Why the study?
Long-term changes in exercise capacity and cardiopulmonary hemodynamics after pulmonary endarterectomy for chronic thromboembolic pulmonary hypertension have been poorly described.
Does pulmonary endarterectomy improve long-term exercise capacity and cardiopulmonary hemodynamics in patients with chronic thromboembolic pulmonary hypertension?
Does pulmonary endarterectomy improve long-term exercise capacity and cardiopulmonary hemodynamics in patients with chronic thromboembolic pulmonary hypertension?
Pulmonary endarterectomy provides maximal hemodynamic and right ventricular functional recovery within 6 months, but long-term exercise intolerance remains prevalent and is associated with postoperative RV function.
Supports hemodynamic and functional gains after PEA in CTEPH; extends short-term data but leaves open long-term durability.
BACKGROUND: Long-term changes in exercise capacity and cardiopulmonary hemodynamics after pulmonary endarterectomy (PEA) for chronic thromboembolic pulmonary hypertension (CTEPH) have been poorly described. METHODS: <80%) at 18 months were analyzed. RESULTS: A total of 118 patients (61 from London and 57 from Amsterdam) were included in the analysis. Both cohorts displayed a significant improvement of pulmonary hemodynamics, right ventricular (RV) function, and exercise capacity 6 months after PEA. Between 6 and 18 months after PEA, there were no further improvements in hemodynamics and RV function, but the proportion of patients with impaired exercise capacity was high and slightly increased over time (52%-59% from 6 to 18 months). Long-term exercise intolerance was common and associated with preoperative diffusion capacity for carbon monoxide (DLCO), preoperative mixed venous oxygen saturation, and postoperative PH and right ventricular ejection fraction (RVEF). Clinically significant RV deterioration (RVEF decline >3%; 5 [9%] of 57 patients) and recurrent PH (5 [14%] of 36 patients) rarely occurred beyond 6 months after PEA. Age and preoperative DLCO were predictors of residual PH post-PEA. CONCLUSIONS: Restoration in exercise tolerance, cardiopulmonary hemodynamics, and RV function occurs within 6 months. No substantial changes occurred between 6 and 18 months after PEA in the Amsterdam cohort. Nevertheless, long-term exercise intolerance is common and associated with postoperative RV function.
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Kianzad et al. (2023) studied this question.
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