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January 23, 2015Journal of Applied Physiology25 citations

Peripheral chemoreceptor control of cardiovascular function at rest and during exercise in heart failure patients

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HEHeather EdgellMMM. Sean McMurtryMHMark J. Haykowsky

Key Result

Peripheral chemoreceptor inhibition with dopamine in heart failure patients decreased ventilation (P=0.02) and total peripheral resistance (P=0.003), and increased cardiac index (P≤0.01) at rest.

Study Design

Type

RCT (n=21)

Randomization

randomized

Structured PICO

Does peripheral chemoreceptor inhibition with dopamine or hyperoxia alter cardiovascular and ventilatory control at rest and during exercise in heart failure patients compared to controls?

P
Population
21 clinically stable heart failure patients and risk-matched controls evaluated at rest and during exercise.
I
Intervention
Dopamine infusion (2 μg·min(-1)·kg(-1)) at rest and during 40% maximal voluntary contraction handgrip exercise, and a resting trial of 2 min of inspired 100% oxygen.
C
Comparator
Trials without dopamine infusion.
O
Outcome
Cardiovascular and ventilatory responses (ventilation, total peripheral resistance index, cardiac index, stroke index, heart rate, mean arterial pressure, brachial conductance) at rest and during exercise.surrogate

Peripheral chemoreceptors contribute to cardiovascular control at rest in heart failure patients, as evidenced by improved hemodynamics during chemoreceptor inhibition with dopamine.

Abstract

Peripheral chemoreceptor activity/sensitivity is enhanced in chronic heart failure (HF), and sensitivity is linked to greater mortality. This study aimed to determine the role of the peripheral chemoreceptor in cardiovascular control at rest and during exercise in HF patients and controls. Clinically stable HF patients (n = 11; ejection fraction: 39 ± 5%) and risk-matched controls (n = 10; ejection fraction: 65 ± 2%) performed randomized trials with or without dopamine infusion (2 μg·min(-1)·kg(-1)) at rest and during 40% maximal voluntary contraction handgrip (HG) exercise, and a resting trial of 2 min of inspired 100% oxygen. Both dopamine and hyperoxia were used to inhibit the peripheral chemoreceptor. At rest in HF patients, dopamine decreased ventilation (P = 0.02), decreased total peripheral resistance index (P = 0.003), and increased cardiac and stroke indexes (P ≤ 0.01), yet there was no effect of dopamine on these variables in controls (P ≥ 0.7). Hyperoxia lowered ventilation in HF (P = 0.01), but not in controls (P = 0.9), indicating suppression of the peripheral chemoreceptors in HF. However, no decrease of total peripheral resistance index was observed in HF. As expected, HG increased heart rate, ventilation, and brachial conductance of the nonexercising arm in controls and HF patients. During dopamine infusion, there were no changes in mean arterial pressure, heart rate, or ventilation responses to HG in either group (P ≥ 0.26); however, brachial conductance increased with dopamine in the control group (P = 0.004), but decreased in HF (P = 0.02). Our findings indicate that the peripheral chemoreceptor contributes to cardiovascular control at rest in HF patients and during exercise in risk-matched controls.

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Cite This Study

Edgell et al. (2015) conducted an RCT in chronic heart failure (n=21). Dopamine infusion and hyperoxia vs. Without dopamine infusion / risk-matched controls was evaluated on Cardiovascular and ventilatory responses (ventilation, total peripheral resistance index, cardiac and stroke indexes). Peripheral chemoreceptor inhibition with dopamine in heart failure patients decreased ventilation (P=0.02) and total peripheral resistance (P=0.003), and increased cardiac index (P≤0.01) at rest.

synapsesocial.com/papers/6a1f00f7d6e47ed9f1e6aeedhttps://doi.org/10.1152/japplphysiol.00898.2014
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Inhibition of peripheral chemoreceptors improves ventilatory efficiency during exercise in heart failure with preserved ejection fraction − a role of tonic activity and acute reflex response2022 · 7 citations
  2. 2Circulatory Effects of Peripheral Chemoreflex Inhibition During Exercise in Treated Hypertension2024 · 1 citations
  3. 3Peripheral chemoreflex restrains skeletal muscle blood flow during exercise in participants with treated hypertension2024 · 9 citations
  4. 4The Effect of Carotid Chemoreceptor Inhibition on Exercise Tolerance in Chronic Heart Failure2020 · 10 citations
  5. 5Blunted muscle vasodilatation during chemoreceptor stimulation in patients with heart failure2007 · 42 citations