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Cutoff Value of Phase Angle by Bioelectrical Impedance Analysis at Admission as a Prognostic Factor in Patients with Acute Heart Failure
Published on: June 10, 2025
Pre-Existing Heart Failure, Biomarker Profiles, and Patients' Vulnerability in Hospitalized COVID-19: A
Ana-Maria Pah1, Maria-Laura Craciun1, Adina Avram2
1Cardiology Department, "Victor Babes" University of Medicine and Pharmacy, Eftimie Murgu Square 2, 300041 Timisoara, Romania.
Insights
Pre-existing heart failure (HF) in COVID-19 patients indicates higher cardiac risk but doesn't independently predict sepsis or mortality. Systemic inflammation and myocardial injury markers are key predictors of COVID-19 mortality.
Area of Science:
- Cardiology
- Infectious Diseases
- Critical Care Medicine
Background:
- Heart failure (HF) is linked to poor outcomes in COVID-19 patients.
- The independent predictive value of HF for sepsis and mortality, considering biomarkers, remains unclear.
Purpose of the Study:
- To determine if pre-existing heart failure independently predicts sepsis and mortality in hospitalized COVID-19 patients.
- To assess the association of HF with sepsis and mortality after adjusting for inflammatory and cardiac biomarkers.
Main Methods:
- Retrospective cohort study of 127 hospitalized COVID-19 patients.
- Assessed pre-existing HF, baseline biomarkers (NT-proBNP, troponin, CRP, IL-6), and clinical data.
- Used multivariable logistic regression to analyze associations with sepsis and mortality.
Main Results:
- Patients with HF showed higher cardiac biomarkers and cardiovascular complications.
- No significant difference in sepsis or mortality rates between HF and non-HF groups.
- HF was not independently associated with sepsis or mortality after adjustments.
- Elevated CRP, IL-6, and high-sensitivity troponin were independently associated with mortality.
Conclusions:
- Pre-existing HF in COVID-19 patients is associated with increased cardiac risk but not independent sepsis or mortality risk.
- Systemic inflammation and acute myocardial injury markers (CRP, IL-6, troponin) are primary drivers of mortality.
- Biomarker-driven risk stratification is crucial for COVID-19 patients, especially those with HF.
Abstract:
Background/Objectives: Heart failure (HF) has been associated with adverse outcomes in coronavirus disease 2019 (COVID-19), but it remains unclear whether HF independently predicts sepsis and mortality once inflammatory and cardiac biomarkers are considered. Methods: This single-center retrospective cohort analysis included 127 adult patients hospitalized with laboratory-confirmed COVID-19 at a tertiary infectious diseases hospital between March 2020 and December 2024. Pre-existing HF was defined based on cardiology records and chronic HF therapy. Baseline assessments included clinical characteristics, echocardiography, and biomarkers (NT-proBNP, high-sensitivity troponin, C-reactive protein [CRP], interleukin 6 [IL-6], procalcitonin, and D-dimer) measured within 24 h of admission. Primary outcomes were sepsis and all-cause mortality (in-hospital or 30-day). Independent associations with sepsis and mortality were examined using multivariable logistic regression incorporating demographic factors, major comorbidities, baseline disease severity, and inflammatory and cardiac biomarkers. Results: Of 127 patients (mean age 70.1 ± 14.8 years, 63.8% male), 30 (23.6%) had pre-existing HF. Patients with preexisting heart failure exhibited significantly reduced left ventricular ejection fraction and higher admission levels of NT-proBNP and high-sensitivity troponin, accompanied by a substantially increased burden of in-hospital cardiovascular complications (53.3% vs. 14.4%, p < 0.001). However, sepsis (6.7% vs. 7.2%, p = 1.000) and total mortality (20.0% vs. 17.5%, p = 0.971) did not differ significantly between HF and non-HF groups. In multivariable analyses, HF was not independently associated with sepsis (adjusted odds ratio [aOR] 0.78, 95% confidence interval [CI] 0.05-12.34, p = 0.855) or mortality (aOR 0.63, 95% CI 0.16-2.46, p = 0.506). By contrast, higher CRP (aOR 1.01 per 1 mg/L, 95% CI 1.00-1.01, p = 0.007), IL-6 (aOR 1.01 per 1 pg/mL, 95% CI 1.00-1.01, p = 0.025), and high-sensitivity troponin (aOR >999, 95% CI 138->999, p = 0.001) were independently associated with mortality. Conclusions: In hospitalized COVID-19 patients, pre-existing HF identifies a subgroup with heightened cardiac biomarker activation and a substantially higher burden of cardiovascular complications but does not associate with sepsis or short-term mortality in this cohort after adjustment for inflammatory and cardiac biomarkers. Mortality risk appears to be driven primarily by systemic inflammation and acute myocardial injury, as reflected by CRP, IL-6, and high-sensitivity troponin. These findings support a biomarker-driven approach to risk stratification in COVID-19, in which dynamic inflammatory and cardiac injury profiles provide more prognostic information than HF status alone, while still warranting intensified cardiovascular surveillance in patients with HF.
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