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Updated: May 22, 2025

Experimental Approach to Examine Leptin Signaling in the Carotid Bodies and its Effects on Control of Breathing
Published on: October 25, 2019
Altered leptin signaling and attenuated cardiac vagal activity in rats with type 2 diabetes
Anthony J Evans1, Huiyin Tu1, Yu Li1
1Department of Emergency Medicine, University of Nebraska Medical Center, Omaha, NE, United States.
Introduction:
The leading cause of death in type 2 diabetes mellitus (T2DM) patients is cardiovascular-related events, including myocardial infraction-induced ventricular arrhythmia. Previous studies have shown that T2DM-induced functional remodeling of cardiac vagal postganglionic (CVP) neurons contributes to ventricular arrhythmogenesis. As leptin resistance is common in T2DM patients, and CVP neurons are located in epicardial adipose pads, a tissue that secretes leptin, in this study we aimed to elucidate a correlation between leptin resistance and CVP neuronal dysfunction in T2DM.
Methods:
A high fat-diet/low dose streptozotocin-induced T2DM rat model was used in this study to characterize T2DM-induced alterations in cardiac parasympathetic tone, determined by changes in baroreflex sensitivity and CVP neuronal excitability. The impact of leptin resistance on CVP neurons was also studied by examining the expression of leptin in epicardial adipose pads, and leptin receptors and uncoupling protein 2 (UCP2) in CVP neurons.
Results:
T2DM rats exhibited diminished baroreflex sensitivity, and decreased CVP neuronal excitability, demonstrated by a reduced frequency of action potentials, diminished nAChR currents, and an attenuated response to nicotine stimulation. Additionally, compared to sham animals, the expression of leptin receptors and UCP2 in CVP neurons was reduced as early as 4 weeks post-T2DM although the leptin levels in epicardial adipose pads was increased during the progression of T2DM, which demonstrated the occurrence of leptin resistance in T2DM CVP neurons.
Conclusion:
Cardiac parasympathetic dysfunction in T2DM rats is due, in part, to functional remodeling of CVP neurons. As leptin resistance develops as early as 4 weeks post-T2DM induction, diminished leptin receptors-UCP2 signaling may contribute to CVP neuronal dysregulation.
Insights
Leptin resistance in type 2 diabetes mellitus (T2DM) contributes to cardiac vagal postganglionic (CVP) neuronal dysfunction. This dysfunction, characterized by reduced excitability and signaling, increases the risk of ventricular arrhythmias in T2DM patients.
Area of Science:
- Cardiology
- Endocrinology
- Neuroscience
Background:
- Cardiovascular events are the leading cause of death in type 2 diabetes mellitus (T2DM).
- T2DM is associated with ventricular arrhythmias, partly due to functional remodeling of cardiac vagal postganglionic (CVP) neurons.
- Leptin resistance is prevalent in T2DM, and CVP neurons are situated in leptin-secreting epicardial adipose tissue.
Purpose of the Study:
- To investigate the correlation between leptin resistance and CVP neuronal dysfunction in a rat model of T2DM.
- To characterize T2DM-induced alterations in cardiac parasympathetic tone and CVP neuronal excitability.
- To examine the expression of leptin, leptin receptors, and uncoupling protein 2 (UCP2) in CVP neurons and epicardial adipose tissue.
Main Methods:
- A high-fat diet/low-dose streptozotocin-induced T2DM rat model was utilized.
- Baroreflex sensitivity and CVP neuronal excitability were assessed.
- Expression levels of leptin, leptin receptors, and UCP2 were measured in relevant tissues.
Main Results:
- T2DM rats displayed diminished baroreflex sensitivity and reduced CVP neuronal excitability, evidenced by fewer action potentials and attenuated responses to nicotine.
- Leptin receptor and UCP2 expression in CVP neurons decreased significantly by 4 weeks post-T2DM induction.
- Leptin levels in epicardial adipose pads increased, confirming the development of leptin resistance in T2DM CVP neurons.
Conclusions:
- Functional remodeling of CVP neurons contributes to cardiac parasympathetic dysfunction in T2DM.
- Diminished leptin receptor-UCP2 signaling, stemming from early-onset leptin resistance, may underlie CVP neuronal dysregulation in T2DM.
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