Inborn errors of metabolism detectable by tandem mass spectrometry in Egypt: The first newborn screening pilot study

Fayza A Hassan1, Fatma El-Mougy1, Sahar A Sharaf1

  • 1Clinical and Chemical Pathology Department, Faculty of Medicine, Cairo University, Cairo, Egypt Inherited Metabolic Disease Unit, Center of Social and Preventive Medicine, Cairo University, Cairo, Egypt.

Insights

Egypt has a high prevalence of metabolic disorders detectable by tandem mass spectrometry. A nationwide newborn screening program is recommended for early diagnosis and improved child survival.

Area of Science:

  • Biochemistry
  • Genetics
  • Pediatrics

Background:

  • Metabolic disorders pose a significant health challenge globally.
  • Tandem mass spectrometry (TMS) enables the detection of a wide range of inborn errors of metabolism.
  • Egypt lacks a comprehensive newborn screening (NBS) program for these disorders.

Purpose of the Study:

  • To estimate the burden of TMS-detectable metabolic disorders in Egypt.
  • To determine the birth prevalence of these disorders in a representative newborn population.
  • To analyze the spectrum of metabolic disorders in clinically suspected children.

Main Methods:

  • Screening of 25,276 healthy newborns from diverse Egyptian governorates using dried blood spots.
  • Analysis of 3,900 clinically at-risk children investigated over seven years.
  • Utilizing tandem mass spectrometry for all analyses.

Main Results:

  • A total birth prevalence of 1:1944 live births for TMS-detectable metabolic disorders was identified.
  • Phenylketonuria (PKU) was found at a rate of 1:5,000.
  • Other identified disorders included methylmalonic acidemia, isovaleric acidemia, maple syrup urine disease, propionic acidemia, beta-ketothiolase deficiency, and primary carnitine deficiency.

Conclusions:

  • Egypt exhibits one of the highest reported birth prevalence rates for TMS-detectable metabolic disorders.
  • Early diagnosis and management are critical for affected children's outcomes.
  • Implementation of a nationwide NBS program utilizing tandem mass spectrometry is strongly recommended.
Abstract

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