半影
医学
冲程(发动机)
心脏病学
灌注
缺血
大脑中动脉
脑血流
溶栓
闭塞
体内
内科学
缺血性中风
心肌梗塞
生物
机械工程
生物技术
工程类
作者
Mohamad El Amki,Chaim Glück,Nadine Felizitas Binder,William Middleham,Matthias T. Wyss,Tobias Weiß,Hanna Meister,Andreas R. Luft,Michael Weller,Bruno Weber,Susanne Wegener
出处
期刊:Cell Reports
[Cell Press]
日期:2020-10-01
卷期号:33 (2): 108260-108260
被引量:304
标识
DOI:10.1016/j.celrep.2020.108260
摘要
Despite successful clot retrieval in large vessel occlusion stroke, ∼50% of patients have an unfavorable clinical outcome. The mechanisms underlying this functional reperfusion failure remain unknown, and therapeutic options are lacking. In the thrombin-model of middle cerebral artery (MCA) stroke in mice, we show that, despite successful thrombolytic recanalization of the proximal MCA, cortical blood flow does not fully recover. Using in vivo two-photon imaging, we demonstrate that this is due to microvascular obstruction of ∼20%-30% of capillaries in the infarct core and penumbra by neutrophils adhering to distal capillary segments. Depletion of circulating neutrophils using an anti-Ly6G antibody restores microvascular perfusion without increasing the rate of hemorrhagic complications. Strikingly, infarct size and functional deficits are smaller in mice treated with anti-Ly6G. Thus, we propose neutrophil stalling of brain capillaries to contribute to reperfusion failure, which offers promising therapeutic avenues for ischemic stroke.
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