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Utility of metabolic screening in neurological presentations of infancy
Djurdja Djordjevic1, Etsuko Tsuchiya1, Megan Fitzpatrick1
1Division of Neurology, Hospital for Sick Children, Toronto, ON, Canada.
Insights
Specialized metabolic screening has a low diagnostic yield for infants with hypotonia and/or developmental delay, especially in outpatient settings. Testing is most effective for acutely decompensated infants with multi-system involvement.
Area of Science:
- Biochemistry
- Pediatric Neurology
- Clinical Genetics
Background:
- Specialized metabolic screening is a standard initial test for hypotonia and/or developmental delay.
- Evidence supporting the routine use of these tests is limited.
- This study evaluates the diagnostic utility of metabolic screening in this patient population.
Purpose of the Study:
- To determine the proportion of patients diagnosed with the aid of metabolic screening.
- To assess the effectiveness of metabolic screening in different clinical settings (inpatient vs. outpatient).
- To inform diagnostic strategies for hypotonia and developmental delay.
Main Methods:
- Retrospective chart review of 164 infants under one year old who underwent metabolic screening.
- Analysis of diagnostic yield based on clinical presentation (e.g., acute decompensation, outpatient).
Main Results:
- Only 5.5% (9/164) of screened patients received a diagnosis supported by metabolic testing.
- In patients evaluated for hypotonia/developmental delay, 6.3% (5/79) were diagnosed via metabolic testing.
- Positive screens were exclusively observed in acutely decompensated patients; screening was ineffective for outpatients.
Conclusions:
- The diagnostic yield of specialized metabolic screening is very low for infants with hypotonia/developmental delay, except in cases of clinical decompensation or multi-system involvement.
- Screening is often ineffective for identifying outpatient cases of inborn errors of metabolism (IEM).
- Findings suggest a need to refine diagnostic approaches for hypotonia and global developmental delay.
Background:
The first-line use of specialized metabolic screening laboratories in the investigation of hypotonia and/or developmental delay remains a standard practice despite lack of supporting evidence. Our study aimed to address the utility of such testing by determining the proportion of patients whose diagnosis was directly supported by metabolic screening.
Methods:
We performed a retrospective chart review study of 164 patients under age one who had screening metabolic laboratory testing done within the time period of one calendar year.
Results:
Of patients screened, 9/164 (5.5%) had diagnoses supported by metabolic testing (two with nonketotic hyperglycinemia, three with ornithine transcarbamylase deficiency, one with propionic acidemia, one with a congenital disorder of glycosylation, one with D-bifunctional protein deficiency, and one with GM1 Gangliosidosis). Of patients specifically evaluated for hypotonia and/or developmental delay, 5/79 (6.3%) were diagnosed with the aid of metabolic testing. All patients with positive screens presented with acute decompensation. Outside of this subgroup of high-risk patients, no patients were diagnosed using metabolic testing. Screening laboratories were also ineffective in an outpatient setting, identifying only one of the seven outpatients who was ultimately diagnosed with an inborn error of metabolism.
Conclusions:
These findings demonstrate that the yield of specialized metabolic screening testing is extremely low in infants with hypotonia and/or developmental delay, approaching zero outside of the specific setting of clinical decompensation or multi-system involvement. Furthermore, many outpatient cases of IEM are not identified by screening studies. This information will help guide the diagnostic evaluation of hypotonia and/or global developmental delay.
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