To meet the brain's moment-to-moment energy demand, neural activation rapidly increases local blood flow. This process, known as neurovascular coupling, involves rapid, coordinated vasodilation of the brain's arterial network. Here, we demonstrate that endothelial gap junction coupling enables long-range propagation of vasodilation signals through the vasculature during neurovascular coupling. The molecular composition of these gap junctions is zonated along the arterio-venous axis, with arteries being the most strongly coupled segment. Using optogenetics and visual stimuli in awake mice, we found that acute, arterial endothelial cell type-specific deletion of Cx37 and Cx40 abolishes arterial gap junction coupling and results in impaired vasodilation. Specifically, we demonstrated that arterial endothelial gap junction coupling determines both the speed and the spatial extent of vasodilation propagation elicited by neural activity. These findings indicate that endothelial gap junctions serve as a signaling highway for neurovascular coupling, enabling flexible and efficient distribution of limited energetic resources.
Brain endothelial gap junction coupling enables rapid vasodilation propagation during neurovascular coupling.
脑内皮细胞间隙连接耦合能够促进神经血管耦合过程中血管舒张的快速传播
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作者:Krolak Trevor, Kaplan Luke, Navas Kathleen, Chen Lujing, Birmingham Austin, Ryvkin Daniel, Izsa Victoria, Powell Megan, Wu Zhuhao, Deverman Benjamin E, Gu Chenghua
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2025 | 起止号: | 2025 Sep 4; 188(18):5003-5019 |
| doi: | 10.1016/j.cell.2025.06.030 | 研究方向: | 神经科学、细胞生物学 |
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