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Published on: March 15, 2019
Sympathetic neural overdrive, vascular dysfunction, and diminished exercise capacity in patients with long COVID-19:
Bruna E Ono1,2, João E Izaias1,2, Artur O Sales1,2
1D'Or Institute for Research and Education, Rio de Janeiro, Brazil.
Insights
Long COVID patients show persistent sympathetic overactivation, vascular and cardiac issues, and reduced exercise capacity two years post-infection. These cardiovascular sequelae require targeted therapeutic strategies for resolution.
Area of Science:
- Cardiovascular Medicine
- Infectious Diseases
- Exercise Physiology
Background:
- Severe COVID-19 is linked to neurovascular, cardiac, and exercise capacity impairments.
- The long-term persistence of these alterations in Long COVID is not well understood.
- This study investigates cardiovascular and exercise capacity changes in Long COVID patients 2 years post-infection.
Purpose of the Study:
- To test the hypothesis that Long COVID patients exhibit persistent sympathetic overdrive, aortic stiffening, endothelial dysfunction, cardiac changes, and diminished exercise capacity.
- To assess cardiovascular and functional sequelae 2 years after SARS-CoV-2 infection.
Main Methods:
- Assessed 18 Long COVID patients and 19 controls approximately 2 years post-hospital discharge.
- Measured muscle sympathetic nerve activity (MSNA), brachial artery flow-mediated dilation (BAFMD), carotid-femoral pulse wave velocity (CFPWV), cardiac function (echocardiography), and peak oxygen uptake (Peak V̇O2).
- Evaluated circulating angiotensin II, endothelial cell-derived extracellular vesicles (EVs), and oxidative stress markers.
Main Results:
- Long COVID patients demonstrated higher MSNA, CFPWV, heart rate, and endothelial cell-derived EVs, with lower cardiac function (E/A ratio, LVEF, LVGLS) and Peak V̇O2 compared to controls.
- Increased oxidative stress markers (carbonyls) and reduced antioxidant capacity (SOD) were observed in Long COVID patients.
- Peak V̇O2 was inversely correlated with MSNA, LVGLS, and carbonyls, and directly correlated with BAFMD and SOD.
Conclusions:
- Long COVID patients exhibit persistent sympathetic overactivation, vascular and cardiac impairments, and reduced exercise capacity 2 years after acute illness.
- Increased endothelial cell-derived EVs and oxidative stress contribute to the pathophysiology of Long COVID.
- Urgent development of strategies to address these persistent cardiovascular sequelae is necessary.
Abstract:
We have recently showed that patients with severe coronavirus disease (COVID) have neurovascular dysfunction, cardiac morphofunctional alterations, and attenuated exercise capacity. However, whether these alterations persist over time is unknown. Here, we tested the hypothesis that patients with long COVID, even 2 yr after severe acute respiratory syndrome coronavirus 2 (SARS-COV-2) infection, exhibit sympathetic overdrive, aortic stiffening, endothelium-dependent dysfunction, cardiac morphofunctional changes, and diminished exercise capacity. Eighteen patients with long COVID and 19 well-matched controls were studied. Muscle sympathetic nerve activity (MSNA; microneurography), brachial artery flow-mediated dilation (BAFMD; ultrasound-Doppler), carotid-femoral pulse wave velocity (CFPWV; tonometry), heart rate (HR; electrocardiogram), E-wave/A-wave ratio (E/A ratio), left ventricular ejection fraction and global longitudinal strain (LVEF and LVGLS, respectively; echocardiography), and peak oxygen uptake (peak V̇o2, cardiopulmonary exercise testing) were assessed ∼2 yr after hospital discharge. Circulating angiotensin II (Ang II, mass spectrometry), endothelial cell-derived extracellular vesicles (endothelial cell-derived EVs, flow cytometry), and oxidative stress were also evaluated. Patients with long COVID had higher MSNA, CFPWV, and HR and lower E/A ratio, LVEF, LVGLS, and peak V̇o2 than controls. Endothelial cell-derived EVs and carbonyls were higher in patients with long COVID than controls, whereas superoxide dismutase (SOD) was lower. No difference was observed in Ang II. Peak V̇o2 was inversely associated with MSNA, LVGLS, and carbonyls and directly associated with BAFMD and SOD. Our findings reveal that patients with long COVID, 2 yr after acute illness, exhibit persistent sympathetic overactivation, vascular and cardiac impairments, reduced exercise capacity, and increased endothelial cell-derived EVs and oxidative stress. As such, strategies that can resolve these persistent cardiovascular sequelae are urgently needed.NEW & NOTEWORTHY Patients with long COVID, even 2 yr after SARS-CoV-2 infection, exhibited sympathetic neural overdrive, aortic stiffening, endothelial dysfunction, cardiac morphofunctional changes, diminished aerobic exercise capacity, increased circulating endothelial cell-derived EVs, decreased antioxidant activity, and increased oxidant activity. Moreover, we showed that the reduced aerobic exercise capacity was associated with sympathetic neural outflow, vascular dysfunction, cardiac morphofunctional alterations, and increased circulating oxidative stress.
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