癫痫发生
癫痫
神经科学
海马结构
过氧亚硝酸盐
体内
红藻氨酸受体
化学
生物
谷氨酸受体
生物化学
受体
生物技术
酶
超氧化物
AMPA受体
作者
Jiong‐sheng Hu,Chenwen Shao,Xueao Wang,Xiaojiao Di,Xuling Xue,Zhi Su,Jing Zhao,Hai‐Liang Zhu,Hong‐Ke Liu,Yong Qian
出处
期刊:Advanced Science
[Wiley]
日期:2019-06-11
卷期号:6 (15): 1900341-1900341
被引量:136
标识
DOI:10.1002/advs.201900341
摘要
Abstract Epilepsy is a chronic neurodegenerative disease, and accumulating evidence suggests its pathological progression is closely associated with peroxynitrite (ONOO − ). However, understanding the function remains challenging due to a lack of in vivo imaging probes for ONOO − determination in epileptic brains. Here, the first near‐infrared imaging probe (named ONP) is presented for tracking endogenous ONOO − in brains of kainate‐induced epileptic seizures with high sensitivity and selectivity. Using this probe, the dynamic changes of endogenous ONOO − fluxes in epileptic brains are effectively monitored with excellent temporal and spatial resolution. In vivo visualization and in situ imaging of hippocampal regions clearly reveal that a higher concentration of ONOO − in the epileptic brains associates with severe neuronal damage and epileptogenesis; curcumin administration can eliminate excessively increased ONOO − , further effectively protecting neuronal cells. Moreover, by combining high‐content analysis and ONP, a high‐throughput screening method for antiepileptic inhibitors is constructed, which provides a rapid imaging/screening approach for understanding epilepsy pathology and accelerating antiseizure therapeutic discovery.
科研通智能强力驱动
Strongly Powered by AbleSci AI