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Published on: July 19, 2017
Ivabradine-Induced Bradycardia is Accompanied by Reduced Stress-Related Anxiety
Ryan Woodman1, Jeffrey Student2, Coleman Miller3
1Division of Endocrinology, Diabetes & Metabolism, University of California, Davis, California, USA.
Insights
Ivabradine, a heart rate-lowering drug, reduced anxiety and improved exploratory behavior in stressed mice. This suggests potential benefits for patients with hypertension and high heart rates.
Area of Science:
- Cardiovascular Pharmacology
- Neuroscience
- Behavioral Science
Background:
- Hypertension, elevated heart rate, and anxiety are linked to increased cardiovascular risks.
- Limited research exists on how hypertension medications impact behavioral outcomes in cardiovascular disease.
- Ivabradine, a selective heart rate-lowering agent, is known to improve quality of life in certain cardiac conditions.
Purpose of the Study:
- To investigate the effect of ivabradine on anxiety-like behaviors in a mouse model of psychological stress.
- To determine if ivabradine's effects extend beyond heart rate reduction to behavioral improvements.
Main Methods:
- Mice were subjected to a stress protocol and treated with either ivabradine (10 mg/kg) or vehicle.
- Physiological parameters (heart rate, blood pressure) and behavioral outcomes (anxiety, cognition, pain tolerance) were assessed.
- Central hyperpolarization-activated, cyclic nucleotide-gated (HCN) channel gene expression was quantified.
Main Results:
- Ivabradine significantly reduced resting heart rate by 22% in stressed mice.
- Treated mice showed enhanced exploratory behavior in the open field test, elevated plus maze, and object recognition test.
- Stress led to reduced central HCN channel expression, which was modulated by ivabradine treatment.
Conclusions:
- Ivabradine demonstrates anxiolytic effects in a mouse model of psychological stress.
- Reduced heart rate by ivabradine may contribute to improved quality of life by alleviating anxiety in hypertensive individuals.
- These findings support further investigation into ivabradine's potential as a therapeutic agent for managing anxiety in cardiovascular disease.
Background:
Hypertensive individuals with higher heart rates and anxiety have greater cardiovascular morbidity and mortality. Despite the correlation between hypertension, heart rate, and anxiety, scant attention has been paid to the effect of hypertension drug therapy on behavioral outcomes in cardiovascular disease. Ivabradine, an inhibitor of hyperpolarization-activated, cyclic nucleotide-gated funny channels (HCNs), has been used clinically to reduce heart rates and has been shown to improve quality of life in patients with angina and heart failure. We postulated that in addition to lowering heart rate, ivabradine could reduce anxiety in mice exposed to a significant stress paradigm.
Methods:
Mice underwent a stress induction protocol, subsequently they received either vehicle or ivabradine (10 mg/kg) via osmotic minipumps. Blood pressure and heart rates were measured with tail cuff photoplethysmography. Anxiety was assessed quantitatively through the open field test (OFT) and the elevated plus maze (EPM). Cognition was assessed with an object recognition test (ORT). Pain tolerance was measured by the hot plate test or subcutaneous injection of formalin. HCN gene expression was measured with RT-PCR.
Results:
Ivabradine reduced resting heart rate in the stressed mice by 22%. Stressed mice treated with ivabradine displayed significantly greater exploratory behavior in the OFT, EPM, and ORT. The expression of central HCN channels was significantly reduced following stress.
Conclusion:
It is suggested from our findings that ivabradine can reduce anxiety following significant psychological stress. Reductions in heart rate may directly improve quality of life by reducing anxiety in patients with hypertension and high heart rates.
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