School of Science, Shenzhen Key Laboratory of Flexible Printed Electronics Technology, 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.
Adv Healthc Mater. 2024 Jun;13(16):e2304506. doi: 10.1002/adhm.202304506. Epub 2024 Mar 15.
Fluorescence imaging in the second near-infrared window (NIR-II) is burgeoning because of its higher imaging fidelity in monitoring physiological and pathological processes than clinical visible/the second near-infrared window fluorescence imaging. Notably, the imaging fidelity is heavily dependent on fluorescence agents. So far, indocyanine green, one of the polymethine dyes, with good biocompatibility and renal clearance is the only dye approved by the Food and Drug Administration, but it shows relatively low NIR-II brightness. Importantly, tremendous efforts are devoted to synthesizing polymethine dyes for imaging preclinically and clinically. They have shown feasibility in the customization of structure and properties to fulfill various needs in imaging and therapy. Herein, a timely update on NIR-II polymethine dyes, with a special focus on molecular design strategies for fluorescent, photoacoustic, and multimodal imaging, is offered. Furthermore, the progress of polymethine dyes in sensing pathological biomarkers and even reporting drug release is illustrated. Moreover, the NIR-II fluorescence imaging-guided therapies with polymethine dyes are summarized regarding chemo-, photothermal, photodynamic, and multimodal approaches. In addition, artificial intelligence is pointed out for its potential to expedite dye development. This comprehensive review will inspire interest among a wide audience and offer a handbook for people with an interest in NIR-II polymethine dyes.
近红外二区(NIR-II)荧光成像是近年来新兴的研究领域,与临床可见光/近红外二区荧光成像相比,它在监测生理和病理过程方面具有更高的成像保真度。值得注意的是,成像的保真度在很大程度上取决于荧光探针。到目前为止,具有良好生物相容性和肾脏清除能力的聚甲川染料吲哚菁绿是唯一一种获得美国食品和药物管理局批准的染料,但它在近红外二区的亮度相对较低。重要的是,研究人员正在努力合成聚甲川染料,用于临床前和临床成像。这些染料在结构和性能的定制方面具有可行性,能够满足成像和治疗的各种需求。本文及时更新了近红外二区聚甲川染料的研究进展,特别关注荧光、光声和多模态成像的分子设计策略。此外,还阐述了聚甲川染料在检测病理生物标志物甚至报告药物释放方面的进展。此外,还总结了基于聚甲川染料的近红外二区荧光成像引导治疗的研究进展,包括化学治疗、光热治疗、光动力治疗和多模态治疗。此外,还指出了人工智能在加速染料开发方面的潜力。这篇综述将激发广大读者的兴趣,并为对近红外二区聚甲川染料感兴趣的人们提供一本实用手册。