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Published on: March 8, 2024
Liver transplantation for urea cycle disorders in pediatric patients: a single-center experience
Irene K Kim1, Anna-Kaisa Niemi, Casey Krueger
1Division of Abdominal Transplantation, Department of Surgery, Stanford University, Stanford, CA, USA.
Insights
Liver transplantation (LT) effectively prevents hyperammonemic crises in children with urea cycle disorders (UCDs). This treatment also stabilizes or improves neurocognitive outcomes, offering a promising solution for UCD management.
Area of Science:
- Pediatric Surgery
- Hepatology
- Metabolic Disorders
Background:
- Urea cycle disorders (UCDs) are genetic conditions causing hyperammonemia.
- Liver transplantation (LT) is a potential treatment for UCDs.
- Long-term outcomes of pediatric LT for UCDs require further investigation.
Purpose of the Study:
- To evaluate the safety and efficacy of LT in pediatric patients with UCDs.
- To assess the impact of LT on hyperammonemic crises and neurocognitive development.
- To determine long-term survival rates after LT for UCDs.
Main Methods:
- Retrospective chart review of pediatric UCD patients who underwent LT.
- Data collected from July 2001 to May 2012 at an academic institution.
- Analysis of patient demographics, graft types, survival rates, ammonia levels, and neurocognitive status.
Main Results:
- 23 pediatric UCD patients underwent LT (mean age 3.4 years).
- 100% patient survival and 96% allograft survival at 5 years.
- Complete eradication of hyperammonemia post-transplantation.
- Pre-existing developmental delay remained stable or improved; cognitive abilities were maintained in non-delayed patients.
Conclusions:
- LT is a safe and effective treatment for pediatric UCDs, eradicating hyperammonemia.
- LT can potentially improve neurocognitive outcomes in children with UCDs.
- Early LT (<1 year) may further enhance neurodevelopmental outcomes, warranting long-term follow-up.
Abstract:
LT has emerged as a surgical treatment for UCDs. We hypothesize that LT can be safely and broadly utilized in the pediatric population to effectively prevent hyperammonemic crises and potentially improve neurocognitive outcomes. To determine the long-term outcomes of LT for UCDs, charts of children with UCD who underwent LT were retrospectively reviewed at an academic institution between July 2001 and May 2012. A total of 23 patients with UCD underwent LT at a mean age of 3.4 yr. Fifteen (65%) patients received a whole-liver graft, seven patients (30%) received a reduced-size graft, and one patient received a living donor graft. Mean five-yr patient survival was 100%, and allograft survival was 96%. Mean peak blood ammonia (NH(3) ) at presentation was 772 μmol/L (median 500, range 178-2969, normal <30-50). After transplantation, there were no episodes of hyperammonemia. Eleven patients were diagnosed with some degree of developmental delay before transplantation, which remained stable or improved after transplantation. Patients without developmental delay before transplantation maintained their cognitive abilities at long-term follow-up. LT was associated with the eradication of hyperammonemia, removal of dietary restrictions, and potentially improved neurocognitive development. Long-term follow-up is underway to evaluate whether LT at an early age (<1 yr) will attain improved neurodevelopmental outcomes.
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