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Heart Transplantation in Children with Mitochondrial Disease
Jeffrey G Weiner1, Andrea N Lambert1, Cary Thurm2
1Department of Pediatric Cardiology, Monroe Carell Jr. Children's Hospital, Nashville, TN.
Insights
Children with mitochondrial disease can undergo heart transplantation with similar survival rates. However, they face increased risks for stroke, prolonged ventilation, and longer intensive care unit stays post-transplant.
Area of Science:
- Cardiology
- Pediatric Medicine
- Genetics
Background:
- Mitochondrial disease is a group of inherited metabolic disorders.
- Heart transplantation is a life-saving procedure for end-stage heart failure.
- Outcomes for pediatric heart transplant recipients with mitochondrial disease are not well-established.
Purpose of the Study:
- To compare post-heart transplantation outcomes and comorbidities in children with and without mitochondrial disease.
- To evaluate the impact of mitochondrial disease on survival and morbidity after pediatric heart transplantation.
Main Methods:
- Utilized linked data from the Pediatric Health Information System and Scientific Registry of Transplant Recipients (2002-2016).
- Included pediatric heart transplant recipients diagnosed with cardiomyopathy.
- Compared survival and morbidities between patients with and without mitochondrial disease.
Main Results:
- Survival after heart transplantation was similar between groups (median follow-up: 4 years).
- Patients with mitochondrial disease had higher rates of stroke, prolonged mechanical ventilation, and longer ICU stays.
- Hospital readmission rates were similar, but readmitted patients with mitochondrial disease had longer stays.
Conclusions:
- Heart transplantation is a viable option for children with mitochondrial disease, offering comparable survival.
- Mitochondrial disease increases the risk of specific post-transplant complications.
- Mitochondrial disease should not be an absolute contraindication for heart transplantation in selected cases.
Objectives:
To compare the outcomes and comorbidities of children with mitochondrial disease undergoing heart transplantation with children without mitochondrial disease.
Study Design:
Using a unique linkage between the Pediatric Health Information System and Scientific Registry of Transplant Recipients databases, pediatric heart transplantation recipients from 2002 to 2016 with a diagnosis of cardiomyopathy were included. Post heart transplantation survival and morbidities were compared between patients with and without mitochondrial disease.
Results:
A total of 1330 patients were included, including 47 (3.5%) with mitochondrial disease. Survival after heart transplantation was similar between patients with and without mitochondrial disease over a median follow-up of 4 years. Patients with mitochondrial disease were more likely to have a stroke after heart transplantation (11% vs 3%; P = .009), require a longer duration of mechanical ventilation after heart transplantation (3 days vs 1 day; P < .001), and have a longer intensive care unit stay after heart transplantation (10 vs 6 days; P = .007). The absence of a hospital readmission within the first post-transplant year was similar among patients with and without mitochondrial disease (61.7% vs 51%; P = .14). However, patients with mitochondrial disease who were readmitted demonstrated a longer length of stay compared with those without (median, 14 days vs 8 days; P = .03).
Conclusions:
Patients with mitochondrial disease can successfully undergo heart transplantation with survival comparable with patients without mitochondrial disease. Patients with mitochondrial disease have greater risk for post-heart transplantation morbidities including stroke, prolonged mechanical ventilation, and longer intensive care unit and readmission length of stay. These results suggest that the presence of mitochondrial disease should not be an absolute contraindication to heart transplantation in the appropriate clinical setting.
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