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Caveolae in CNS arterioles mediate neurovascular coupling 期刊论文
NATURE, 2020
作者:  Huang, Weijiao;  Masureel, Matthieu;  Qu, Qianhui;  Janetzko, John;  Inoue, Asuka;  Kato, Hideaki E.;  Robertson, Michael J.;  Nguyen, Khanh C.;  Glenn, Jeffrey S.;  Skiniotis, Georgios;  Kobilka, Brian K.
收藏  |  浏览/下载:14/0  |  提交时间:2020/07/03

Caveolae in arteriolar endothelial cells-but not those in neighbouring smooth muscle cells-have a key role in neurovascular coupling, an essential function for meeting acute brain energy demand.


Proper brain function depends on neurovascular coupling: neural activity rapidly increases local blood flow to meet moment-to-moment changes in regional brain energy demand(1). Neurovascular coupling is the basis for functional brain imaging(2), and impaired neurovascular coupling is implicated in neurodegeneration(1). The underlying molecular and cellular mechanisms of neurovascular coupling remain poorly understood. The conventional view is that neurons or astrocytes release vasodilatory factors that act directly on smooth muscle cells (SMCs) to induce arterial dilation and increase local blood flow(1). Here, using two-photon microscopy to image neural activity and vascular dynamics simultaneously in the barrel cortex of awake mice under whisker stimulation, we found that arteriolar endothelial cells (aECs) have an active role in mediating neurovascular coupling. We found that aECs, unlike other vascular segments of endothelial cells in the central nervous system, have abundant caveolae. Acute genetic perturbations that eliminated caveolae in aECs, but not in neighbouring SMCs, impaired neurovascular coupling. Notably, caveolae function in aECs is independent of the endothelial NO synthase (eNOS)-mediated NO pathway. Ablation of both caveolae and eNOS completely abolished neurovascular coupling, whereas the single mutants exhibited partial impairment, revealing that the caveolae-mediated pathway in aECs is a major contributor to neurovascular coupling. Our findings indicate that vasodilation is largely mediated by endothelial cells that actively relay signals from the central nervous system to SMCs via a caveolae-dependent pathway.


  
Modeling the Transient Response of Tropical Convection to Mesoscale SST Variations 期刊论文
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2019, 76 (5) : 1227-1244
作者:  Skyllingstad, Eric D.;  39;Neill, Larry W.
收藏  |  浏览/下载:6/0  |  提交时间:2019/11/26
Atmosphere-ocean interaction  Convective storms  systems  Convective-scale processes  Deep convection  Mesoscale processes  
Enzymatic construction of highly strained carbocycles 期刊论文
SCIENCE, 2018, 360 (6384) : 71-+
作者:  Chen, Kai;  Huang, Xiongyi;  Kan, S. B. Jennifer;  Zhang, Ruijie K.;  Arnold, Frances H.
收藏  |  浏览/下载:3/0  |  提交时间:2019/11/27
Relating large-scale subsidence to convection development in Arctic mixed-phase marine stratocumulus 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2018, 18 (3) : 1475-1494
作者:  Young, Gillian;  Connolly, Paul J.;  Dearden, Christopher;  Choularton, Thomas W.
收藏  |  浏览/下载:7/0  |  提交时间:2019/04/09
ATP as a biological hydrotrope 期刊论文
SCIENCE, 2017, 356 (6339) : 753-756
作者:  Patel, Avinash;  Malinovska, Liliana;  Saha, Shambaditya;  Wang, Jie;  Alberti, Simon;  Krishnan, Yamuna;  Hyman, Anthony A.
收藏  |  浏览/下载:5/0  |  提交时间:2019/11/27
Tornado Vortex Structure, Intensity, and Surface Wind Gusts in Large-Eddy Simulations with Fully Developed Turbulence 期刊论文
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2017, 74 (5)
作者:  Nolan, David S.;  Dahl, Nathan A.;  Bryan, George H.;  Rotunno, Richard
收藏  |  浏览/下载:0/0  |  提交时间:2019/04/09