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In Vitro Enzyme Measurement to Test Pharmacological Chaperone Responsiveness in Fabry and Pompe Disease
Published on: December 20, 2017
Long-term follow-up results in enzyme replacement therapy for Pompe disease: a case report
Monica Del Rizzo1, Marina Fanin, Alessia Cerutti
1Division of Metabolic Diseases, Department of Paediatrics, University Hospital Padua, Via Giustiniani 3, 35128 Padua, Italy.
Insights
Enzyme replacement therapy (ERT) significantly improves cardiac function in infantile Pompe disease (PD). Long-term follow-up of a neonate shows sustained cardiac improvement and minimal muscle involvement with ERT.
Area of Science:
- Biochemistry
- Genetics
- Pediatrics
Background:
- Pompe disease (PD) is a rare metabolic myopathy caused by acid-alpha glucosidase (GAA) deficiency, leading to glycogen accumulation.
- Infantile-onset PD presents with severe hypotonia and cardiomyopathy, often resulting in cardiorespiratory failure within the first year of life.
Observation:
- This report details the long-term follow-up of a neonate diagnosed with PD on the third day of life, exhibiting severe bradycardia and cardiomyopathy.
- The patient received enzyme replacement therapy (ERT) with alglucosidase alfa (rhGAA).
- Genetic analysis revealed a homozygous missense mutation c.1933 G> A p.Asp645Asn in the GAA gene.
Findings:
- ERT led to a significant decrease in Left Ventricular Mass Index (LVMI) from 171 g/m(2) (Z-score = 4.3) to normal values by 3 months.
- Serum muscle enzyme levels (AST, ALT, CPK) normalized over time.
- A muscle biopsy at 18 months post-therapy indicated only minimal muscle involvement, suggesting successful treatment.
Implications:
- This case represents the longest ERT follow-up in a symptomatic neonatal Pompe disease patient.
- Early diagnosis and sustained ERT can lead to long-term positive cardiac outcomes in neonatal PD.
- Further research with larger cohorts is needed to fully understand the long-term impact of ERT on motor and cognitive development in early-treated PD patients.
Abstract:
Pompe disease (PD) is a metabolic myopathy caused by a deficiency of acid-alpha glucosidase (GAA), a lysosomal enzyme that cleaves glycogen. The classic infantile-onset form is characterised by severe hypotonia and cardiomyopathy. Untreated patients usually die within the first year of life due to cardiorespiratory failure. Several studies involving patients with infantile-onset PD have shown that enzyme replacement therapy (ERT) with alglucosidase alfa, recombinant human GAA (rhGAA), significantly prolongs survival, decreases cardiomegaly, and improves cardiac function and conduction abnormalities. However, the efficacy on motor, cognitive and social milestones appears to be more related to the condition of the patient before the start of treatment. To date, the sample of early diagnosed and treated patients is small and the length of follow-up is still limited. We report the results of a long-term follow-up of one patient presenting severe bradycardia and cardiomyopathy at birth, diagnosed in the third day of life and successfully treated by ERT. Serum muscle enzymes at diagnosis were AST 200 U/L, ALT 99 U/L and CPK 731 U/L (n.v. 0-295); the molecular study identified the homozygous missense mutation c.1933 G> A p.Asp645Asn (GAA exon 14). Left Ventricular Mass Index (LVMI) at baseline was 171 g/m(2) (Z-score = 4.3) and decreased to normal values since the 3-month follow-up. A muscle biopsy performed at 18 months after the start of therapy, showed only a low degree of muscle involvement. To our knowledge, this is the longest ERT treatment follow-up in a symptomatic neonatal patient with Pompe disease.
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