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众人之力:一种具有通用光诊疗特性的巨型近红外二区聚集诱导发光剂用于卓越的原位膀胱癌治疗

Strength in Numbers: A Giant NIR-II AIEgen with One-for-All Phototheranostic Features for Exceptional Orthotopic Bladder Cancer Treatment.

作者信息

You Caifa, Zhu Yiqi, Zhu Jun, Xu Zixuan, Liu Qian, Wang Lei, Zhang Weijie, Hou Jianquan, Wang Dong, Zhong Tang Ben

机构信息

Center for AIE Research, Guangdong Provincial Key Laboratory of New Energy Materials Service Safety, College of Materials Science and Engineering, Shenzhen University, Shenzhen, 518060, P. R. China.

College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2025 Feb 3;64(6):e202417865. doi: 10.1002/anie.202417865. Epub 2024 Nov 16.

DOI:10.1002/anie.202417865
PMID:39469989
Abstract

One-for-all phototheranostics that allows the simultaneous implementations of multiple optical imaging and therapeutic modalities by utilizing a single component, is growing into a sparkling frontier in cancer treatment. Of particular interest is phototheranostic agent with emission in the second near-infrared (NIR-II) window. Nevertheless, the practical uses of those conventional NIR-II agents are severely impeded by their unsatisfactory features including insufficient stability, low synthetic yield, to be extended absorption/ emission wavelengths, and inefficient phototheranostic outcomes. Developing exceptional phototheranostic agents is thus highly desirable yet remains formidably challenging. Herein, we synthesized two novel N-heteroacenes-based NIR-II luminogens, namely 2TT-PPT and 4TT-PBPT, by respectively employing pyrene-fused phenaziothiadiazoles and pyrene-fused bisphenaziothiadiazoles as acceptor skeletons. There is strength in numbers by increasing the fusing rings in N-heteroacenes moieties and numbers of appended donors. Compared to less ring-fused 2TT-PPT, the giant molecule 4TT-PBPT shows improved photophysical characteristics, such as enhanced light absorbance, red-shifted wavelengths, higher brightness, favorable reactive oxygen species (ROS) generation, and elevated photothermal conversion efficiency, which render 4TT-PBPT nanoparticles excellent fluorescence-photoacoustic-photothermal trimodal imaging guided photodynamic-photothermal synergistic therapy for orthotopic bladder cancer.

摘要

通过利用单一组件同时实现多种光学成像和治疗方式的一体化光诊疗技术,正发展成为癌症治疗领域一个闪耀的前沿领域。特别令人感兴趣的是在第二近红外(NIR-II)窗口发射的光诊疗剂。然而,那些传统NIR-II剂的实际应用受到其不令人满意的特性的严重阻碍,包括稳定性不足、合成产率低、吸收/发射波长有待扩展以及光诊疗效果不佳。因此,开发优异的光诊疗剂非常必要,但仍然极具挑战性。在此,我们分别以芘稠合吩嗪并噻二唑和芘稠合双吩嗪并噻二唑作为受体骨架,合成了两种新型的基于氮杂蒽的NIR-II发光体,即2TT-PPT和4TT-PBPT。通过增加氮杂蒽部分的稠合环数和连接供体的数量,可以实现数量上的优势。与较少环稠合的2TT-PPT相比,大分子4TT-PBPT表现出改善的光物理特性,如增强的光吸收、红移的波长、更高的亮度、良好的活性氧(ROS)生成以及提高的光热转换效率,这使得4TT-PBPT纳米颗粒在原位膀胱癌的荧光-光声-光热三模态成像引导的光动力-光热协同治疗中表现出色。

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引用本文的文献

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Unveiling photophysical mechanisms of NIR-II AIE luminogens for multimodal imaging-navigated synergistic therapies.揭示用于多模态成像引导协同治疗的近红外二区聚集诱导发光 luminogens 的光物理机制。
Natl Sci Rev. 2025 Jun 24;12(8):nwaf254. doi: 10.1093/nsr/nwaf254. eCollection 2025 Aug.