灭,并有助于皮下胶质母细胞瘤近红外二区荧光成像的良好亮度。所得的菁染料(C-TPAE)在配制的脂质体纳米颗粒中的亮度比原始菁染料高5倍,且C-TPAE-AL具有62.4%的高光热转换效率,具有良好的胶体稳定性和光稳定性。重要的是,载脂蛋白E肽吸附在脂质体表面,产生模拟脂蛋白的纳米颗粒,可实现对胶质母细胞瘤的主动靶向以及高效的荧光成像引导光热疗法,且无肿瘤复发,对正常器官(心脏、肾脏、肝脏、脾脏或肺)无任何副作用。本研究突出了一种用于设计明亮的近红外二区发射和近红外二区光热菁染料的简便路线,并表明含菁染料的仿生诊疗纳米平台是未来精准治疗的有前景的候选者。