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用于多重成像的荧光寿命化学控制

Chemical Control of Fluorescence Lifetime towards Multiplexing Imaging.

作者信息

Ma Junbao, Luo Feng, Hsiung Chia-Heng, Dai Jianan, Tan Zizhu, Ye Songtao, Ding Lina, Shen Baoxing, Zhang Xin

机构信息

Department of Chemistry, Research Center for Industries of the Future, Westlake University, 600 Dunyu Road, Hangzhou, 310030, Zhejiang, China.

Institute of Natural Sciences, Westlake Institute for Advanced Study, 18 Shilongshan Road, Hangzhou, 310024, Zhejiang Province, China.

出版信息

Angew Chem Int Ed Engl. 2024 Jun 17;63(25):e202403029. doi: 10.1002/anie.202403029. Epub 2024 May 14.

Abstract

Fluorescence lifetime imaging has been a powerful tool for biomedical research. Recently, fluorescence lifetime-based multiplexing imaging has expanded imaging channels by using probes that harbor the same spectral channels and distinct excited state lifetime. While it is desirable to control the excited state lifetime of any given fluorescent probes, the rational control of fluorescence lifetimes remains a challenge. Herein, we chose boron dipyrromethene (BODIPY) as a model system and provided chemical strategies to regulate the fluorescence lifetime of its derivatives with varying spectral features. We find electronegativity of structural substituents at the 8' and 5' positions is important to control the lifetime for the green-emitting and red-emitting BODIPY scaffolds. Mechanistically, such influences are exerted via the photo-induced electron transfer and the intramolecular charge transfer processes for the 8' and 5' positions of BODIPY, respectively. Based on these principles, we have generated a group of BODIPY probes that enable imaging experiments to separate multiple targets using fluorescence lifetime as a signal. In addition to BODIPY, we envision modulation of electronegativity of chemical substituents could serve as a feasible strategy to achieve rational control of fluorescence lifetime for a variety of small molecule fluorophores.

摘要

荧光寿命成像一直是生物医学研究的有力工具。最近,基于荧光寿命的多重成像通过使用具有相同光谱通道和不同激发态寿命的探针扩展了成像通道。虽然控制任何给定荧光探针的激发态寿命是理想的,但荧光寿命的合理控制仍然是一个挑战。在此,我们选择硼二吡咯亚甲基(BODIPY)作为模型系统,并提供了化学策略来调节其具有不同光谱特征的衍生物的荧光寿命。我们发现8'和5'位结构取代基的电负性对于控制绿色发射和红色发射BODIPY支架的寿命很重要。从机理上讲,这种影响分别通过BODIPY的8'和5'位的光诱导电子转移和分子内电荷转移过程来施加。基于这些原理,我们生成了一组BODIPY探针,这些探针能够进行成像实验,以荧光寿命作为信号来分离多个目标。除了BODIPY之外,我们设想调节化学取代基的电负性可以作为一种可行的策略,以实现对各种小分子荧光团荧光寿命的合理控制。

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