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Updated: Aug 22, 2025

Location, Dissection, and Analysis of the Murine Stellate Ganglion
Published on: December 22, 2020
Stellate Ganglia and Cardiac Sympathetic Overactivation in Heart Failure
Yu-Long Li1,2
1Department of Emergency Medicine, University of Nebraska Medical Center, Omaha, NE 68198, USA.
Insights
Cardiac sympathetic overactivation in heart failure (HF) contributes to arrhythmias. Remodeling of stellate ganglia, key in sympathetic nervous system efferent control, may be a therapeutic target for HF arrhythmias.
Area of Science:
- Cardiology
- Neuroscience
- Physiology
Background:
- Heart failure (HF), particularly heart failure with reduced ejection fraction (HFrEF), is a global health concern.
- Cardiac sympathetic overactivation is a hallmark of HF, leading to arrhythmias and sudden cardiac death.
- Neural regulation of cardiac sympathetic activation involves afferent, central, and efferent pathways.
Purpose of the Study:
- To review cardiac sympathetic remodeling in stellate ganglia in HF.
- To explore potential mechanisms of this remodeling.
- To discuss its role in cardiac sympathetic overactivation and arrhythmias.
Main Methods:
- Review of existing literature on cardiac sympathetic nervous system function in HF.
- Analysis of the role of stellate ganglia in efferent sympathetic control.
- Examination of structural and functional changes in cardiac postganglionic sympathetic neurons.
Main Results:
- Evidence supports afferent and central neural mechanisms of sympathoexcitation in HF.
- The stellate ganglion, as a peripheral sympathetic ganglion, influences cardiac function.
- Impairments in cardiac postganglionic sympathetic neurons within stellate ganglia may contribute to HF-related sympathetic overactivation.
Conclusions:
- Cardiac sympathetic remodeling in stellate ganglia is implicated in HF-associated sympathetic overactivation and arrhythmias.
- Targeting stellate ganglia remodeling presents a potential therapeutic strategy for managing malignant cardiac arrhythmias in HF.
Abstract:
Heart failure (HF) is a major public health problem worldwide, especially coronary heart disease (myocardial infarction)-induced HF with reduced ejection fraction (HFrEF), which accounts for over 50% of all HF cases. An estimated 6 million American adults have HF. As a major feature of HF, cardiac sympathetic overactivation triggers arrhythmias and sudden cardiac death, which accounts for nearly 50-60% of mortality in HF patients. Regulation of cardiac sympathetic activation is highly integrated by the regulatory circuitry at multiple levels, including afferent, central, and efferent components of the sympathetic nervous system. Much evidence, from other investigators and us, has confirmed the afferent and central neural mechanisms causing sympathoexcitation in HF. The stellate ganglion is a peripheral sympathetic ganglion formed by the fusion of the 7th cervical and 1st thoracic sympathetic ganglion. As the efferent component of the sympathetic nervous system, cardiac postganglionic sympathetic neurons located in stellate ganglia provide local neural coordination independent of higher brain centers. Structural and functional impairments of cardiac postganglionic sympathetic neurons can be involved in cardiac sympathetic overactivation in HF because normally, many effects of the cardiac sympathetic nervous system on cardiac function are mediated via neurotransmitters (e.g., norepinephrine) released from cardiac postganglionic sympathetic neurons innervating the heart. This review provides an overview of cardiac sympathetic remodeling in stellate ganglia and potential mechanisms and the role of cardiac sympathetic remodeling in cardiac sympathetic overactivation and arrhythmias in HF. Targeting cardiac sympathetic remodeling in stellate ganglia could be a therapeutic strategy against malignant cardiac arrhythmias in HF.
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