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Published on: June 25, 2010
Outcomes after newborn screening for propionic and methylmalonic acidemia and homocystinurias
Anna T Reischl-Hajiabadi1, Elena Schnabel1, Florian Gleich1
1Heidelberg University, Medical Faculty of Heidelberg, Center for Child and Adolescent Medicine, Division of Child Neurology and Metabolic Medicine, Heidelberg, Germany.
Insights
Newborn screening improves outcomes for MTHFR and CBS deficiencies, and some MMA/cblC cases. However, benefits are less clear for propionic acidemia and non-responsive MMA due to severe complications.
Area of Science:
- Biochemistry
- Genetics
- Pediatrics
Background:
- Newborn screening (NBS) in Germany currently detects 13 inherited metabolic diseases (IMDs).
- A pilot study expanded NBS to include propionic acidemia (PA), methylmalonic acidemia (MMA), remethylation disorders (e.g., cobalamin [cbl] C, methylenetetrahydrofolate reductase [MTHFR] deficiency), cystathionine β-synthase (CBS) deficiency, and neonatal cbl deficiency.
Purpose of the Study:
- To evaluate the long-term health benefits of expanded NBS for various IMDs.
- To assess the effectiveness of a multiple-tier algorithm in identifying and managing these conditions.
Main Methods:
- A multicenter observational study followed 27 screened IMD patients and 42 with neonatal cbl deficiency for a median of 3.6 years.
- Data collected included metabolic decompensations, mortality, and long-term neurological symptoms.
Main Results:
- 17 screened IMD patients (63%) experienced metabolic decompensation, with 3 PA patients dying despite early detection and treatment.
- Fifteen patients (79%) with PA or MMA and all with cblC deficiency developed permanent neurological symptoms.
- Individuals with MTHFR, CBS, and neonatal cbl deficiency showed favorable clinical outcomes.
Conclusions:
- Expanded NBS and specialized care significantly benefit patients with MTHFR, CBS, neonatal cbl deficiency, and partially responsive MMA/cblC deficiency.
- The advantage of NBS is less evident for PA and non-responsive MMA due to high rates of decompensation, mortality, and long-term complications.
Abstract:
The current German newborn screening (NBS) panel includes 13 inherited metabolic diseases (IMDs). In addition, a NBS pilot study in Southwest Germany identifies individuals with propionic acidemia (PA), methylmalonic acidemia (MMA), combined and isolated remethylation disorders (e.g., cobalamin [cbl] C and methylenetetrahydrofolate reductase [MTHFR] deficiency), cystathionine β-synthase (CBS) deficiency, and neonatal cbl deficiency through one multiple-tier algorithm. The long-term health benefits of screened individuals are evaluated in a multicenter observational study. Twenty seven screened individuals with IMDs (PA [N = 13], MMA [N = 6], cblC deficiency [N = 5], MTHFR deficiency [N = 2] and CBS deficiency [N = 1]), and 42 with neonatal cbl deficiency were followed for a median of 3.6 years. Seventeen screened IMD patients (63%) experienced at least one metabolic decompensation, 14 of them neonatally and six even before the NBS report (PA, cbl-nonresponsive MMA). Three PA patients died despite NBS and immediate treatment. Fifteen individuals (79%) with PA or MMA and all with cblC deficiency developed permanent, mostly neurological symptoms, while individuals with MTHFR, CBS, and neonatal cbl deficiency had a favorable clinical outcome. Utilizing a combined multiple-tier algorithm, we demonstrate that NBS and specialized metabolic care result in substantial benefits for individuals with MTHFR deficiency, CBS deficiency, neonatal cbl deficiency, and to some extent, cbl-responsive MMA and cblC deficiency. However, its advantage is less evident for individuals with PA and cbl-nonresponsive MMA. SYNOPSIS: Early detection through newborn screening and subsequent specialized metabolic care improve clinical outcomes and survival in individuals with MTHFR deficiency and cystathionine-β-synthase deficiency, and to some extent in cobalamin-responsive methylmalonic acidemia (MMA) and cblC deficiency while the benefit for individuals with propionic acidemia and cobalamin-nonresponsive MMA is less evident due to the high (neonatal) decompensation rate, mortality, and long-term complications.
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