化学
荧光团
荧光
脑老化
脑组织
生物物理学
神经影像学
荧光寿命成像显微镜
生物标志物
铁质
人脑
光学成像
分子探针
衰老的大脑
神经科学
单体
核磁共振
纳米技术
脑化学
大脑活动与冥想
作者
Yijia Liu,Jinzheng Zhang,Siyu Jiang,Shiya Zhang,Guoqiang Feng,Yijia Liu,Jinzheng Zhang,Siyu Jiang,Shiya Zhang,Guoqiang Feng
标识
DOI:10.1021/acs.analchem.5c05215
摘要
Brain aging is accompanied by alterations in iron homeostasis. However, existing methods remain challenging for specific and real-time imaging of brain iron in vivo. Herein, we developed a fluorescent probe, NRP-Boc-Fe, for visualizing dynamic changes of ferrous ions (Fe2+) in the brain. The probe employs an N-oxide as the specific recognition site for Fe2+, achieving sensitive and selective responses to Fe2+. In addition, the fluorophore of the probe has dual-state emission (DSE) characteristics, with strong emissions in both dilute solutions and solid state, ensuring that fluorescence signals are unaffected by molecular aggregation or monomer state in complex biological environments. More importantly, NRP-Boc-Fe exhibits excellent blood-brain barrier (BBB) permeability, allowing noninvasive, real-time, and rapid imaging of brain Fe2+. Using this probe, we successfully revealed a significant age-dependent increase in Fe2+ levels within aging brains, establishing a direct correlation between Fe2+ accumulation and the aging process. This discovery not only validates Fe2+ as a potential biomarker for brain aging but also offers new insights into brain aging and a prospective novel imaging tool for exploring Fe2+-related brain diseases.
科研通智能强力驱动
Strongly Powered by AbleSci AI