Why the study?
Although hyponatremia is linked to worse outcomes in chronic HFrEF, it is unclear whether this prognosis is driven by hemodynamic derangement and how hemodynamics relate to hyponatremia.
Does hyponatremia predict worse outcomes and hemodynamic derangement in stable patients with advanced HFrEF evaluated for advanced therapies?
Does hyponatremia predict worse outcomes and hemodynamic derangement in stable patients with advanced HFrEF evaluated for advanced therapies?
In stable HFrEF patients evaluated for advanced therapies, hyponatremia is associated with worse hemodynamics and an increased risk of a composite of mortality, LVAD, TAH, or heart transplantation.
Hyponatremia may reflect hemodynamic compromise in stable advanced HFrEF; leaves open whether sodium correction alters outcomes.
INTRODUCTION: Hyponatremia is associated with worse outcomes in patients with chronic heart failure (HF) and reduced ejection fraction (HFrEF). However, it is unclear whether the worse prognosis is driven by hemodynamic derangement and how this potentially could be associated with hyponatremia. METHODS: The study included 502 patients with HFrEF evaluated for advanced HF therapies, who underwent a right heart catheterization (RHC). Hyponatremia was defined as p-Na ≤136 mmol/L. The risk of all-cause mortality and a composite endpoint including mortality, left ventricular assist device (LVAD) implantation, implantation of total artificial heart (TAH), or heart transplantation (HTx) was evaluated using Cox regression analyses and Kaplan-Meier models. RESULTS: Included patients were predominantly men 79% and had a median age of 54 years (IQR: 43-62). A third (165) of the patients had hyponatremia. In both univariate and multivariate regression analyses, p-Na was associated with increased central venous pressure (CVP), pulmonary capillary wedge pressure (PCWP), and mean pulmonary artery pressure (mPAP) but not with cardiac index. Hyponatremia was significantly associated with the combined endpoint (HR: 1.36 [95% CI, 1.07-1.74]; p = 0.01), but not all-cause mortality in adjusted Cox models. CONCLUSION: In stable HFrEF patients evaluated for advanced HF therapies, lower p-Na was associated with more deranged invasive hemodynamic measurements. Hyponatremia remained significantly associated with the combined endpoint but not all-cause mortality in adjusted Cox models. The study suggests that the increased mortality associated with hyponatremia in HFrEF patients could partly be driven by hemodynamic derangement.
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Rask et al. (2023) studied this question.
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