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Published on: May 12, 2023
Diagnostic and Prognostic Values of Cardiopulmonary Exercise Testing in Cardiac Amyloidosis
Rishika Banydeen1,2, Astrid Monfort2,3, Jocelyn Inamo2,3
1Clinical Research Department, CHU Martinique (University Hospital of Martinique), Fort de France, France.
Insights
Cardiac amyloidosis (CA) impairs exercise capacity, with reduced peak oxygen uptake (VO2 peak) predicting poor outcomes. Cardiopulmonary exercise testing (CPET) helps assess CA patients and treatment effectiveness.
Area of Science:
- Cardiology
- Cardiovascular Physiology
- Medical Diagnostics
Background:
- Cardiac amyloidosis (CA) involves amyloid infiltration of the myocardium, causing stiffness and restrictive behavior.
- CA diagnosis is increasing due to better awareness and diagnostic tools.
- Exercise intolerance, marked by reduced peak oxygen uptake (VO2 peak), is a key symptom.
Purpose of the Study:
- To highlight the significance of reduced VO2 peak in cardiac amyloidosis.
- To emphasize the role of cardiopulmonary exercise testing (CPET) in CA diagnosis and management.
- To explore the prognostic value of CPET-derived parameters in CA.
Main Methods:
- Cardiopulmonary exercise testing (CPET) to assess exercise hemodynamics and ventilatory efficiency.
- Measurement of peak oxygen uptake (VO2 peak) and VE-VCO2 slope.
- Analysis of hemodynamic responses, including myocardial contractile reserve and efficiency.
Main Results:
- Patients with CA exhibit impaired hemodynamic adaptation to exercise.
- Reduced VO2 peak is a strong, independent predictor of adverse outcomes in both AL and ATTR CA.
- Increased VE-VCO2 slope suggests ventilatory inefficiency and potential sympathoexcitation.
Conclusions:
- Reduced VO2 peak is a critical prognostic marker in cardiac amyloidosis.
- CPET provides valuable prognostic information and aids in evaluating therapeutic interventions for CA.
- Understanding exercise limitations is crucial for managing CA patients.
Abstract:
Cardiac amyloidosis (CA) is a myocardial disease characterized by extracellular amyloid infiltration throughout the heart, resulting in increased myocardial stiffness, and restrictive heart wall chamber behavior. Its diagnosis among patients hospitalized for cardiovascular diseases is becoming increasingly frequent, suggesting improved disease awareness, and higher diagnostic capacities. One predominant functional manifestation of patients with CA is exercise intolerance, objectified by reduced peak oxygen uptake (VO2 peak), and assessed by metabolic cart during cardiopulmonary exercise testing (CPET). Hemodynamic adaptation to exercise in patients with CA is characterized by low myocardial contractile reserve and impaired myocardial efficiency. Rapid shallow breathing and hyperventilation, in the absence of ventilatory limitation, are also typically observed in response to exercise. Ventilatory inefficiency is further suggested by an increased VE-VCO2 slope, which has been attributed to excessive sympathoexcitation and a high physiological dead space (VD/VT) ratio during exercise. Growing evidence now suggests that, in addition to well-established biomarker risk models, a reduced VO2 peak is potentially a strong and independent predictive factor of adverse patient outcomes, both for monoclonal immunoglobulin light chain (AL) or transthyretin (ATTR) CA. Besides generating prognostic information, CPET can be used for the evaluation of the impact of therapeutic interventions in patients with CA.
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