心功能曲线
生物
神经科学
自主神经系统
心源性猝死
交感神经系统
心力衰竭
神经系统
心律失常
心率
内科学
心脏病学
调节器
心肌细胞
心血管生理学
心脏传导系统
功能(生物学)
迷走神经
神经元
副交感神经系统
中枢神经系统
心输出量
心脏起搏
心电图
心脏起搏器
心率变异性
机制(生物学)
心脏监护
心脏功能不全
作者
Qian Xu,Marissa C. Applegate,I-Uen Yvonne Hsu,Rachel P. Kogan,Omar A. Hafez,Ruiqi Wang,Pam E. Rios Coronado,Lawrence H. Young,Xing Zeng,Li Zhang,Rui B. Chang
出处
期刊:Cell
[Cell Press]
日期:2026-07-01
被引量:1
标识
DOI:10.1016/j.cell.2026.06.040
摘要
The intrinsic cardiac nervous system (ICNS) is a key node in heart-brain communication and an emerging target for cardiac therapy, yet its physiological importance and functional organization remain poorly understood. Here, we show that the ICNS is essential for cardiac performance and survival across conditions. Using integrated genetic and imaging approaches in mice, we identify two molecularly distinct intrinsic cardiac neuron (ICN) subtypes that differ in extrinsic inputs, projection architectures, and physiological roles. Npy⁺ ICNs preferentially receive vagal input and mediate parasympathetic control of heart rate and coronary perfusion, and their ablation leads to fatal cardiac failure. By contrast, Ddah1⁺ ICNs receive sympathetic input and are required to preserve electrical stability and prevent sudden cardiac arrest under extreme physiological or psychological stress, with their activation providing cardioprotection. Together, these findings establish the ICNS as a critical regulator of cardiac function, providing a framework for precise, cell-type-targeted neuromodulatory therapies.
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