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Published on: August 8, 2022
Relationship Between Genotype Status and Clinical Outcome in Hypertrophic Cardiomyopathy
Jiri Bonaventura1,2, Ethan J Rowin2, Raymond H Chan3
1Department of Cardiology, 2nd Faculty of Medicine Charles University and Motol University Hospital Prague Czech Republic.
Insights
Genetic testing in hypertrophic cardiomyopathy (HCM) does not predict patient outcomes. Genotype status (G+ or G-) did not correlate with mortality or adverse events in this large HCM cohort.
Area of Science:
- Cardiology
- Genetics
- Clinical Medicine
Background:
- Hypertrophic cardiomyopathy (HCM) has a complex genetic basis.
- The link between genotype and clinical outcomes in HCM remains unclear.
Purpose of the Study:
- To investigate the relationship between genetic status and the natural history of hypertrophic cardiomyopathy.
- To determine if genotype positivity influences clinical outcomes in HCM patients.
Main Methods:
- Assessed a large international cohort of 1468 HCM patients.
- Performed genetic testing to classify patients as genotype positive (G+) or genotype negative (G-).
- Followed patients for a median of 7.8 years, examining cumulative event incidence for mortality and adverse events.
Main Results:
- Genotype status (G+ vs. G-) did not significantly differ in all-cause or HCM-related mortality after adjusting for age.
- Adverse event rates, including heart failure progression and sudden death, were not independently associated with genotype status.
- Age was identified as the sole independent predictor for mortality, heart failure progression, and sudden death events in HCM patients.
Conclusions:
- In a large HCM cohort, genotype status (G+ or G-) is not a predictor of clinical course.
- Genotype positivity should not guide clinical management or outcome prediction in hypertrophic cardiomyopathy.
- Age is the primary determinant of clinical outcomes in patients with HCM.
Background:
The genetic basis of hypertrophic cardiomyopathy (HCM) is complex, and the relationship between genotype status and clinical outcome is incompletely resolved.
Methods And Results:
We assessed a large international HCM cohort to define in contemporary terms natural history and clinical consequences of genotype. Consecutive patients (n=1468) with established HCM diagnosis underwent genetic testing. Patients with pathogenic (or likely pathogenic) variants were considered genotype positive (G+; n=312; 21%); those without definite disease-causing mutations (n=651; 44%) or variants of uncertain significance (n=505; 35%) were considered genotype negative (G-). Patients were followed up for a median of 7.8 years (interquartile range, 3.5-13.4 years); HCM end points were examined by cumulative event incidence. Over follow-up, 135 (9%) patients died, 33 from a variety of HCM-related causes. After adjusting for age, all-cause and HCM-related mortality did not differ between G- versus G+ patients (hazard ratio [HR], 0.78 [95% CI, 0.46-1.31]; P=0.37; HR, 0.93 [95% CI, 0.38-2.30]; P=0.87, respectively). Adverse event rates, including heart failure progression to class III/IV, heart transplant, or heart failure death, did not differ (G- versus G+) when adjusted for age (HR, 1.20 [95% CI, 0.63-2.26]; P=0.58), nor was genotype independently associated with sudden death event risk (HR, 1.39 [95% CI, 0.88-2.21]; P=0.16). In multivariable analysis, age was the only independent predictor of all-cause and HCM-related mortality, heart failure progression, and sudden death events.
Conclusions:
In this large consecutive cohort of patients with HCM, genotype (G+ or G-) was not a predictor of clinical course, including all-cause and HCM-related mortality and risk for heart failure progression or sudden death. G+ status should not be used to dictate clinical management or predict outcome in HCM.
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