化学
荧光团
荧光
原位
荧光寿命成像显微镜
生物相容性
生物物理学
紧身衣
结肠炎
斑马鱼
分子探针
微粘度
临床前影像学
作者
Yujie Huang,Liping Wang,Fang Shen,Qi Liu,Zhangkang Lv,Qiumei Huang,Xing‐Can Shen,Hua Chen
标识
DOI:10.1021/acs.analchem.6c03226
摘要
Unimolecular dual-locked activatable fluorescent probes have emerged as promising tools for biomedical applications. However, the majority of dual-locked probes are designed by introducing biomarker-recognition moieties as fluorescence quenchers into classical fluorophores, a strategy that often suffers from persistent background fluorescence and nonspecific activation, ultimately resulting in limited signal activation and increased risk of false positives. Herein, to address this issue, we report tandem-locked activatable fluorescent probe NPB based on an in situ fluorophore synthesis strategy for colitis imaging and diagnosis. Probe NPB exhibited a remarkable fluorescence enhancement (420.0-fold) upon activation by H 2 O 2 /viscosity associated with colitis, wherein H 2 O 2 triggers the fluorogenic reaction to form dye NPH, and the subsequently elevated viscosity markedly enhances its fluorescence. Moreover, the probe enables in situ monitoring of pathological oxidative stress and microviscosity elevation with high specificity and good biocompatibility in living cells. More importantly, near-infrared (NIR) fluorescence imaging with probe NPB allows for the accurate visualization and diagnosis of dextran sulfate sodium (DSS)-induced acute colitis in both zebrafish and mouse models.This work not only develops a H 2 O 2 /viscosity tandem-locked fluorescent probe for colitis imaging and diagnosis but also provides a valuable in situ fluorophore synthesis strategy for the rational design of next-generation dual-locked probes.
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