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Published on: May 3, 2018
Long-Term Adverse Effects of Mild COVID-19 Disease on Arterial Stiffness, and Systemic and Central Hemodynamics: A
Mario Podrug1,2, Pjero Koren1,3, Edita Dražić Maras4
1Laboratory of Vascular Aging, University of Split School of Medicine, 21000 Split, Croatia.
Insights
Mild COVID-19 can cause long-lasting vascular damage, affecting arterial stiffness and blood pressure. These changes in cardiovascular function may persist for months after infection, with responses varying by age.
Area of Science:
- Cardiovascular Medicine
- Infectious Diseases
- Vascular Biology
Background:
- COVID-19 is linked to vascular complications, often attributed to endothelial dysfunction.
- Long-term (>7 weeks) effects of COVID-19 on vascular structure and function are not well understood.
- Previous research has not fully explored the persistent vascular changes following mild SARS-CoV-2 infection.
Purpose of the Study:
- To investigate the long-term consequences of mild COVID-19 on arterial stiffness and hemodynamic parameters.
- To quantify changes in vascular function 2-3 months post-infection.
- To identify factors influencing vascular impairment after COVID-19.
Main Methods:
- Observational study measuring arterial stiffness and hemodynamics in mild COVID-19 patients.
- Baseline measurements taken up to two years pre-infection; post-infection measurements at 2-3 months.
- Analysis using linear and mixed-effects regression models.
Main Results:
- Mild COVID-19 significantly impacted arterial stiffness (e.g., cfPWV, AIx@HR75) and hemodynamics (e.g., cDBP, DBP, MAP).
- Vascular changes were dependent on time since infection and patient age.
- Mixed-effects models predicted clinically significant vascular impairment progression within 2-3 months post-infection.
Conclusions:
- Mild COVID-19 can initiate a widespread, long-lasting pathological process in the vasculature.
- Individual responses to COVID-19 vary, suggesting potential autoimmune triggers.
- These findings highlight the need for monitoring cardiovascular health after mild COVID-19.
Abstract:
COVID-19-associated vascular disease complications are primarily associated with endothelial dysfunction; however, the consequences of disease on vascular structure and function, particularly in the long term (>7 weeks post-infection), remain unexplored. Individual pre- and post-infection changes in arterial stiffness as well as central and systemic hemodynamic parameters were measured in patients diagnosed with mild COVID-19. As part of in-laboratory observational studies, baseline measurements were taken up to two years before, whereas the post-infection measurements were made 2-3 months after the onset of COVID-19. We used the same measurement protocol throughout the study as well as linear and mixed-effects regression models to analyze the data. Patients (N = 32) were predominantly healthy and young (mean age ± SD: 36.6 ± 12.6). We found that various parameters of arterial stiffness and central hemodynamics-cfPWV, AIx@HR75, and cDBP as well as DBP and MAP-responded to a mild COVID-19 disease. The magnitude of these responses was dependent on the time since the onset of COVID-19 as well as age (pregression_models ≤ 0.013). In fact, mixed-effects models predicted a clinically significant progression of vascular impairment within the period of 2-3 months following infection (change in cfPWV by +1.4 m/s, +15% in AIx@HR75, approximately +8 mmHg in DBP, cDBP, and MAP). The results point toward the existence of a widespread and long-lasting pathological process in the vasculature following mild COVID-19 disease, with heterogeneous individual responses, some of which may be triggered by an autoimmune response to COVID-19.
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