Key result
In patients hospitalized with COVID-19 without prior structural heart disease, 1-year follow-up echocardiography showed significant improvements in biventricular strain and decreased left ventricular wall thickness compared to the acute phase.
Why the study?
There is poor insight into cardiovascular involvement and sequelae from COVID-19 in patients without preexisting structural heart disease.
Cohort (n=229)
No
In patients hospitalized with COVID-19 without prior structural heart disease, acute elevation of cardiac biomarkers does not translate into clinically significant cardiac dysfunction at 1 year, with echocardiography showing improved cardiac function and reduced myocardial thickening.
Acute biomarker rises in COVID-19 without structural disease do not indicate lasting dysfunction; leaves open need for larger prospective confirmation.
Background It is a well-known fact that COVID-19 affects the cardiovascular system by exacerbating heart failure in patients with preexisting conditions. However, there is a poor insight into the cardiovascular involvement and sequelae in patients without preexisting conditions. The aim of the study is to analyse the influence of COVID-19 on cardiac performance in patients without prior history of structural heart disease. The study is part of the CRACoV project, which includes a prospective design and a 12-month follow-up period. Material and methods The study included 229 patients hospitalised with a diagnosis of COVID-19 (median age of 59 years, 81 were women). A standard clinical assessment and laboratory tests were performed in all participants. An extended echocardiographic image acquisition was performed at baseline and at a 3-, 6-, and 12-month follow-up. All analyses were performed off-line. A series of echocardiographic parameters was compared using repeated measures or Friedman analysis of variance. Results In all subjects, the left ventricular (LV) ejection fraction at baseline was preserved [63.0%; Q1:Q3 (60.0–66.0)]. Elevated levels of high-sensitivity cardiac troponin T were detected in 21.3% of the patients, and elevated NT-proBNP levels were detected in 55.8%. At the 1-year follow-up, no significant changes were observed in the LV diameter and volume (LV 48.0 ± 5.2 vs. 47.8 ± 4.8 mm, p = 0.08), while a significant improvement of the parameters in the biventricular strain was observed (LV −19.1 ± 3.3% vs. −19.7 ± 2.5%, p = 0.01, and right ventricular −19.9 ± 4.5% vs. −23.2 ± 4.9%, p = 0.002). In addition, a decrease in the LV wall thickness was also observed (interventricular septum 10.4 ± 1.6 vs. 9.7 ± 2.0 mm, p < 0.001; LV posterior wall 9.8 ± 1.4 vs. 9.1 ± 1.5 mm, p < 0.001). Conclusions In an acute phase of COVID-19, the elevation of cardiac biomarkers in patients with normal left ventricular ejection fraction is a frequent occurrence; however, it does not translate into clinically significant cardiac dysfunction after 1 year. The serial echocardiographic evaluations conducted in patients without preexisting structural heart disease demonstrate an overall trend towards an improved cardiac function and a reduced myocardial thickening at 1-year follow-up. This suggests that the acute cardiac consequences of COVID-19 are associated with systemic inflammation and haemodynamic stress in patients without preexisting conditions.
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Olszanecka et al. (2023) conducted a cohort in COVID-19 without prior history of structural heart disease (n=229). COVID-19 vs. Baseline (acute phase) was evaluated on Changes in echocardiographic parameters (biventricular strain, wall thickness, LV diameter) at 1-year follow-up. In patients hospitalized with COVID-19 without prior structural heart disease, 1-year follow-up echocardiography showed significant improvements in biventricular strain and decreased left ventricular wall thickness compared to the acute phase.
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