化学
氧化还原
过氧亚硝酸盐
氧化应激
斑马鱼
氧化磷酸化
生物物理学
活性氧
线粒体
荧光
平衡
细胞生物学
过氧亚硝酸
抗氧化剂
生物化学
活性氮物种
细胞
氧化还原
细胞模型
荧光寿命成像显微镜
神经退行性变
纳米技术
细胞室
作者
Yong Li,Jingkun Sun,Xiaolong Ni,Yankai Wang,Yun Chen,Xilei Xie,Jian Zhang,Xueyu Dou,Xiaoyun Jiao,Xu Wang,Bo Tang
标识
DOI:10.1021/acs.analchem.5c06337
摘要
The redox homeostasis is essential for sustaining normal cellular activities, and its disruption underlies the onset and progression of diverse pathologies. Among the diverse redox-active species, peroxynitrite (ONOO –, a highly reactive oxidant) and NAD(P)H (a central reducing cofactor) could serve as representative biomarkers of oxidative and reductive states, respectively, and simultaneous detection of ONOO – and NAD(P)H is therefore of great significance for deep redox biology interpretation. Here, we developed a highly sensitive and specific fluorescent probe, BQ, for simultaneously monitoring mitochondrial ONOO – and NAD(P)H. BQ enabled real-time visualization of redox dynamics in living cells and in vivo, allowing assessment of oxidative stress, cancer–normal cell discrimination, and evaluation of antioxidant drugs. With the aid of BQ, we uncovered a pronounced redox imbalance in an epileptic zebrafish model, which was effectively ameliorated by conventional antiepileptic agents and further alleviated by a clinical stroke drug. We expect that BQ could be a versatile tool to established robust imaging strategy for redox homeostasis research.
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