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Murine Echocardiography of Left Atrium, Aorta, and Pulmonary Artery
Published on: February 20, 2017
Natriuretic peptides and soluble ST2 improves echocardiographic diagnosis of elevated left ventricular filling
Paul-Adrian Călburean1,2, Silvia Lupu3,4, Adina Huțanu4
1Emergency Institute for Cardiovascular Diseases and Transplantation Târgu Mureş, Târgu Mureş, Romania. calbureanpaul@gmail.com.
Insights
Certain cardiac serum biomarkers, including NT-proBNP and sST2, can help predict diastolic dysfunction, offering a potential alternative to invasive pressure measurements. These biomarkers show significant value in identifying elevated left ventricular filling pressures.
Area of Science:
- Cardiology
- Biomarkers
- Heart Failure Research
Background:
- Diastolic dysfunction is defined by elevated left ventricular filling pressures.
- Cardiac catheterization for LV end-diastolic pressure (LVEDP) measurement is invasive.
- Non-invasive biomarkers may offer diagnostic alternatives.
Purpose of the Study:
- To investigate correlations between LVEDP and various cardiac serum biomarkers.
- To assess the predictive value of these biomarkers for diastolic dysfunction.
Main Methods:
- Prospective study of 110 patients undergoing cardiac catheterization.
- Measurement of serum biomarkers: MR-proANP, BNP, NT-proBNP, sST2, galectin-3, MR-proAMD.
- Correlation analysis and multivariable logistic regression for diastolic dysfunction prediction.
Main Results:
- LVEDP correlated significantly with BNP, NT-proBNP, MR-proANP, and sST2.
- NT-proBNP and sST2 showed significant predictive value for diastolic dysfunction.
- Galectin-3 and MR-proAMD did not correlate with elevated filling pressures.
Conclusions:
- NT-proBNP and sST2 are valuable predictors of diastolic dysfunction.
- These biomarkers can potentially improve non-invasive diagnosis of diastolic dysfunction.
- Further research may support their integration into clinical practice.
Abstract:
Elevated filling pressure of the left ventricle (LV) defines diastolic dysfunction. The gold standard for diagnosis is represented by the measurement of LV end-diastolic pressure (LVEDP) during cardiac catheterization, but it has the disadvantage of being an invasive procedure. This study aimed to investigate the correlation between LVEDP and cardiac serum biomarkers such as natriuretic peptides (mid-regional pro-atrial natriuretic peptide [MR-proANP], B-type natriuretic peptide [BNP], and N-terminal prohormone BNP [NT-proBNP]), soluble ST2 (sST2), galectin-3 and mid-regional pro-adrenomedullin (MR-proAMD). Consecutive patients hospitalized in a tertiary center and undergoing left cardiac catheterization were included in the study. Diastolic dysfunction was considered present if the end-expiratory LVEDP was ≥ 15 mmHg. Cardiac biomarkers were determined from pre-procedural peripheral venous blood samples. A total of 110 patients were included, of whom 76 (69.0%) were males, with a median age of 65 (55-71) years. Median LVEDP was 13.5 (8-19) mmHg and diastolic dysfunction was present in 50 (45.4%) of the patients. LVEDP correlated with BNP (p < 0.0001, r = 0.39 [0.20-0.53]), NT-proBNP (p < 0.0001, r = 0.40 [0.22-0.55]), MR-proANP (p = 0.001, r = 0.30 [0.11-0.46]), sST2 (p < 0.0001, r = 0.47 [0.30-0.60]), but not with MR-proAMD (p = 0.77) or galectin-3 (p = 0.76). In the final stepwise multivariable binary logistic regression model, diastolic dysfunction was predicted by NT-proBNP, mitral average E/e', sST2, atrial fibrillation, and left atrium reservoir strain. BNP, NT-proBNP, MR-proANP, and sST2 had predictive value for diastolic dysfunction. In contrast, galectin-3 and MR-proAMD were not associated with increased filling pressures. Furthermore, NT-proBNP and sST2 significantly improved diastolic dysfunction prediction in the final multivariable model.
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