Zhang Meng-Qian, Guan Wen-Hua, Wang Jiahe, Zhao Bin, Zeng Jian-Yang, Lu Jun-Cheng, Gao Min, Wang Xiao-Bo
School of Chemistry and Chemical Engineering, Linyi University, Linyi 276005, PR China.
Linyi Hospital of Traditional Chinese Medicine, Linyi 276005, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2025 Apr 5;330:125738. doi: 10.1016/j.saa.2025.125738. Epub 2025 Jan 10.
Normal levels of HOCl can resist pathogen invasion and maintain cellular redox balance. However, excessive HOCl can easily harm the ecological environment and human health. Establishing a reliable approach for detection of HOCl can help resolve controversial issues regarding HOCl in physiological systems and help detect HOCl in complex environmental water samples. This study presents the design and evaluation of a HOCl-specific self-immolative fluorescent probe (OX-OCl), which is based on the N-protected phenoxazine dye structure. In aqueous solution, the probe demonstrates a rapid and highly specific response to HOCl within a brief time frame of 15 s, exhibiting good sensitivity with a limit of detection (LOD) of 15.3 nM. Notably, the reaction of OX-OCl with HOCl results in substantial changes in both UV absorption and fluorescence emission. Benefit from this, smartphone-assisted colorimetric and fluorescent sensing platforms had been developed for real-time monitoring of HOCl. Furthermore, owing to its excellent biocompatibility, OX-OCl has been successfully utilized for near-infrared bioimaging of HOCl in live cells and mouse models of arthritis. In brief, this probe offers a new perspective for the convenient monitoring of HOCl in environmental contexts and provides a visual tool for the early clinical diagnosis of related diseases.
次氯酸的正常水平可以抵抗病原体入侵并维持细胞氧化还原平衡。然而,过量的次氯酸很容易损害生态环境和人类健康。建立一种可靠的次氯酸检测方法有助于解决生理系统中有关次氯酸的争议问题,并有助于检测复杂环境水样中的次氯酸。本研究介绍了一种基于N-保护吩恶嗪染料结构的次氯酸特异性自牺牲荧光探针(OX-OCl)的设计与评估。在水溶液中,该探针在15秒的短时间内对次氯酸表现出快速且高度特异性的响应,检测限(LOD)为15.3 nM,具有良好的灵敏度。值得注意的是,OX-OCl与次氯酸的反应导致紫外吸收和荧光发射都发生了显著变化。得益于此,已开发出智能手机辅助的比色和荧光传感平台用于次氯酸的实时监测。此外,由于其优异的生物相容性,OX-OCl已成功用于活细胞和关节炎小鼠模型中次氯酸的近红外生物成像。简而言之,该探针对环境中次氯酸的便捷监测提供了新的视角,并为相关疾病的早期临床诊断提供了一种可视化工具。