arrow
返回

Cardiovascular Brain Circuits

delete2023-05-26
delete17
delete
OA
AI
S
Sarajo K. Mohanta
C
Changjun Yin
C
Christian Weber
C
Cristina Godinho‐Silva
H
Henrique Veiga‐Fernandes
Q
Qian Xu
R
Rui B. Chang
A
Andreas J. R. Habenicht *
DOI:10.1161/CIRCRESAHA.123.322791delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
The cardiovascular system is hardwired to the brain via multilayered afferent and efferent polysynaptic axonal connections. Two major anatomically and functionally distinct though closely interacting subcircuits within the cardiovascular system have recently been defined: The artery-brain circuit and the heart-brain circuit. However, how the nervous system impacts cardiovascular disease progression remains poorly understood. Here, we review recent findings on the anatomy, structures, and inner workings of the lesser-known artery-brain circuit and the better-established heart-brain circuit. We explore the evidence that signals from arteries or the heart form a systemic and finely tuned cardiovascular brain circuit: afferent inputs originating in the arterial tree or the heart are conveyed to distinct sensory neurons in the brain. There, primary integration centers act as hubs that receive and integrate artery-brain circuit-derived and heart-brain circuit-derived signals and process them together with axonal connections and humoral cues from distant brain regions. To conclude the cardiovascular brain circuit, integration centers transmit the constantly modified signals to efferent neurons which transfer them back to the cardiovascular system. Importantly, primary integration centers are wired to and receive information from secondary brain centers that control a wide variety of brain traits encoded in engrams including immune memory, stress-regulating hormone release, pain, reward, emotions, and even motivated types of behavior. Finally, we explore the important possibility that brain effector neurons in the cardiovascular brain circuit network connect efferent signals to other peripheral organs including the immune system, the gut, the liver, and adipose tissue. The enormous recent progress vis-a-vis the cardiovascular brain circuit allows us to propose a novel neurobiology-centered cardiovascular disease hypothesis that we term the neuroimmune cardiovascular circuit hypothesis.
Keyword:
brain
cardiovascular diseases
heart
infarctions
neurons

期刊

Circulation Research 封面图
Circulation Research
IF:
16.2
论文数:
1.3W
被引数:
6.4W

机构

Y
Yale University
学者数:
6.5W
论文数: 6.0W
被引数: 10.0W
F
fundacao champalimaud
学者数:
1.2K
论文数: 910
被引数: 4
U
University of Munich
学者数:
5.7W
论文数: 4.2W
被引数: 68
学者 查看更多机构
引用论文

引用论文

err分享
err收藏
err分享
err收藏
Validity of the Occupational Sitting and Physical Activity Questionnaire
err2012-01-01
err0
errOAAI
errJOSEPHINE Y. CHAU; HIDDE P. VAN DER PLOEG; SCOTT DUNN; JOHN KURKO; ADRIAN E. BAUMAN
err分享
err收藏
err分享
err收藏
学者 查看更多内容