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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.
Objectives:
To estimate the burden of metabolic disorders detectable by tandem mass spectrometry in Egypt, through a pilot expanded newborn screening programme at Cairo University Children's Hospital in 2008, and examining the results of 3,900 clinically at-risk children, investigated at Cairo University Children's Hospital for the same disorders over the past 7 years using the same technology.
Methods:
Dried blood spots of 25,276 healthy newborns from three governorates in Upper, Middle, and Lower Egypt were screened, to give a representative sample of the Egyptian newborn population. Based on the pilot study outcomes and the results of clinically suspected children, we estimated the total birth prevalence of tandem mass spectrometry detectable metabolic disorders, and the relative frequency of several individual disorders.
Results:
Among the healthy newborns, 13 metabolic disorder cases (five phenylketonuria [1:5,000], two methylmalonic acidemia, and isovaleric acidemia [1:12,500], one each of maple syrup urine disease, propionic acidemia, β-ketothiolase deficiency, and primary carnitine deficiency [1:25,000]) were confirmed, giving a total birth prevalence of 1:1944 live births. Among the clinically suspected children, 235 cases were diagnosed, representing a much wider disease spectrum.
Conclusions:
Egypt has one of the highest reported birth prevalence rates for metabolic disorders detectable by tandem mass spectrometry. Early diagnosis and management are crucial for the survival and well-being of affected children. A nationwide NBS programme by tandem mass spectrometry is recommended.
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