Key Laboratory of Environmental Remediation and Ecological Health, Ministry of Education, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China.
Key Laboratory of Environmental Remediation and Ecological Health, Ministry of Education, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China.
J Hazard Mater. 2024 Jul 5;472:134558. doi: 10.1016/j.jhazmat.2024.134558. Epub 2024 May 8.
Nitric oxide (NO) functions as an essential signalling molecule in various physiological and pathological pathways. In vitro and vivo redox processes mediated by reactive oxygen species (ROS) and nitric oxide (NO) directly influence the intracellular state. In this study, a red-emitting fluorescent nanoprobe, N,S-CDs@Zn-ICA, was synthesized to monitor NO fluctuations in living cells and zebrafish under the exposure to various pollutants. Red-emissive carbon dots (N,S-CDs) were synthesized by a hydrothermal method using o-phenylenediamine and urea as carbon / nitrogen sources, and HSO as sulfur source. Glutathione (GSH) was introduced to link N,S-CDs with metal organic complexes (Zn-ICA) through an amidation reaction to fabricate a carbon dot-based composite fluorescent probe, which greatly improved the selectivity, stability, and response time of the N,S-CDs. The composite probe has high selectivity and sensitivity with limit of detection (LOD) of 96.0 nM. Furthermore, the proposed probe was successfully used to monitor the dynamic changes in NO levels and evaluate oxidative stress in MCF-7 cells and zebrafish under the exposure to various pollutants, including seven heavy metal ions (such as Pb, Cd, and Hg) and nine organic pollutants at different concentrations and exposure times. This work provides a novel strategy for constructing highly selective and red-emitting fluorescent probe for real-time and dynamic monitoring of NO and further evaluating oxidative stress induced by pollutants in vitro and in vivo via fluorescence imaging.
一氧化氮 (NO) 在各种生理和病理途径中作为一种重要的信号分子发挥作用。活性氧 (ROS) 和一氧化氮 (NO) 介导的体外和体内氧化还原过程直接影响细胞内状态。在这项研究中,合成了一种红色发射荧光纳米探针 N,S-CDs@Zn-ICA,以监测暴露于各种污染物下活细胞和斑马鱼中的 NO 波动。红色发射碳点 (N,S-CDs) 通过水热法使用邻苯二胺和尿素作为碳/氮源,HSO 作为硫源合成。通过酰胺化反应将谷胱甘肽 (GSH) 引入到 N,S-CDs 与金属有机配合物 (Zn-ICA) 中,以制造基于碳点的复合荧光探针,这大大提高了 N,S-CDs 的选择性、稳定性和响应时间。该复合探针具有高选择性和灵敏度,检测限 (LOD) 为 96.0 nM。此外,该探针成功用于监测 MCF-7 细胞和斑马鱼中 NO 水平的动态变化,并评估暴露于各种污染物(包括七种重金属离子(如 Pb、Cd 和 Hg)和九种有机污染物)下的氧化应激不同浓度和暴露时间。这项工作为构建高选择性和红色发射荧光探针提供了一种新策略,用于实时和动态监测 NO,并通过荧光成像进一步评估体外和体内污染物引起的氧化应激。