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March 10, 2015Journal of the American Heart Association108 citationsOpen Access

Pulmonary Vascular and Right Ventricular Reserve in Patients With Normalized Resting Hemodynamics After Pulmonary Endarterectomy

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GCGuido ClaessenAGAndré La GercheSDSteven Dymarkowski

Key Result

Sildenafil decreased the mPAP/cardiac output slope and increased peak exercise right ventricular ejection fraction in post-PEA patients with normalized resting hemodynamics.

Study Design

Type

Observational (n=36)

Structured PICO

Does sildenafil improve right ventricular function and pulmonary hemodynamics during exercise in patients with normalized resting hemodynamics after pulmonary endarterectomy?

P
Population
36 participants comprising 14 healthy controls, 15 CTEPH patients, and 7 post-pulmonary endarterectomy patients with normalized resting mPAP evaluated during exercise.
I
Intervention
Sildenafil during exercise
C
Comparator
Baseline (no sildenafil) and comparison across groups (healthy controls, CTEPH patients)
O
Outcome
Right ventricular function and hemodynamics (mPAP-cardiac output slope, pulmonary arterial compliance, peak exercise right ventricular ejection fraction) during exercisesurrogate

Patients with normalized resting hemodynamics post-PEA still exhibit abnormal pulmonary vascular reserve and chronotropic incompetence during exercise, which can be partially attenuated with sildenafil.

Abstract

BACKGROUND: Patients with normalized mean pulmonary artery pressure (mPAP) after pulmonary endarterectomy (PEA) for chronic thromboembolic pulmonary hypertension (CTEPH) do not always regain normal exercise capacity. We evaluated right ventricular function, its interaction with both pulsatile and resistive afterload, and the effect of sildenafil during exercise in these patients. METHODS AND RESULTS: Fourteen healthy controls, 15 CTEPH patients, and 7 patients with normalized resting mPAP (≤25 mm Hg) post-PEA underwent cardiopulmonary exercise testing, followed by cardiac magnetic resonance imaging with simultaneous invasive mPAP measurement during incremental supine cycling exercise. Peak oxygen consumption and peak heart rate were significantly reduced in post-PEA and CTEPH patients compared to controls. The mPAP-cardiac output slope was steeper in post-PEA patients than in controls and similar to CTEPH. Relative to controls, resting right ventricular ejection fraction was reduced in CTEPH, but not in post-PEA patients. In contrast, peak exercise right ventricular ejection fraction was reduced both in post-PEA and CTEPH patients. Exercise led to reduction of pulmonary arterial compliance in all groups. Nevertheless, resting pulmonary arterial compliance values in CTEPH and post-PEA patients were even lower than those in controls at peak exercise. In post-PEA patients, sildenafil did not affect resting hemodynamics nor right ventricular function, but decreased the mPAP/cardiac output slope and increased peak exercise right ventricular ejection fraction. CONCLUSIONS: Exercise intolerance in post-PEA patients is explained by abnormal pulmonary vascular reserve and chronotropic incompetence. The mPAP/cardiac output slope and pulmonary arterial compliance are sensitive measures demonstrating abnormal resistive and pulsatile pulmonary vascular function in post-PEA patients. These abnormalities are partially attenuated with sildenafil.

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Cite This Study

Claessen et al. (2015) conducted an observational in Chronic thromboembolic pulmonary hypertension (CTEPH) (n=36). Sildenafil vs. Baseline / Healthy controls was evaluated on Right ventricular function, mPAP-cardiac output slope, and pulmonary arterial compliance during exercise. Sildenafil decreased the mPAP/cardiac output slope and increased peak exercise right ventricular ejection fraction in post-PEA patients with normalized resting hemodynamics.

synapsesocial.com/papers/6a218f2e153b2036cbf1d7a3https://doi.org/10.1161/jaha.114.001602
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