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July 30, 2015PLoS ONE33 citationsOpen Access

Outcome in Heart Failure with Preserved Ejection Fraction: The Role of Myocardial Structure and Right Ventricular Performance

GGGeorg GoliaschCZCaroline Zotter‐TufaroSAStefan Aschauer

Key Result

Reduced right ventricular function was strongly associated with an increased risk of hospitalization for heart failure or cardiac death in patients with HFpEF (adj. HR 6.62).

Study Design

Type

Observational (n=142)

Multicenter

No

Structured PICO

P
Population
142 patients with heart failure with preserved ejection fraction (median age 71, 70% female) were prospectively followed for a median of 10 months to assess the prognostic impact of ventricular function and hemodynamics.
O
Outcome
Hospitalization for heart failure and/or cardiac deathcomposite

Reduced right ventricular function and elevated pulmonary pressures are strong independent predictors of mortality and morbidity in patients with HFpEF.

Main Result

Hazard Ratio: 6.62 (95% CI 3.12–14.02)

Absolute Event Rate: 75% vs 26%

p-value: p=<0.001

Limitations

  • Single tertiary care center experience, which may introduce center-specific bias.
  • Small number of events and low number of deaths.
  • Myocardial biopsies were only available in a small subset of 16 patients.
  • Fluid status at right heart catheterization was not systematically determined by bioimpedance.
  • Left ventricular compliance was not invasively measured.

Abstract

BACKGROUND: Heart failure with preserved ejection fraction (HFpEF) is recognized as a major cause of cardiovascular morbidity and mortality. Thus, a profound understanding of the pathophysiologic changes in HFpEF is needed to identify risk factors and potential treatment targets in this specific patient population. Therefore, we aimed to comprehensively assess the impact of left- and right-ventricular function and hemodynamics on long-term mortality and morbidity in order to improve risk prediction in patients with HFpEF. METHODS AND RESULTS: We prospectively included 142 consecutive patients with HFpEF into our observational, non-interventional registry. Echocardiography, cardiac magnetic resonance imaging and invasive hemodynamic assessments including myocardial biopsy were performed at baseline. We detected significant correlations between left ventricular extracellular matrix and left ventricular end-diastolic diameter (r = -0.64;p = 0.03) and stroke volume (r = -0.53;p = 0.04). Hospitalization for heart failure and/or cardiac death was observed over a median follow up of 10 months. The strongest risk factors were reduced right ventricular function (adj. HR 6.62;95%CI 3.12- 14.02;p<0.001), systolic pulmonary arterial pressure (adj. HR per 1-SD 1.55;95%CI 1.15- 2.09;p = 0.004) and the pulmonary artery wedge pressure (adj. HR per 1-SD 1.51;95%CI 1.09-2.08; p = 0.012). The area under the ROC curve for right ventricular function was 0.63, for systolic pulmonary arterial pressure 0.75, and for pulmonary artery wedge pressure 0.68. CONCLUSION: The current study emphasizes the importance of right ventricular function and pulmonary pressures on outcome in patients with HFpEF providing pathophysiological insights into the hemodynamic changes in HFpEF.

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Cite This Study

Goliasch et al. (2015) conducted an observational in Heart failure with preserved ejection fraction (HFpEF) (n=142). Reduced right ventricular function vs. Normal or mildly reduced right ventricular function was evaluated on Hospitalization for heart failure and/or death for cardiac reason (adj. HR 6.62, 95% CI 3.12-14.02, p=<0.001). Reduced right ventricular function was strongly associated with an increased risk of hospitalization for heart failure or cardiac death in patients with HFpEF (adj. HR 6.62).

synapsesocial.com/papers/6a632775809dd4a9e2c1c2eahttps://doi.org/10.1371/journal.pone.0134479
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