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使用顺序激活荧光探针同时检测溃疡性结肠炎疾病中硫化氢和过氧亚硝酸盐失调情况

Simultaneous Detection of Hydrogen Sulfide and Peroxynitrite Dysregulation with a Sequentially Activated Fluorescent Probe in Ulcerative Colitis Disease.

作者信息

Chen Yiliang, Bao Jiawei, Wang Qi, Hameed Muhammad Salman, Tang Siyuan, Chen Qian, Fan Hai, Yan Jufen, Yang Ganggang, Zhang Kui, Han Xinya

机构信息

School of Chemistry and Chemical Engineering, Anhui University of Technology, Ma'anshan 243032, P. R. China.

State Key Laboratory of Green Pesticide, College of Chemistry, Central China Normal University, Wuhan 430079, P. R. China.

出版信息

Anal Chem. 2025 Jan 14;97(1):721-730. doi: 10.1021/acs.analchem.4c05160. Epub 2024 Dec 30.

DOI:10.1021/acs.analchem.4c05160
PMID:39810341
Abstract

Ulcerative colitis (UC), often referred to as "green cancer", is a chronic inflammatory bowel disease with an unclear etiology, closely associated with the imbalance of hydrogen sulfide (HS) and peroxynitrite (ONOO). HS exhibits anti-inflammatory effects at physiological levels, but excessive concentrations can compromise the intestinal barrier, while ONOO aggravates inflammation. To facilitate the molecular-level monitoring of these compounds in UC, we developed a novel fluorescent probe, , capable of simultaneously detecting HS and ONOO via distinct fluorescent channels in a cascade mode. features rapid response times (HS: 6 min; ONOO: 5 min) with well-separated emission peaks (120 nm), minimizing spectral overlap. The probe demonstrates high selectivity and good detection linearity for HS (0-500 μM) and ONOO (0-100 μM), with detection limits of 1.6 μM for HS and 0.05 μM for ONOO. has been successfully applied for imaging HS and ONOO in living cells and zebrafish, enabling the sensitive detection of their fluctuations in a UC mouse model. These findings indicate that is highly promising for studying the roles of HS and ONOO in UC and assessing their biological functions.

摘要

溃疡性结肠炎(UC)常被称为“绿色癌症”,是一种病因不明的慢性炎症性肠病,与硫化氢(HS)和过氧亚硝酸根(ONOO)的失衡密切相关。HS在生理水平上具有抗炎作用,但浓度过高会损害肠道屏障,而ONOO会加剧炎症。为了便于在UC中对这些化合物进行分子水平的监测,我们开发了一种新型荧光探针, ,它能够通过级联模式在不同的荧光通道中同时检测HS和ONOO。 具有快速的响应时间(HS:6分钟;ONOO:5分钟),发射峰分离良好(120纳米),最大限度地减少了光谱重叠。该探针对HS(0 - 500 μM)和ONOO(0 - 100 μM)表现出高选择性和良好的检测线性,HS的检测限为1.6 μM,ONOO的检测限为0.05 μM。 已成功应用于活细胞和斑马鱼中HS和ONOO的成像,能够灵敏地检测它们在UC小鼠模型中的波动。这些发现表明, 在研究HS和ONOO在UC中的作用以及评估它们的生物学功能方面具有很大的前景。

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