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一种基于 2-氮杂 Cope 重排的比率型 ESIPT 探针,用于活细胞中甲醛的快速和选择性检测。

A ratiometric ESIPT probe based on 2-aza-Cope rearrangement for rapid and selective detection of formaldehyde in living cells.

机构信息

MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.

Guangdong Provincial Key Laboratory of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.

出版信息

Analyst. 2022 Jan 17;147(2):252-261. doi: 10.1039/d1an01722e.

Abstract

Formaldehyde (FA) is a crucial reactive signaling molecule participating in epigenetic and metabolic pathways. However, abnormally elevated levels of FA are implicated in various diseases spanning from tumors to neurodegenerative disorders. Despite being highly selective for FA, current 2-aza-Cope-based fluorescent probes leave room for improvement because their relatively slow reaction kinetics (1-9 hours response time) hinder their capability to track transient biological FA. Herein, we present a ratiometric fluorescent probe, FormAFP, based on excited state intramolecular photon transfer (ESIPT) for rapid (within 10 min), selective (above 70-fold over other RCS) and sensitive (240-times fluorescence enhancement with 66 nM detection limit) detection of FA 2-aza-Cope rearrangement. The probe also displayed a fast response (<20 min) to both exogenous and endogenous FA in living cells. Besides, FormAFP was capable of monitoring FA released by folate degradation in living MCF7 cells. More importantly, FormAFP successfully detected fluctuations of endogenous FA levels in oxidative stress stimulation, demonstrating its potential as an ideal tool to explore FA biology.

摘要

甲醛(FA)是一种参与表观遗传和代谢途径的重要反应性信号分子。然而,异常升高的 FA 水平与从肿瘤到神经退行性疾病等各种疾病有关。尽管目前基于 2-氮杂-Cope 的荧光探针对 FA 具有高度选择性,但由于其相对较慢的反应动力学(1-9 小时的响应时间),限制了其追踪瞬态生物 FA 的能力,仍有改进的空间。在此,我们提出了一种基于激发态分子内质子转移(ESIPT)的比率型荧光探针 FormAFP,用于快速(在 10 分钟内)、选择性(相对于其他 RCS 超过 70 倍)和灵敏(检测限为 66 nM 时荧光增强 240 倍)检测 FA 的 2-氮杂-Cope 重排。该探针还在活细胞中外源和内源性 FA 显示出快速响应(<20 分钟)。此外,FormAFP 能够监测活 MCF7 细胞中叶酸降解释放的 FA。更重要的是,FormAFP 成功检测到氧化应激刺激下内源性 FA 水平的波动,证明其作为探索 FA 生物学的理想工具的潜力。

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