School of Bioscience and Biotechnology, Hunan Agricultural University, Changsha 410128, P.R. China.
School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, P.R. China.
Analyst. 2022 Sep 12;147(18):3958-3973. doi: 10.1039/d2an00679k.
With the rapid development of physiopathology and the surge in demand for comprehension of micro-scale physiological events, AIE-based bio-probes are found superior in presenting precise and practical results in enzyme imaging and analysis with a high signal-to-noise ratio and non-destructive operation. By delivering enzyme-responding "light-up" fluorescence signals, the visual and real-time tracking of the distribution and activity of intracellular enzymes is accomplished with AIE-based bio-probes. In particular, by combining with modern nano-encapsulation technologies, AIE-based compounds can realize the simultaneous diagnosis and treatment of specific diseases that are difficult to deal with through traditional strategies. This review summarizes and generalizes the typical AIE-based bio-probes reported recently based on the AIE mechanisms of solubility changes, excited-state intramolecular proton transfer (ESIPT), electrostatic interactions, and hydrophobic interactions, expounding their great values in the bio-sensing and bio-medicine field. Advanced enzyme detection and estimation, cell identification, disease diagnosis, and controlled drug release are demonstrated with high confidence and reproducibility. Through the in-depth analysis of these bio-probes' design and working principles, currently existing drawbacks and further future directions are subsequently proposed to promote a more prosperous development of AIE-based enzyme probes.
随着病理生理学的快速发展和对微观生理事件理解需求的增长,基于聚集诱导发光(AIE)的生物探针在酶成像和分析中具有出色的性能,能够提供精确而实用的结果,具有高信噪比和非破坏性操作。通过提供酶响应的“点亮”荧光信号,基于 AIE 的生物探针能够实现细胞内酶的分布和活性的可视化和实时跟踪。特别是,通过与现代纳米封装技术结合,基于 AIE 的化合物可以实现特定疾病的同时诊断和治疗,这些疾病通过传统策略难以处理。本综述总结和概括了最近基于溶解度变化、激发态分子内质子转移(ESIPT)、静电相互作用和疏水相互作用的典型 AIE 生物探针,阐述了它们在生物传感和生物医学领域的重要价值。这些生物探针在高级酶检测和估计、细胞识别、疾病诊断和控制药物释放方面具有高度的可信度和可重复性。通过深入分析这些生物探针的设计和工作原理,随后提出了当前存在的缺点和进一步的未来方向,以促进基于 AIE 的酶探针更繁荣的发展。