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Genetic predictors and remodeling of dilated cardiomyopathy in muscular dystrophy
John L Jefferies1, Benjamin W Eidem, John W Belmont
1Department of Cardiology, Texas Heart Institute, St Luke's Episcopal Hospital, Houston, Texas, USA.
Insights
Early diagnosis and treatment of dilated cardiomyopathy (DCM) in Duchenne muscular dystrophy (DMD) and Becker muscular dystrophy (BMD) patients can lead to ventricular remodeling. Specific dystrophin gene mutations correlate with DCM development, while others may offer protection.
Area of Science:
- Cardiovascular Genetics
- Neuromuscular Disorders
- Genetics
Background:
- Duchenne muscular dystrophy (DMD) and Becker muscular dystrophy (BMD) are genetic disorders caused by dystrophin gene mutations.
- These conditions are frequently linked to dilated cardiomyopathy (DCM) and premature mortality.
- Early detection and management of DCM in DMD/BMD patients are hypothesized to improve cardiac outcomes.
Purpose of the Study:
- To investigate the impact of early diagnosis and treatment on ventricular remodeling in DMD/BMD patients with DCM.
- To identify specific dystrophin gene mutations that predict cardiac involvement or offer protection against DCM.
Main Methods:
- Echocardiography and DNA analysis were performed on 69 boys with DMD (n=62) and BMD (n=7).
- Patients received standard therapy (ACE inhibitors or beta-blockers) after DCM diagnosis, with quarterly follow-ups.
- Genetic analysis correlated specific dystrophin gene mutations with DCM development and progression.
Main Results:
- DCM was diagnosed in 31 subjects (44% DMD, 57% BMD) with a mean age of onset of 15.4 years.
- Following treatment, 93% of patients (27/29) showed improvement or normalization of left ventricular size and function.
- Dystrophin gene mutations in exon 12 and 14-17 were associated with DCM, while exon 51-52 mutations showed possible protection.
Conclusions:
- Early intervention for DCM in DMD/BMD patients may promote ventricular remodeling and improve cardiac function.
- Specific dystrophin gene mutations are predictive of cardiac involvement, with some mutations potentially offering protection.
- Further research into early intervention strategies for left ventricular geometry and function in muscular dystrophy is warranted.
Background:
Dystrophin gene mutations cause 2 common muscular dystrophies, Duchenne muscular dystrophy (DMD) and Becker muscular dystrophy (BMD). Both are frequently associated with dilated cardiomyopathy (DCM) and premature death. We hypothesized that early diagnosis and treatment of DCM in DMD/BMD patients would lead to ventricular remodeling and that specific dystrophin gene mutations would predict cardiac involvement.
Methods And Results:
Sixty-nine boys with DMD (n=62) and BMD (n=7) (mean age, 12.9 and 13.7 years, respectively) were referred to our Cardiovascular Genetics Clinic for evaluation, including echocardiography and DNA analysis. Follow-up evaluations were scheduled yearly until the first abnormal echocardiogram indicative of DCM and quarterly thereafter. After the first abnormal echocardiogram, angiotensin-converting enzyme inhibitor or beta-blocker therapy was started. beta-Blockers were added if echocardiography showed no ventricular remodeling in angiotensin-converting enzyme inhibitor-treated patients after 3 months. DCM was diagnosed in 31 subjects (DMD, 27/62, 44%; BMD, 4/7, 57%) (mean age at onset, 15.4+/-2.8 years; range, 10.4 to 21.2 years). All 31 subjects were begun on pharmacological therapy after diagnosis. On follow-up (n=29), 2 subjects (both DMD) showed stable DCM, 8 subjects (all DMD) showed improvement, and 19 subjects (16 DMD; 3 BMD) showed normalization of left ventricular size and function (total improvement, 27/29 [93%]). DNA analysis in 47 cases (68%) revealed a significant association between DCM and exon 12 and 14 to 17 mutations, possible protection against DCM by exon 51 to 52 mutations, and a trend toward significant association between onset of DCM and exon 31 to 42 mutations. Statistical significance was based on nominal probability values.
Conclusions:
Early diagnosis and treatment of DCM may lead to ventricular remodeling in DMD/BMD patients. Specific dystrophin gene mutations appear to be predictive of cardiac involvement, while other mutations may protect against or inhibit development of DCM. Further studies evaluating the impact of early intervention strategies on left ventricular geometry and function in muscular dystrophy patients seem warranted.
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