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Cardiomyopathy in children with mitochondrial disease: Prognosis and genetic background
Atsuko Imai-Okazaki1, Yoshihito Kishita2, Masakazu Kohda2
1Intractable Disease Research Center, Graduate School of Medicine, Juntendo University, Tokyo, Japan; Department of Genome Informatics, Osaka University Graduate School of Medicine, Osaka, Japan; Division of Genomic Medicine Research, Medical Genomics Center, National Center for Global Health and Medicine, Tokyo, Japan.
Insights
Mitochondrial cardiomyopathy is common in children with mitochondrial disease and significantly lowers survival rates. Genetic analysis aids in understanding prognosis for these patients.
Area of Science:
- Pediatric Cardiology
- Mitochondrial Genetics
- Genomic Medicine
Background:
- Cardiomyopathy is a known poor prognostic indicator in pediatric mitochondrial disease.
- The specific genetic factors influencing cardiomyopathy prognosis in this population require further investigation.
Purpose of the Study:
- To investigate the prevalence of cardiomyopathy in children with mitochondrial disease.
- To determine the association between cardiomyopathy and overall survival in this cohort.
- To explore the genetic underpinnings of cardiomyopathy in pediatric mitochondrial disease.
Main Methods:
- Retrospective analysis of 137 children diagnosed with mitochondrial disease between 2004 and 2018.
- Assessment of cardiomyopathy prevalence and survival rates.
- Genetic analysis and heteroplasmy assessment in cardiac tissue for a subset of patients.
Main Results:
- Mitochondrial cardiomyopathy was identified in 21% (29/137) of children.
- Patients with cardiomyopathy exhibited significantly lower overall survival rates (10-year estimate: 18% vs. 67%).
- Specific genetic mutations (e.g., COQ4, COX10, BOLA3, QRSL1, MT-ATP6/8, MT-TL1, TAZ, MT-ND5, ACAD9, KARS, MT-TV) and high cardiac heteroplasmy rates were associated with mortality.
Conclusions:
- Cardiomyopathy is a frequent and life-threatening complication in pediatric mitochondrial disease.
- Genetic analysis combined with detailed phenotyping is crucial for predicting prognosis in affected children.
Background:
Cardiomyopathy is a reported indicator of poor prognosis in children with mitochondrial disease. However, the association between prognosis and the genetic background of cardiomyopathy in children with mitochondrial disease has yet to be fully elucidated.
Methods And Results:
Of 137 children with mitochondrial disease whose genetic diagnosis was made between 2004 and 2018, 29 had mitochondrial cardiomyopathy (21%). After a median follow-up of 35 months, the overall survival rate was significantly lower in patients with cardiomyopathy than in those without (p < 0.001). Ten-year Kaplan-Meier estimates of overall survival were 18 and 67%, respectively. Among the 21 cardiomyopathy patients who died, two died within one month of birth (COQ4 in one patient, and COX10 in one patient), ten died within one year (BOLA3 in three patients, QRSL1 in two patients, large chromosomal deletions in two patients, MT-ATP6/8 in one patient, MT-TL1 in one patient, and TAZ gene in one patient), and nine died after one year (MT-ND5 in three patients, MT-TL1 in three patients, ACAD9 in one patient, KARS in one patient, and MT-TV in one patient). In the three patients with mitochondrial DNA mutations whose cardiac tissues were available, high heteroplasmy rates in the cardiac tissue were observed for m.8528T>C (90%, died at 2 months of age) and m.3243A>G (90 and 80%, died at 12 and 13 years of age, respectively).
Conclusions:
In children with mitochondrial disease, cardiomyopathy was common (21%) and was associated with increased mortality. Genetic analysis coupled with detailed phenotyping could be useful for prognosis.
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