Chen Wei, Wu Yousheng, Liang Ying, Su Xuanlin, Ke Man, Deng Die, Zang Jiankun, Zhu Jielin, Mai Hongcheng, Xu Anding, Lu Dan
Department of Neurology and Stroke Center (W.C., Y.W., Y.L., X.S., M.K., D.D., J. Zang, A.X., D.L.), The First Affiliated Hospital of Jinan University, Guangzhou, China.
Clinical Neuroscience Institute (W.C., Y.W., Y.L., X.S., M.K., D.D., J. Zang, A.X., D.L.), The First Affiliated Hospital of Jinan University, Guangzhou, China.
Stroke. 2025 Jun;56(6):1569-1580. doi: 10.1161/STROKEAHA.124.048446. Epub 2025 Apr 2.
Acute ischemic stroke disrupts communication between neurons and blood vessels in penumbral areas. How neurons and blood vessels cooperate to achieve blood-brain barrier repair remains unclear. Here, we reveal crosstalk between ischemic penumbral neurons and endothelial cells (ECs) mediated by circular RNA originating from oxoglutarate dehydrogenase (CircOGDH).
We analyzed clinical data from patients with acute ischemic stroke to explore the relationship between CircOGDH levels and hemorrhagic transformation events. In addition, a middle cerebral artery occlusion and reperfusion mouse model with neuronal CircOGDH suppression was used to assess endothelial permeability. ECs with increased CircOGDH expression were analyzed for changes in COL4A4 (collagen type IV alpha 4) levels, and in vitro coculture experiments were conducted to examine small extracellular vesicle-mediated CircOGDH transfer between neurons and ECs.
Clinical data indicated that reduced CircOGDH levels were correlated with increased hemorrhagic transformation in patients with acute ischemic stroke. In the middle cerebral artery occlusion and reperfusion model, neuronal CircOGDH suppression impaired the restoration of endothelial permeability. ECs with increased CircOGDH expression exhibited higher COL4A4 levels, which helped maintain vascular stability. In vitro, hypoxic neurons transferred CircOGDH to ECs via small extracellular vesicles, leading to elevated COL4A4 expression and enhanced endothelial integrity.
Our findings highlight the significance of CircOGDH in neuron-EC crosstalk via small extracellular vesicles in the ischemic penumbra, emphasizing the need for balanced intervention strategies in acute ischemic stroke management.
急性缺血性中风会破坏半暗带区域神经元与血管之间的通讯。神经元与血管如何协同实现血脑屏障修复仍不清楚。在此,我们揭示了由源自α-酮戊二酸脱氢酶的环状RNA(CircOGDH)介导的缺血半暗带神经元与内皮细胞(ECs)之间的串扰。
我们分析了急性缺血性中风患者的临床数据,以探讨CircOGDH水平与出血性转化事件之间的关系。此外,使用具有神经元CircOGDH抑制作用的大脑中动脉闭塞和再灌注小鼠模型来评估内皮通透性。分析CircOGDH表达增加的ECs中IV型胶原α4(COL4A4)水平的变化,并进行体外共培养实验,以检测神经元与ECs之间小细胞外囊泡介导的CircOGDH转移。
临床数据表明,急性缺血性中风患者CircOGDH水平降低与出血性转化增加相关。在大脑中动脉闭塞和再灌注模型中,神经元CircOGDH抑制损害了内皮通透性的恢复。CircOGDH表达增加的ECs表现出更高的COL4A4水平,这有助于维持血管稳定性。在体外,缺氧神经元通过小细胞外囊泡将CircOGDH转移至ECs,导致COL4A4表达升高,内皮完整性增强。
我们的研究结果突出了CircOGDH在缺血半暗带通过小细胞外囊泡进行神经元-EC串扰中的重要性,强调了急性缺血性中风管理中平衡干预策略的必要性。