Department of Emergency Medicine, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, 450052, China.
Department of Orthopedics, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, 450052, China.
J Nanobiotechnology. 2024 Jul 30;22(1):451. doi: 10.1186/s12951-024-02741-9.
The lack of a simple design strategy to obtain ideal conjugated polymers (CPs) with high absorbance and fluorescence (FL) in the near-infrared-II (NIR-II; 1000-1700 nm) region still hampers the success of NIR-II light-triggered phototheranostics. Herein, novel phototheranostic nanoparticles (PPN-NO NPs) were successfully prepared by coloading a cationic NIR-II CPs (PBC-co-PBF-NMe) and a NO donor (S-nitroso-N-acetylpenicillamine, SNAP) onto a 1:1 mixture of DSPE-PEG and dimyristoylphosphatidylcholine (DMPC) for NIR-II FL and NIR-II photoacoustic (PA) imaging-guided low-temperature NIR-II photothermal therapy (PTT) and gas combination therapy for cancer treatment. A precise NIR-II FL dually enhanced design tactic was proposed herein by integrating flexible nonconjugated segments (C6) into the CPs backbone and incorporating quaternary ammonium salt cationic units into the CPs side chain, which considerably increased the radiative decay pathway, resulting in desirable NIR-II FL intensity and balanced NIR-II absorption and NIR PTT properties. The phototheranostic PPN-NO NPs exhibited distinguished NIR-II FL and PA imaging performance in tumor-bearing mice models. Furthermore, the low-temperature photothermal effect of PPN-NO NPs could initiate NO release upon 980 nm laser irradiation, efficiently suppressing tumor growth owing to the combination of low-temperature NIR-II PTT and NO gas therapy in vitro and in vivo.
缺乏一种简单的设计策略来获得具有高吸收和荧光(FL)的理想近红外-II(NIR-II;1000-1700nm)共轭聚合物(CPs),这仍然阻碍了 NIR-II 光触发光热治疗的成功。在此,通过将阳离子 NIR-II CPs(PBC-co-PBF-NMe)和一氧化氮供体(S-亚硝基-N-乙酰青霉胺,SNAP)共负载到 DSPE-PEG 和二肉豆蔻酰磷脂酰胆碱(DMPC)的 1:1 混合物上,成功制备了新型光热治疗纳米粒子(PPN-NO NPs),用于 NIR-II FL 和 NIR-II 光声(PA)成像引导的低温 NIR-II 光热治疗(PTT)和气体联合治疗癌症。本文提出了一种精确的 NIR-II FL 双重增强设计策略,通过将柔性非共轭片段(C6)整合到 CPs 主链中,并将季铵盐阳离子单元整合到 CPs 侧链中,这极大地增加了辐射衰减途径,从而获得了理想的 NIR-II FL 强度和平衡的 NIR-II 吸收和 NIR PTT 性能。光热治疗 PPN-NO NPs 在荷瘤小鼠模型中表现出出色的 NIR-II FL 和 PA 成像性能。此外,PPN-NO NPs 的低温光热效应可以在 980nm 激光照射下引发 NO 释放,由于低温 NIR-II PTT 和 NO 气体治疗的结合,有效地抑制了肿瘤的生长,这在体外和体内都得到了验证。