小动脉
运动前神经元活动
血管舒张
细胞生物学
神经血管束
神经科学
微循环
细胞内
体感系统
串扰
联轴节(管道)
解剖
化学
生物
内皮
内科学
医学
内分泌学
材料科学
物理
冶金
光学
作者
Pratish Thakore,Michael G. Alvarado,Sher Ali,Amreen Mughal,Paulo W. Pires,Evan Yamasaki,Harry A. T. Pritchard,Brant E. Isakson,Cam Ha T. Tran,Scott Earley
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2021-02-26
卷期号:10
被引量:112
摘要
Cerebral blood flow is dynamically regulated by neurovascular coupling to meet the dynamic metabolic demands of the brain. We hypothesized that TRPA1 channels in capillary endothelial cells are stimulated by neuronal activity and instigate a propagating retrograde signal that dilates upstream parenchymal arterioles to initiate functional hyperemia. We find that activation of TRPA1 in capillary beds and post-arteriole transitional segments with mural cell coverage initiates retrograde signals that dilate upstream arterioles. These signals exhibit a unique mode of biphasic propagation. Slow, short-range intercellular Ca 2+ signals in the capillary network are converted to rapid electrical signals in transitional segments that propagate to and dilate upstream arterioles. We further demonstrate that TRPA1 is necessary for functional hyperemia and neurovascular coupling within the somatosensory cortex of mice in vivo. These data establish endothelial cell TRPA1 channels as neuronal activity sensors that initiate microvascular vasodilatory responses to redirect blood to regions of metabolic demand.
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