血管性血友病因子
医学
血栓
心脏病学
血栓形成
缺血
内科学
冲程(发动机)
血流动力学
血流
缺血性中风
组织纤溶酶原激活剂
脑血流
脑缺血
闭塞
微循环
颅内血栓形成
活体显微镜检查
血管疾病
内皮
再灌注损伤
体内
离体
作者
Audrée Laroche,Nick Rovito,Alice Liu,Isabelle Allaeys,Laura Heitsch,Irina Portier,Opeolu Adeoye,Stephanie Pizzella,James Giles,Jorge Di Paola,Jin‐Moo Lee,David Bark,Robert A. Campbell,Debanjan Mukherjee,Éric Boilard,Frederik Denorme
标识
DOI:10.1073/pnas.2610397123
摘要
Rapid restoration of cerebral blood flow is the cornerstone of acute ischemic stroke treatment. Endovascular thrombectomy achieves substantial reperfusion in 90% of patients with large-vessel occlusion stroke; however, almost half of treated patients continue to have significant disability despite successful thrombus removal. Transient periods of ischemia can trigger microvascular thrombosis resulting in the no-reflow phenomenon. Yet the molecular and hemodynamic triggers underlying no reflow remain poorly defined. Using a murine model of transient ischemic stroke combined with intravital imaging, we visualized platelet-von Willebrand factor (VWF) thrombi forming in penumbral tissue where blood flow dynamics were altered in response to the original ischemic insult. In silico modeling based on our intravital observations indicated that the altered, converging blood flow in these vessels increases local elongational flow, a condition that can favor VWF unfolding. The activity of VWF is controlled by ADAMTS13, which cleaves VWF. We further identified that in the acute phase of stroke, locally released IL-6 suppresses ADAMTS13-mediated cleavage of VWF, creating a prothrombotic imbalance that promotes microvascular thrombosis and worsens outcomes in mice. In ischemic stroke patients, we observed an acute increase in IL-6 that correlated strongly with increased VWF activity. VWF activity was highest in patients experiencing worse outcomes. Inhibition of IL-6 in ex vivo stroke patient plasma restored ADAMTS13 activity. Together, these findings reveal how hemodynamic and inflammatory factors converge to favor VWF activation in the reperfused brain and contribute to the development of no reflow in ischemic stroke.
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