Key result
Elevated sST2 in chronic HF correlates with higher NT-proBNP and fewer atherosclerotic coronary arteries.
Why the study?
The relationship between soluble ST2 protein levels and traditional factors in patients with chronic heart failure was unclear.
Cross-Sectional (n=66)
No
Effect estimate: β = -0.381
p-value: p=0.04
In chronic heart failure, soluble ST2 levels are independent of traditional factors except NT-proBNP and coronary artery disease stage, suggesting a distinct pathophysiological role related to biomechanical strain.
sST2 independently associates with NT-proBNP and CAD stage in HF; hypothesis-generating for its distinct biomechanical role, should not yet change practice.
INTRODUCTION: ST2 protein is the interleukin 33 (IL-33) receptor, whose serum level depends on the biomechanical strain of cardiac myocytes. The aim of this study was to analyse the relationship between soluble ST2 (sST2) level and traditional factors in patients with chronic heart failure. MATERIAL AND METHODS: Sixty-six patients (mean age 62 years, 75% males) in stable NYHA class I-III with left ventricular ejection fraction < 45% were included in the study. Clinical, biochemical, electrocardiographic, echocardiographic and angiographic data were analysed. Patients were divided into groups depending on sST2 median: > 0.28 ng/ml (n = 31) vs. ≤ 0.28 ng/ml (n = 35). sST2 was measured using a quantitative ELISA kit. In order to define factors associated with sST2 levels uni- and multivariate regression analysis was performed. RESULTS: There was no relationship between sST2 levels and age (p = 0.67), body mass index (p = 0.19), hsTnT (p = 0.7) or other analysed parameters (all p > 0.05), except for N-terminal prohormone B-type natriuretic peptide (NT-proBNP). A significant positive correlation between sST2 and NT-proBNP was found (p = 0.013, R = 0.395). Multivariate analysis revealed that the stage of coronary artery disease and NT-proBNP were independent factors associated with sST2 concentration (p = 0.04). Intriguing is the fact that the fewer the sclerotic changes present in arteries, the higher was the sST2 level (β = -0.381, p = 0.04). CONCLUSIONS: sST2 protein is independent of traditional factors which usually affect levels of NT-proBNP. In chronic heart failure, sST2 protein may be of greater importance in idiopathic dilated cardiomyopathy than in ischaemic aetiology, which seems to be associated with the molecular mechanism (biomechanical strain) related to sST2.
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Wojtczak‐Soska et al. (2013) conducted a cross-sectional in Chronic heart failure (n=66). Soluble ST2 (sST2) level was evaluated on Factors associated with sST2 concentration in multivariate analysis (β = -0.381, p=0.04). In patients with chronic heart failure, sST2 levels were independent of traditional clinical factors but were significantly associated with NT-proBNP levels and inversely associated with the number of atherosclerotic coronary arteries.
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