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Invasive exercise hemodynamics in obstructive and nonobstructive hypertrophic cardiomyopathy
Claudia Baratto1,2, Sergio Caravita2,3, Giovanni Battista Perego1
1Department of Cardiology, Ospedale San Luca IRCCS Istituto Auxologico Italiano, Milano, Italy.
Insights
Hypertrophic cardiomyopathy (HCM) patients show different exercise responses. Non-obstructive HCM may have increased left atrial pressure, while obstructive HCM can see reduced outflow tract obstruction during exercise.
Area of Science:
- Cardiology
- Cardiovascular Physiology
- Heart Disease Research
Background:
- Hypertrophic cardiomyopathy (HCM) is a complex heart condition.
- HCM can cause shortness of breath due to left ventricular outflow tract obstruction (LVOTO), diastolic dysfunction, or left atrial issues.
- Understanding how these factors affect exercise capacity is crucial for patient management.
Purpose of the Study:
- To investigate the hemodynamic changes during exercise in patients with HCM.
- To differentiate the exercise responses between obstructive and non-obstructive HCM.
- To determine the contribution of LVOTO, diastolic dysfunction, and left atrial function to exercise limitations in HCM.
Main Methods:
- Conducted rest and exercise cardiac catheterization in 25 HCM patients.
- Classified patients into non-obstructive (no-HOCM) and obstructive (HOCM) groups.
- Overt HOCM had resting LVOTO > 30 mmHg; latent HOCM had exercise-induced LVOTO ≥ 50 mmHg.
Main Results:
- No significant difference in resting pressures (LV end-diastolic, PAWP, PAWP V waves) between groups.
- During exercise, non-obstructive HCM showed a greater increase in pulmonary artery wedge pressure (PAWP) and PAWP V waves (indicating left atrial stiffness).
- Overt obstructive HCM experienced a reduction in LVOTO during supine exercise.
Conclusions:
- Non-obstructive HCM patients may exhibit greater increases in left atrial pressure during exercise, suggesting more significant left atrial myopathy or reduced compliance.
- Obstructive HCM patients with overt obstruction may show a paradoxical decrease in LVOTO during supine exercise.
- These findings highlight distinct pathophysiological mechanisms contributing to exercise intolerance in different HCM subtypes.
Abstract:
Hypertrophic cardiomyopathy (HCM) is a heterogeneous disease that may lead to exertional dyspnea through dynamic left ventricular outflow tract obstruction (LVOTO), left ventricular (LV) diastolic dysfunction, and/or left atrial myopathy. Deciphering the relative contribution of these alterations to exercise pathophysiology may be clinically relevant. We sought to characterize the hemodynamic adaptation to exercise of patients with HCM, using supine left and right heart catheterization. Twenty-five patients with HCM underwent rest and exercise cardiac catheterization. Patients were subdivided into nonobstructive HCM (no-HOCM) and obstructive HCM (HOCM); the latter were defined by LVOTO > 30 mmHg at rest (overt HOCM, irrespective of exercise LVOTO) or ≥50 mmHg during or after exercise despite LVOTO < 30 mmHg at rest (latent HOCM). Ten patients (40%) were classified as no-HOCM, whereas 15 (60%) were classified as HOCM (8 with overt HOCM and 7 with latent or postexercise HOCM). LV end-diastolic pressure, mean pulmonary artery wedge pressure (PAWP), and PAWP V waves (the latter a marker of left atrial stiffness) did not differ between HOCM and no-HOCM at rest. However, during exercise, both PAWP and PAWP V waves increased to a larger extent in no-HOCM (+24 ± 3 vs. +13 ± 3 mmHg and +28 ± 4 vs. +14 ± 3 mmHg, respectively, P < 0.05). In overt HOCM, LVOTO was reduced by 22 ± 8 mmHg (P < 0.01) during exercise. Our findings suggest that during exercise, no-HOCM patients may display a steeper increase in left atrial pressure than HOCM, suggesting more advanced left atrial myopathy/low left atrial compliance. LVOTO may paradoxically reduce during supine exercise in overt HOCM.NEW & NOTEWORTHY Patients with hypertrophic cardiomyopathy (HCM) quite invariably display high left heart filling pressure during exercise. Mean pulmonary artery wedge pressure increase, together with tall V waves, may be steeper in patients with nonobstructive HCM than in patients with obstructive HCM, witnessing more severe left atrial myopathy. Patients with overt obstructive HCM (i.e., with significant left ventricular outflow tract pressure gradient at rest) may present with a paradoxical reduction of left ventricular outflow tract obstruction during supine exercise.
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