State Key Laboratory of Fine Chemicals, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China.
School of Bioengineering, Dalian University of Technology, 2 Linggong Road, Dalian 116024, China.
Chem Soc Rev. 2022 Mar 7;51(5):1795-1835. doi: 10.1039/d1cs00307k.
The discovery of a near-infrared (NIR, 650-900 nm) fluorescent chromophore hemicyanine dye with high structural tailorability is of great significance in the field of detection, bioimaging, and medical therapeutic applications. It exhibits many outstanding advantages including absorption and emission in the NIR region, tunable spectral properties, high photostability as well as a large Stokes shift. These properties are superior to those of conventional fluorogens, such as coumarin, fluorescein, naphthalimides, rhodamine, and cyanine. Researchers have made remarkable progress in developing activity-based multifunctional fluorescent probes based on hemicyanine skeletons for monitoring vital biomolecules in living systems through the output of fluorescence/photoacoustic signals, and integration of diagnosis and treatment of diseases using chemotherapy or photothermal/photodynamic therapy or combination therapy. These achievements prompted researchers to develop more smart fluorescent probes using a hemicyanine fluorogen as a template. In this review, we begin by describing the brief history of the discovery of hemicyanine dyes, synthetic approaches, and design strategies for activity-based functional fluorescent probes. Then, many selected hemicyanine-based probes that can detect ions, small biomolecules, overexpressed enzymes and diagnostic reagents for diseases are systematically highlighted. Finally, potential drawbacks and the outlook for future investigation and clinical medicine transformation of hemicyanine-based activatable functional probes are also discussed.
发现具有高度结构可定制性的近红外(NIR,650-900nm)荧光生色团半花菁染料在检测、生物成像和医学治疗应用领域具有重要意义。它具有许多突出的优点,包括在近红外区域的吸收和发射、可调谐的光谱性质、高光稳定性以及大斯托克斯位移。这些性质优于传统荧光团,如香豆素、荧光素、萘酰亚胺、罗丹明和花菁。研究人员在开发基于半花菁骨架的基于活性的多功能荧光探针方面取得了显著进展,通过荧光/光声信号的输出,监测活系统中的重要生物分子,并整合使用化学疗法或光热/光动力疗法或联合疗法进行疾病的诊断和治疗。这些成就促使研究人员使用半花菁荧光团作为模板开发更多智能荧光探针。在这篇综述中,我们首先描述了半花菁染料的发现简史、合成方法和基于活性的功能荧光探针的设计策略。然后,系统地突出了许多基于半花菁的探针,这些探针可以检测离子、小分子、过表达的酶以及用于疾病的诊断试剂。最后,还讨论了基于半花菁的可激活功能探针的潜在缺点和未来研究和临床医学转化的前景。