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Cerebral blood flow is modulated by astrocytic cAMP elevation independently of IP 3 R2-mediated Ca 2+ signaling in mice

脑血流 血管舒张 星形胶质细胞 运动前神经元活动 刺激 腺苷酸环化酶 小动脉 腺苷 内分泌学 内科学 医学 生物学中的钙 受体 光遗传学 生物 化学 神经科学 微循环 中枢神经系统
作者
Marta Vittani,Rasmus Herlo,Xiaowen Wang,Michala Daniela Bach Christensen,Camilla Trang Vo,Tsuneko Mishima,Peter Kusk,Ayumu Konno,Hirokazu Hirai,Takashi Tsuboi,Tetsuya Kitaguchi,Celia Kjærby,Antonis Asiminas,Tatsushi Yokoyama,Masayuki Sakamoto,Maiken Nedergaard,Hajime Hirase
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:122 (27): e2422069122-e2422069122 被引量:2
标识
DOI:10.1073/pnas.2422069122
摘要

Local neural activation drives regional increase of cerebral blood flow (CBF), in a phenomenon known as functional hyperemia. Astrocytes, which enwrap cerebral blood vessels and respond to neuronal activity through their G protein–coupled receptors (GPCRs), play a vital role in brain energy metabolism. Although astrocytic calcium (Ca 2+ ) signaling has been widely studied in relation to neurovascular coupling, the role of cyclic adenosine monophosphate (cAMP), another key second messenger of GPCRs, on CBF has not been established. In this study, we explored the effects of optogenetically induced astrocytic cAMP elevation on CBF. We engineered adeno-associated viral vectors (AAVs) to express a bacterial photoactivated adenylyl cyclase in astrocytes, which triggers an increase in cAMP upon blue light stimulation. Opto-stimulation also elevated astrocytic Ca 2+ , albeit with a delayed onset under mild stimulation. In vivo imaging of anesthetized and awake wild-type mice through a thinned skull preparation revealed that optogenetically induced astrocytic cAMP elevation led to pronounced arteriole dilation, with a latency of 1.8 s and maximal dilation reached within 10 s in the awake state and slower response under anesthesia. Mild opto-stimulation causing sensory-level cAMP elevations was sufficient to induce arteriole dilation. This effect was preserved in IP 3 receptor type 2-knockout (IP 3 R2 −/− ) mice, indicating a mechanism independent of GPCR-induced intracellular Ca 2+ elevations. These findings highlight astrocytic cAMP as a key modulator of cerebral vasodilation, contributing to our understanding of local CBF regulation. This study opens broad avenues for understanding astrocyte-mediated control of CBF and its implications in neurological diseases characterized by dysregulated blood flow.
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