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Updated: Jul 11, 2026

Tachycardia-Induced Cardiomyopathy As a Chronic Heart Failure Model in Swine
Published on: February 17, 2018
Chronic baroreceptor activation enhances survival in dogs with pacing-induced heart failure
Irving H Zucker1, Johnnie F Hackley, Kurtis G Cornish
1Department of Cellular and Integrative Physiology, University of Nebraska Medical Center, 985850 Nebraska Medical Center, Omaha, NE 68198-5850, USA. izucker@unmc.edu
Insights
Chronic carotid baroreceptor (BR) activation significantly improved survival in dogs with heart failure. This therapy also suppressed harmful neurohormonal activation, offering a novel approach to managing this condition.
Area of Science:
- Cardiovascular Medicine
- Medical Devices
- Physiology
Background:
- Current pharmacological therapies for chronic heart failure primarily target neurohormonal systems.
- Despite advances, mortality rates for chronic heart failure remain high.
- Carotid baroreceptor (BR) activation can reduce sympathetic outflow and increase vagal tone.
Purpose of the Study:
- To investigate the effects of chronic carotid BR activation on hemodynamic and neurohormonal parameters in dogs with chronic heart failure.
- To assess the impact of carotid BR activation on survival rates in this model.
Main Methods:
- Fifteen dogs with induced chronic heart failure were instrumented for hemodynamic monitoring.
- Electrical carotid BR activation was applied to 7 dogs, with 8 serving as controls.
- Hemodynamic, neurohormonal (norepinephrine, angiotensin II), and survival data were collected and compared.
Main Results:
- Survival was significantly greater in the BR-activated group compared to controls (68.1 days vs. 37.3 days).
- Plasma norepinephrine levels were significantly lower in the BR-activated group after 31 days.
- Increases in plasma angiotensin II were significantly attenuated in dogs receiving BR activation therapy.
Conclusions:
- Chronic activation of the carotid BR improves survival in a canine model of chronic heart failure.
- Carotid BR activation effectively suppresses key neurohormonal activation pathways implicated in heart failure.
- This approach represents a promising therapeutic strategy for chronic heart failure.
Abstract:
Much of the current pharmacological therapy for chronic heart failure targets neurohormonal activation. In spite of recent advances in drug therapy, the mortality rate for chronic heart failure remains high. Activation of the carotid baroreceptor (BR) reduces sympathetic outflow and augments vagal tone. We investigated the effect of chronic activation of the carotid BR on hemodynamic and neurohormonal parameters and on mortality in dogs with chronic heart failure. Fifteen dogs were instrumented to record hemodynamics. Electrodes were applied around the carotid sinuses to allow for activation of the BR. After 2 weeks of pacing (250 bpm), electrical carotid BR activation was initiated in 7 dogs and continued for the remainder of the study. The start of BR activation was used as a time reference point for the remaining 8 control dogs that did not receive BR activation. Survival was significantly greater for dogs undergoing carotid BR activation compared with control dogs (68.1+/-7.4 versus 37.3+/-3.2 days, respectively; P<0.01), although arterial pressure, resting heart rate, and left ventricular pressure were not different over time in BR-activated versus control dogs. Plasma norepinephrine was lower in dogs receiving BR activation therapy 31 days after the start of BR activation (401.9+/-151.5 versus 1121.9+/-389.1 pg/mL in dogs not receiving activation therapy; P<0.05). Plasma angiotensin II increased less in dogs receiving activation therapy (plasma angiotensin II increased by 157.4+/-58.6 pg/mL in control dogs versus 10.1+/-14.0 pg/mL in dogs receiving activation therapy; P<0.02). We conclude that chronic activation of the carotid BR improves survival and suppresses neurohormonal activation in chronic heart failure.
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