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Maternal phenylketonuria syndrome: studies in mice suggest a potential approach to a continuing problem
William L Zeile1, Helen C McCune2, Donald G Musson3
1Department of Biochemistry and Molecular Biology, University of Florida College of Medicine, University of Florida Academic Health Center, Gainesville, Florida.
Insights
Phenylketonuria (PKU) in pregnant women poses risks to fetal development. Enzyme therapy using phenylalanine ammonia lyase (PAL) shows promise in mouse models, potentially offering a new treatment for maternal PKU syndrome.
Area of Science:
- Genetics
- Metabolic Disorders
- Biochemistry
Background:
- Phenylketonuria (PKU) is a common genetic disorder.
- Dietary management of PKU is challenging, especially during pregnancy.
- Maternal PKU syndrome can cause severe fetal complications due to high phenylalanine levels.
Purpose of the Study:
- To evaluate the effectiveness of phenylalanine ammonia lyase (PAL) enzyme therapy.
- To assess the potential of PAL therapy for treating maternal PKU syndrome in humans.
Main Methods:
- Reviewed clinical data on maternal PKU syndrome incidence.
- Treated pregnant PKU mice with PAL enzyme therapy.
- Assessed pregnancy outcomes and offspring survival in treated and untreated mice.
Main Results:
- Dietary interventions have shown limited improvement in preventing maternal PKU syndrome over 40 years.
- PAL treatment in pregnant PKU mice led to offspring survival to adulthood.
- Untreated PKU mice or those on a PKU diet showed complete lethality or limited offspring survival.
Conclusions:
- PAL enzyme therapy significantly reduced the severity of maternal PKU syndrome in a mouse model.
- PAL therapy represents a potential therapeutic strategy for human PKU, particularly in pregnant women.
Abstract:
BackgroundUntreated phenylketonuria (PKU), one of the most common human genetic disorders, usually results in mental retardation. Although a protein-restricted artificial diet can prevent retardation, dietary compliance in adults is often poor. In pregnant PKU women, noncompliance can result in maternal PKU syndrome, where high phenylalanine (Phe) levels cause severe fetal complications. Enzyme substitution therapy using Phe ammonia lyase (PAL) corrects PKU in BTBR Phe hydroxylase (Pahenu2) mutant mice, suggesting a potential for maternal PKU syndrome treatment in humans.MethodsWe reviewed clinical data to assess maternal PKU syndrome incidence in pregnant PKU women. We treated female PKU mice (on normal diet) with PAL, stabilizing Phe at physiological levels, and mated them to assess pregnancy outcomes.ResultsPatient records show that, unfortunately, the efficacy of diet to prevent maternal PKU syndrome has not significantly improved since the problem was first noted 40 years ago. PAL treatment of pregnant PKU mice shows that offspring of PAL-treated dams survive to adulthood, in contrast to the complete lethality seen in untreated mice, or limited survival seen in mice on a PKU diet.ConclusionPAL treatment reduced maternal PKU syndrome severity in mice and may have potential for human PKU therapy.
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