谷氨酸受体
星形胶质细胞
钙
生物学中的钙
神经科学
调节器
生物
条件基因敲除
冲程(发动机)
缺血
基因剔除小鼠
钙信号传导
钙显像
脑缺血
医学
内科学
脑损伤
胶质瘢痕
钙代谢
神经保护
内分泌学
刺激1
心脏病学
调解人
谷氨酸
药理学
钙通道
中枢神经系统
电压依赖性钙通道
神经元
体内
麻醉
神经胶质
尼卡地平
作者
Seunghwan Choi,Hyunjin Shin,Seon Young Hyun,Geehoon Chung,Sun Kwang Kim
出处
期刊:Glia
[Wiley]
日期:2025-12-01
卷期号:74 (2): e70110-e70110
摘要
Astrocytes critically influence ischemic stroke outcomes through calcium signaling-dependent mechanisms, which can be both beneficial and detrimental. Stromal interaction molecule 1 (STIM1), a key regulator of store-operated calcium entry, has emerged as an essential mediator of intracellular calcium dynamics in astrocytes, yet its role in acute stroke remains largely unknown. Here, we demonstrate that conditional knockout of astrocytic STIM1 in mice dramatically reduces infarct volume and improves neurological function following ischemic stroke. In vivo two-photon imaging revealed that astrocytic STIM1 knockout reduces the amplitude and duration of both spreading depolarization-associated and spontaneous calcium transients during acute ischemia. The reduction of these transients was highly correlated with improved neurological outcomes. Furthermore, the astrocytic STIM1 knockout mitigated excitotoxic stress by accelerating glutamate clearance and reducing total glutamate burden during ischemic stroke. Our findings establish astrocytic STIM1 as a critical regulator of calcium and glutamate dynamics during ischemic stroke, and therefore, targeting astrocytic STIM1 represents a promising therapeutic avenue for alleviating ischemic brain damage by reducing calcium overload and glutamate excitotoxicity.
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