Department of Chemical and Biomolecular Engineering, 4 Engineering Drive 4, National University of Singapore (NUS), Singapore 117585.
Chem Soc Rev. 2015 May 21;44(10):2798-811. doi: 10.1039/c4cs00444b. Epub 2015 Feb 17.
Driven by the high demand for sensitive and specific tools for optical sensing and imaging, bioprobes with various working mechanisms and advanced functionalities are flourishing at an incredible speed. Conventional fluorescent probes suffer from the notorious effect of aggregation-caused quenching that imposes limitation on their labelling efficiency or concentration to achieve desired sensitivity. The recently emerged fluorogens with an aggregation-induced emission (AIE) feature offer a timely remedy to tackle the challenge. Utilizing the unique properties of AIE fluorogens (AIEgens), specific light-up probes have been constructed through functionalization with recognition elements, showing advantages such as low background interference, a high signal to noise ratio and superior photostability with activatable therapeutic effects. In this tutorial review, we summarize the recent progress in the development of specific AIEgen-based light-up bioprobes. Through illustration of their operation mechanisms and application examples, we hope to provide guidelines for the design of more advanced AIE sensing and imaging platforms with high selectivity, great sensitivity and wide adaptability to a broad range of biomedical applications.
受对光学传感和成像用灵敏且特异工具的高需求驱动,具有各种工作机制和先进功能的生物探针正以惊人的速度蓬勃发展。传统荧光探针存在聚集诱导猝灭的严重影响,这限制了它们的标记效率或浓度以达到所需的灵敏度。最近出现的具有聚集诱导发射(AIE)特性的荧光团为解决这一挑战提供了及时的补救措施。利用 AIE 荧光团(AIEgens)的独特性质,通过与识别元件的功能化,构建了特定的点亮探针,具有背景干扰低、信噪比高和光稳定性好等优点,并具有可激活的治疗效果。在本综述中,我们总结了基于特定 AIEgen 的点亮生物探针的最新进展。通过阐述它们的工作机制和应用实例,我们希望为设计具有高选择性、高灵敏度和广泛适应性的更先进的 AIE 传感和成像平台提供指导,以适用于广泛的生物医学应用。