4.7 Article

A novel fluorescent probe for real-time imaging of thionitrous acid under inflammatory and oxidative conditions

期刊

REDOX BIOLOGY
卷 54, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.redox.2022.102372

关键词

Fluorescent probe; Molecular imaging; Thionitrous acid; Acute ulcerative colitis; Renal ischemia; reperfusion injury

资金

  1. National Natural Science Foundation of China [81920108022]
  2. Natural Science Foundation of Chongqing [cstc2020jcyj-bshX0014]

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In this study, a novel fluorescent probe SNP-1 was developed for real-time and high selectivity detection of HSNO. SNP-1 exhibited strong fluorescence, low detection limit, and a broad linear detection range. The probe successfully visualized changes in HSNO levels in two disease models and showed a good correlation with disease activity index. Hence, SNP-1 can serve as a promising fluorescent probe for precise detection of HSNO in various biological systems.
Thionitrous acid (HSNO), a crosstalk intermediate of two crucial gasotransmitters nitric oxide and hydrogen sulfide, plays a critical role in redox regulation of cellular signaling and functions. However, real-time and facile detection of HSNO with high selectivity and sensitivity remains highly challenging. Herein we report a novel fluorescent probe (SNP-1) for HSNO detection. SNP-1 has a simple molecular structure, but showing strong fluorescence, a low detection limit, a broad linear detection range (from nanomolar to micromolar concentrations), ultrasensitivity, and high selectivity for HSNO in both aqueous media and cells. Benefiting from these unique features, SNP-1 could effectively visualize changes of HSNO levels in mouse models of acute ulcerative colitis and renal ischemia/reperfusion injury. Moreover, the good correlation between colonic HSNO levels and disease activity index demonstrated that HSNO is a promising new diagnostic agent for acute ulcerative colitis. Therefore, SNP-1 can serve as a useful fluorescent probe for precision detection of HSNO in various biological systems, thereby facilitating mechanistic studies, therapeutic assessment, and high-content drug screening for corresponding diseases.

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