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Astrocytic calcium release mediates peri-infarct depolarizations in a rodent stroke model

机译:啮齿动物中风模型中星形胶质钙的释放介导梗死周围的去极化

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摘要

Stroke is one of the most common diseases and a leading cause of death and disability. Cessation of cerebral blood flow (CBF) leads to cell death in the infarct core, but tissue surrounding the core has the potential to recover if local reductions in CBF are restored. In these areas, detrimental peri-infarct depolarizations (PIDs) contribute to secondary infarct growth and negatively affect stroke outcome. However, the cellular pathways underlying PIDs have remained unclear. Here, we have used in vivo multiphoton microscopy, laser speckle imaging of CBF, and electrophysiological recordings in a mouse model of focal ischemia to demonstrate that PIDs are associated with a strong increase of intracellular calcium in astrocytes and neurons. We found that astroglial calcium elevations during PIDs are mediated by inositol triphosphate receptor type 2–dependent (IP3R2-dependent) release from internal stores. Importantly, Ip3r2-deficient mice displayed a reduction of PID frequency and overall PID burden and showed increased neuronal survival after stroke. These effects were not related to local CBF changes in response to PIDs. However, we showed that the release and extracellular accumulation of glutamate during PIDs is strongly curtailed in Ip3r2-deficient mice, resulting in ameliorated calcium overload in neurons and astrocytes. Together, these data implicate astroglial calcium pathways as potential targets for stroke therapy.
机译:中风是最常见的疾病之一,也是导致死亡和残疾的主要原因。停止脑血流(CBF)会导致梗死核心的细胞死亡,但如果恢复了CBF的局部降低,则核心周围的组织就有可能恢复。在这些地区,有害的梗死周围去极化(PID)有助于继发性梗塞生长,并对中风预后产生负面影响。但是,PIDs的细胞通路尚不清楚。在这里,我们已经使用了体内多光子显微镜,CBF的激光散斑成像以及局灶性缺血小鼠模型中的电生理记录来证明PID与星形胶质细胞和神经元中细胞内钙的强烈增加有关。我们发现PID期间星形胶质钙的升高是由内部储存的2型依赖性三磷酸肌醇受体(IP3R2依赖性)介导的。重要的是,缺乏Ip3r2的小鼠显示出PID频率降低和总体PID负担减少,并显示卒中后神经元存活增加。这些影响与响应PID的局部CBF变化无关。但是,我们显示,在Ip3r2缺陷型小鼠中,PIDs期间谷氨酸的释放和细胞外积累被大大抑制,导致神经元和星形胶质细胞钙超载得到缓解。总之,这些数据暗示星形胶质钙途径是中风治疗的潜在靶标。

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