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Impact of selected inborn errors of metabolism on prenatal and neonatal development
Sabine Illsinger1, Anibh M Das
1Clinic for Pediatric Kidney, Liver and Metabolic Diseases, Hannover Medical School, Germany. Illsinger.Sabine@mh-hannover.de
Insights
Inborn errors of metabolism significantly impact fetal and neonatal development, affecting growth and causing disorders. This review details their pathophysiology, diagnosis, and treatment in this critical period.
Area of Science:
- Biochemistry
- Developmental Biology
- Pediatrics
Background:
- Limited data exists on metabolic pathway maturation in fetal/neonatal periods.
- The intrauterine metabolic environment is crucial for fetal development and organ maturation.
- Inborn errors of metabolism can manifest prenatally and neonatally.
Purpose of the Study:
- To review the impact of inborn errors of metabolism on the fetal and neonatal periods.
- To discuss clinical manifestations and pathophysiology of selected metabolic disorders.
- To present diagnostic and therapeutic options for these conditions.
Main Methods:
- Literature review focusing on inborn errors of metabolism.
- Categorization of disorders into intoxication, storage, and energy-deficient types.
- Discussion of pathophysiology, prenatal/neonatal aspects, and management.
Main Results:
- Metabolic pathway adaptations (mitochondrial, carbohydrate, lysosomal, amino acid) occur early.
- Disorders can cause intrauterine growth issues, toxic environments, energy deficiency, and developmental problems.
- Specific examples include galactosemia, OTC deficiency, maternal PKU, Niemann Pick C, and energy-deficient disorders.
Conclusions:
- Inborn errors of metabolism pose significant risks during fetal and neonatal development.
- Understanding pathophysiology is key for early diagnosis and intervention.
- Tailored diagnostic and therapeutic strategies are essential for affected infants.
Abstract:
In general, data regarding maturational processes of different metabolic pathways in the very vulnerable fetal and neonatal period are rare. This review is to substantiate the impact of selected inborn errors of metabolism on this critical period of life and their clinical manifestation. Significant adaptation of mitochondrial/energy-, carbohydrate-, lysosomal-, and amino acid-metabolism occurs during early prenatal and neonatal development. In utero, metabolic environment has an impact on the development of the fetus as well as fetal organ maturation. Defects of distinct metabolic pathways could therefore already be of significant relevance in utero and for clinical manifestations in the early fetal and neonatal period. Disturbances of these pathways may influence intrauterine growth and health. Production of a toxic intrauterine milieu, energy-deficiency, modification of membrane function, or disturbance of the normal intrauterine expression of genes may be responsible for fetal compromise and developmental disorders. Three categories of metabolic disorders will be discussed: the "intoxication type" (classical galactosemia, ornithine transcarbamylase deficiency, and "maternal phenylketonuria"), the "storage type" (Morbus Niemann Pick type C), and the "energy deficient type" (including long-chain fatty acid oxidation disorders, pyruvate dehydrogenase deficiency, and respiratory chain defects). For these disorders, the pathophysiology of early manifestation, special aspects regarding the prenatal and neonatal period, and diagnostic as well as therapeutic options are presented.
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