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Sex differences in disease progression and arrhythmic risk in patients with arrhythmogenic cardiomyopathy
Christine Rootwelt-Norberg1,2, Øyvind H Lie1,2, Monica Chivulescu1,2
1Institute of Clinical Medicine, Faculty of Medicine, University of Oslo, PO Box 4950 Nydalen, 0424 Oslo, Norway.
Insights
Male arrhythmogenic cardiomyopathy patients show higher ventricular arrhythmia risk, but this is linked to exercise levels, not sex. Disease progression is similar in both males and females.
Area of Science:
- Cardiology
- Genetics
- Exercise Physiology
Background:
- Arrhythmogenic cardiomyopathy (AC) is a heritable heart muscle disease.
- Understanding sex-specific differences in AC is crucial for risk stratification.
- The role of exercise in AC progression and outcomes requires further investigation.
Purpose of the Study:
- To evaluate sex-specific phenotypes in arrhythmogenic cardiomyopathy.
- To assess the relationship between exercise dose and disease progression in AC.
- To determine if sex influences disease progression in AC patients.
Main Methods:
- Longitudinal cohort study of 190 AC patients.
- Echocardiography performed at baseline and during follow-up.
- Exercise dose quantified using metabolic equivalents of task (MET)-h/week.
- Ventricular arrhythmia (VA) events recorded.
- Statistical analysis adjusted for exercise dose and age.
Main Results:
- Male AC patients had higher prevalence of ventricular arrhythmia (VA) and were more often probands compared to females.
- Higher exercise doses were observed in males versus females.
- The association between male sex and VA was attenuated after adjusting for exercise dose.
- No significant sex differences were found in the deterioration of ventricular dimensions and functions over time.
Conclusions:
- While males with AC have a higher prevalence of VA, this is significantly influenced by exercise dose.
- Disease progression in terms of ventricular function and dimensions is similar between male and female AC patients.
- Exercise levels, rather than sex alone, appear to be a key factor in VA risk in AC.
Aims:
We aimed to assess sex-specific phenotypes and disease progression, and their relation to exercise, in arrhythmogenic cardiomyopathy (AC) patients.
Methods And Results:
In this longitudinal cohort study, we included consecutive patients with AC from a referral centre. We performed echocardiography at baseline and repeatedly during follow-up. Patients' exercise dose at inclusion was expressed as metabolic equivalents of task (MET)-h/week. Ventricular arrhythmia (VA) was defined as aborted cardiac arrest, sustained ventricular tachycardia, or appropriate therapy by implantable cardioverter-defibrillator. We included 190 AC patients (45% female, 51% probands, age 41 ± 17 years). Ventricular arrhythmia had occurred at inclusion or occurred during follow-up in 85 patients (33% of females vs. 55% of males, P = 0.002). Exercise doses were higher in males compared with females [25 (interquartile range, IQR 14-51) vs. 12 (IQR 7-22) MET-h/week, P < 0.001]. Male sex was a marker of proband status [odds ratio (OR) 2.6, 95% confidence interval (CI) 1.4-5.0, P = 0.003] and a marker of VA (OR 2.6, 95% CI 1.4-5.0, P = 0.003), but not when adjusted for exercise dose and age (adjusted OR 1.8, 95% CI 0.9-3.6, P = 0.12 and 1.5, 95% CI 0.7-3.1, P = 0.30, by 5 MET-h/week increments). In all, 167 (88%) patients had ≥2 echocardiographic examinations during 6.9 (IQR 4.7-9.8) years of follow-up. We observed no sex differences in deterioration of right or left ventricular dimensions and functions.
Conclusion:
Male AC patients were more often probands and had higher prevalence of VA than female patients, but not when adjusting for exercise dose. Importantly, disease progression was similar between male and female patients.
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