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Author Spotlight: Exercise Test for Evaluation of the Functional Efficacy of the Pig Cardiovascular System
Published on: May 12, 2023
Prognostic value of cardiopulmonary exercise testing in cardiac amyloidosis
Martin Nicol1,2, Antoine Deney3, Olivier Lairez3
1Lariboisiere Hospital, Assistance Publique-Hôpitaux de Paris, Paris, France.
Insights
Cardiopulmonary exercise testing (CPET) effectively assesses functional capacity and prognosis in cardiac amyloidosis (CA) patients. Low peak oxygen consumption and elevated NT-proBNP identify high-risk individuals, aiding risk stratification.
Area of Science:
- Cardiology
- Cardiovascular Medicine
- Exercise Physiology
Background:
- Cardiac amyloidosis (CA) significantly impairs functional capacity and patient prognosis.
- Accurate functional assessment and risk stratification are crucial for managing CA patients.
Purpose of the Study:
- To evaluate the utility of cardiopulmonary exercise testing (CPET) in assessing functional capacity and prognosis in patients with cardiac amyloidosis (CA).
- To identify key CPET parameters and biomarkers for risk stratification in AL and TTR CA.
Main Methods:
- A multicenter study included 150 patients with light chain (AL) or transthyretin (TTR) CA.
- Patients underwent comprehensive evaluation, including CPET and follow-up.
- The primary endpoint was a composite of death or heart failure hospitalization.
Main Results:
- Low peak oxygen consumption (VO2 ≤13 mL/kg/min) and circulatory power (≤1730 mmHg/mL/min), along with elevated NT-proBNP (≥1800 ng/L), were associated with adverse outcomes.
- Patients with both low peak VO2 and high NT-proBNP represented a very high-risk subgroup.
- Chronotropic insufficiency was observed in 51% of patients.
Conclusions:
- CPET provides valuable insights into functional capacity, circulatory, and chronotropic responses in CA patients.
- CPET parameters, combined with cardiac biomarkers like NT-proBNP, aid in prognostic assessment and risk stratification for CA.
Aims:
In amyloid patients, cardiac involvement dramatically worsens functional capacity and prognosis. We sought to study how the cardiopulmonary exercise test (CPET) could help in functional assessment and risk stratification of patients with cardiac amyloidosis (CA).
Methods And Results:
We carried out a multicentre study including patients with light chain (AL) or transthyretin (TTR) CA. All patients underwent exhaustive examination including CPET and follow-up. The primary prognostic endpoint was the occurrence of death or heart failure hospitalization. Overall, 150 patients were included (91 AL and 59 TTR CA). Median age, systolic blood pressure, N-terminal pro B-type natriuretic peptide (NT-proBNP) and cardiac troponin T were 70 (64-78) years, 121 [interquartile range (IQR) 109-139] mmHg, 2806 (IQR 1218-4638) ng/L and 64 (IQR 33-120) ng/L, respectively. New York Heart Association classes were I-II in 64%. Median peak oxygen consumption (VO2 ) and circulatory power were low at 13.0 (10.0-16.9) mL/kg/min and 1730 (1318-2614) mmHg/mL/min, respectively. The minute ventilation/carbon dioxide production slope was increased to 37 (IQR 33-45). A total of 77 patients (51%) had chronotropic insufficiency. After a median follow-up of 20 months, there were 37 deaths and 44 heart failure hospitalizations. At multivariate Cox analysis, peak VO2 ≤13 mL/kg/min [hazard ratio (HR) 2.7, 95% confidence interval (CI) 1.6-4.8], circulatory power ≤1730 mmHg/mL/min (HR 2.4, 95% CI 1.2-4.6) and NT-proBNP ≥1800 ng/L (HR 2.2, 95% CI 1.1-4.3) were found to be associated with the primary outcome. No events occurred in patients with both peak VO2 >13 mL/kg/min and NT-proBNP <1800 ng/L, while the association of VO2 ≤13 mL/kg/min with NT-proBNP ≥1800 ng/L identified a very high-risk subgroup.
Conclusion:
In CA, CPET is helpful in assessing functional capacity, circulatory and chronotropic responses as well as the prognosis of patients along with cardiac biomarkers.
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