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Diagnosis and management of glutaric aciduria type I--revised recommendations
Stefan Kölker1, Ernst Christensen, James V Leonard
1Department of General Pediatrics, Division of Inborn Metabolic Diseases, University Children's Hospital, Im Neuenheimer Feld 430, 69120 Heidelberg, Germany. Stefan.Koelker@med.uni-heidelberg.de
Insights
Glutaric aciduria type I is a rare metabolic disorder. Early diagnosis and combined metabolic treatment, including a low lysine diet, can prevent brain damage in most neonatally diagnosed patients.
Area of Science:
- Biochemistry
- Genetics
- Neurology
Background:
- Glutaric aciduria type I (GA-I) is a rare organic aciduria.
- Untreated patients develop dystonia and striatal injury, leading to high morbidity and mortality.
- The condition results from a deficiency in glutaryl-CoA dehydrogenase, affecting amino acid metabolism.
Purpose of the Study:
- To re-evaluate diagnostic and therapeutic recommendations for GA-I.
- To incorporate new research findings into clinical guidelines.
- To improve management strategies for patients with GA-I.
Main Methods:
- Review of existing diagnostic criteria and treatment protocols for GA-I.
- Analysis of recent research on the pathophysiology and management of GA-I.
- Synthesis of findings to update clinical guidelines.
Main Results:
- GA-I is caused by glutaryl-CoA dehydrogenase deficiency, leading to elevated organic acids and acylcarnitines.
- Newborn screening can identify GA-I, enabling early intervention.
- Combined metabolic treatment (low lysine diet, carnitine, emergency protocols) prevents striatal injury in neonatally diagnosed patients.
Conclusions:
- Early diagnosis through newborn screening is crucial for preventing neurological damage in GA-I.
- Prompt initiation of combined metabolic treatment is effective in the majority of cases.
- Treatment initiated after symptom onset is generally ineffective; managing secondary dystonia remains challenging.
Abstract:
Glutaric aciduria type I (synonym, glutaric acidemia type I) is a rare organic aciduria. Untreated patients characteristically develop dystonia during infancy resulting in a high morbidity and mortality. The neuropathological correlate is striatal injury which results from encephalopathic crises precipitated by infectious diseases, immunizations and surgery during a finite period of brain development, or develops insidiously without clinically apparent crises. Glutaric aciduria type I is caused by inherited deficiency of glutaryl-CoA dehydrogenase which is involved in the catabolic pathways of L-lysine, L-hydroxylysine and L-tryptophan. This defect gives rise to elevated glutaric acid, 3-hydroxyglutaric acid, glutaconic acid, and glutarylcarnitine which can be detected by gas chromatography/mass spectrometry (organic acids) or tandem mass spectrometry (acylcarnitines). Glutaric aciduria type I is included in the panel of diseases that are identified by expanded newborn screening in some countries. It has been shown that in the majority of neonatally diagnosed patients striatal injury can be prevented by combined metabolic treatment. Metabolic treatment that includes a low lysine diet, carnitine supplementation and intensified emergency treatment during acute episodes of intercurrent illness should be introduced and monitored by an experienced interdisciplinary team. However, initiation of treatment after the onset of symptoms is generally not effective in preventing permanent damage. Secondary dystonia is often difficult to treat, and the efficacy of available drugs cannot be predicted precisely in individual patients. The major aim of this revision is to re-evaluate the previous diagnostic and therapeutic recommendations for patients with this disease and incorporate new research findings into the guideline.
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