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Hypertrophic Cardiomyopathy With Left Ventricular Systolic Dysfunction: Insights From the SHaRe Registry
Peter Marstrand1,2, Larry Han3, Sharlene M Day4
1Cardiovascular Division, Brigham and Women's Hospital, Boston, MA (P.M., N.K.L., C.Y.H.).
Insights
Hypertrophic cardiomyopathy with left ventricular systolic dysfunction (HCM-LVSD) affects 8% of patients. While variable, 75% experience adverse events, with 35% facing a composite outcome within 8.4 years.
Area of Science:
- Cardiology
- Genetics
- Heart Failure Research
Background:
- Hypertrophic cardiomyopathy with left ventricular systolic dysfunction (HCM-LVSD) is defined by ejection fraction <50%.
- The prognosis and natural history of HCM-LVSD remain poorly understood due to its rarity.
Purpose of the Study:
- To describe the natural history of HCM-LVSD.
- Identify predictors of prognosis and incident development of HCM-LVSD.
Main Methods:
- Utilized data from 6793 patients with HCM across 11 international specialty centers (SHaRe Registry).
- Employed Cox proportional hazards models to analyze outcomes and risk factors.
Main Results:
- HCM-LVSD occurred in 8% (553 patients) of the cohort.
- 75% of HCM-LVSD patients experienced adverse events; 35% reached a composite outcome (death, transplant, LVAD) with a median time of 8.4 years.
- Predictors of composite outcome included multiple sarcomeric variants, atrial fibrillation, and LVEF <35%. Predictors of incident HCM-LVSD included LV size, wall thickness, LVEF 50-60%, late gadolinium enhancement, and sarcomeric variants.
Conclusions:
- HCM-LVSD impacts a significant minority of HCM patients, often with severe outcomes.
- Genetic factors, specifically sarcomeric variants (multiple or thin filament), play a crucial role in both prognosis and disease progression.
- Clinical features and cardiac imaging findings are also key predictors for adverse events and disease development in HCM-LVSD.
Background:
The term "end stage" has been used to describe hypertrophic cardiomyopathy (HCM) with left ventricular systolic dysfunction (LVSD), defined as occurring when left ventricular ejection fraction is <50%. The prognosis of HCM-LVSD has reportedly been poor, but because of its relative rarity, the natural history remains incompletely characterized.
Methods:
Data from 11 high-volume HCM specialty centers making up the international SHaRe Registry (Sarcomeric Human Cardiomyopathy Registry) were used to describe the natural history of patients with HCM-LVSD. Cox proportional hazards models were used to identify predictors of prognosis and incident development.
Results:
From a cohort of 6793 patients with HCM, 553 (8%) met the criteria for HCM-LVSD. Overall, 75% of patients with HCM-LVSD experienced clinically relevant events, and 35% met the composite outcome (all-cause death [n=128], cardiac transplantation [n=55], or left ventricular assist device implantation [n=9]). After recognition of HCM-LVSD, the median time to composite outcome was 8.4 years. However, there was substantial individual variation in natural history. Significant predictors of the composite outcome included the presence of multiple pathogenic/likely pathogenic sarcomeric variants (hazard ratio [HR], 5.6 [95% CI, 2.3-13.5]), atrial fibrillation (HR, 2.6 [95% CI, 1.7-3.5]), and left ventricular ejection fraction <35% (HR, 2.0 [95% CI, 1.3-2.8]). The incidence of new HCM-LVSD was ≈7.5% over 15 years. Significant predictors of developing incident HCM-LVSD included greater left ventricular cavity size (HR, 1.1 [95% CI, 1.0-1.3] and wall thickness (HR, 1.3 [95% CI, 1.1-1.4]), left ventricular ejection fraction of 50% to 60% (HR, 1.8 [95% CI, 1.2, 2.8]-2.8 [95% CI, 1.8-4.2]) at baseline evaluation, the presence of late gadolinium enhancement on cardiac magnetic resonance imaging (HR, 2.3 [95% CI, 1.0-4.9]), and the presence of a pathogenic/likely pathogenic sarcomeric variant, particularly in thin filament genes (HR, 1.5 [95% CI, 1.0-2.1] and 2.5 [95% CI, 1.2-5.1], respectively).
Conclusions:
HCM-LVSD affects ≈8% of patients with HCM. Although the natural history of HCM-LVSD was variable, 75% of patients experienced adverse events, including 35% experiencing a death equivalent an estimated median time of 8.4 years after developing systolic dysfunction. In addition to clinical features, genetic substrate appears to play a role in both prognosis (multiple sarcomeric variants) and the risk for incident development of HCM-LVSD (thin filament variants).
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