神经保护
细胞外
冲程(发动机)
缺血
医学
去极化
神经科学
封锁
药理学
受体
内科学
麻醉
生物
细胞生物学
机械工程
工程类
作者
Hiromu Monai,Xiaowen Wang,Kazuko Yahagi,Nanhong Lou,Humberto Mestre,Qiwu Xu,Yoichiro Abe,Masato Yasui,Yoshio Iwai,Hajime Hirase
标识
DOI:10.1073/pnas.1817347116
摘要
Spontaneous waves of cortical spreading depolarization (CSD) are induced in the setting of acute focal ischemia. CSD is linked to a sharp increase of extracellular K+ that induces a long-lasting suppression of neural activity. Furthermore, CSD induces secondary irreversible damage in the ischemic brain, suggesting that K+ homeostasis might constitute a therapeutic strategy in ischemic stroke. Here we report that adrenergic receptor (AdR) antagonism accelerates normalization of extracellular K+, resulting in faster recovery of neural activity after photothrombotic stroke. Remarkably, systemic adrenergic blockade before or after stroke facilitated functional motor recovery and reduced infarct volume, paralleling the preservation of the water channel aquaporin-4 in astrocytes. Our observations suggest that AdR blockers promote cerebrospinal fluid exchange and rapid extracellular K+ clearance, representing a potent potential intervention for acute stroke.
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