Inborn Errors of Metabolism (Metabolic Disorders)

Врожденные ошибки метаболизма (метаболические нарушения)
Robert D. Steiner, Gregory M. Rice
2016-01-01

inborn errors of metabolismmedium-chain acyl CoA dehydrogenase deficiencynewborn screeningphenylketonuriaplasma amino acids
By their very nature, rare inborn errors of metabolism challenge the generation and application of evidence-based medicine. • On the basis of limited research evidence as well as consensus, newborn screening for select metabolic disorders, including phenylketonuria, medium-chain acyl CoA dehydrogenase deficiency, and glutaric acidemia type I, may improve long-term outcomes for affected children. • On the basis of primarily consensus, due to lack of relevant clinical studies, inborn errors due to defects in the metabolism of energy sources (protein, fatty acids, and carbohydrates) may present in infancy with overwhelming metabolic decompensation, and initial laboratory evaluations may reveal hyperammonemia, nonketotic hypoglycemia, or a metabolic acidosis with an elevated anion gap, depending on the disorder. • On the basis of primarily consensus, due to lack of relevant clinical studies, specific laboratory testing for inborn errors of metabolism should include plasma amino acids, urine organic acids, plasma carnitine, and plasma acylcarnitine profile. • On the basis of primarily consensus, due to lack of relevant clinical studies, disorders of cellular organelles, such as lysosomal and peroxisomal disorders, may present with progressive organomegaly, developmental regression, dysmorphic facial characteristics. or sensory loss.
1
Disorders of cellular organelles (lysosomal and peroxisomal) may present with progressive organomegaly, developmental regression, dysmorphic facial features, or sensory loss.
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Inborn errors affecting energy metabolism (protein, fatty acids, carbohydrates) can present in infancy with overwhelming metabolic decompensation.
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Initial laboratory findings for energy metabolism disorders may include hyperammonemia, nonketotic hypoglycemia, or metabolic acidosis with elevated anion gap, depending on the disorder.
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Newborn screening for select metabolic disorders (phenylketonuria, MCAD deficiency, glutaric acidemia type I) may improve long-term outcomes for affected children.
5
Recommended specific laboratory tests for suspected inborn errors of metabolism include plasma amino acids, urine organic acids, plasma carnitine, and plasma acylcarnitine profile.

Inborn errors of metabolism (metabolic disorders)

Clinical presentation, screening, diagnostic laboratory testing, and outcome implications of select inborn metabolic disorders (including newborn screening utility, presenting metabolic decompensation patterns, and recommended metabolic laboratory panels)

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2016-01-01
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Robert D. Steiner
Gregory M. Rice
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