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Hyperphosphatasia with neurologic deficit: a pyridoxine-responsive seizure disorder?
Miles D Thompson1, Annie Killoran, Maire E Percy
1Department of Laboratory Medicine and Pathobiology, University of Toronto, Ontario, Canada.
Insights
This study highlights a rare genetic disorder, Hyperphosphatasia with Neurologic Deficit, characterized by elevated alkaline phosphatase and seizures. Pyridoxine treatment showed a paradoxical response, suggesting its diagnostic utility.
Area of Science:
- Biochemistry
- Genetics
- Neurology
Background:
- This case report details a 4 1/2-year-old female with developmental delay, tonic-clonic seizures, and persistently elevated serum alkaline phosphatase (ALP) activity.
- Initial investigations including imaging and genetic tests were unremarkable, but low serum pyridoxal 5'-phosphate (PLP) levels were noted.
Observation:
- The patient presented with microcephaly and seizures, alongside consistently elevated serum ALP levels (1.3 +/- 0.6 times the upper limit of normal) over several years.
- A diagnosis of Hyperphosphatasia with Neurologic Deficit (MIM #239300), a rare autosomal recessive disorder, was made.
- A pyridoxine challenge revealed a paradoxical electroencephalographic (EEG) response, with diffuse delta slow waves observed.
Findings:
- Daily pyridoxine administration (100 mg) and phenobarbital withdrawal resulted in seizure cessation.
- The patient exhibited a clinically significant but paradoxical response to the pyridoxine challenge.
Implications:
- Measuring serum alkaline phosphatase is recommended for patients with seizures and paradoxical EEG responses to pyridoxine.
- Consider a pyridoxine challenge in cases of hyperphosphatasia with seizures and neurological deficits for potential diagnosis and treatment.
Abstract:
This report describes the case of a 4 1/2-year-old female with developmental delay and tonic-clonic seizures, persistently elevated serum alkaline phosphatase activity, and low serum pyridoxal 5'-phosphate. Born at term to consanguineous parents, she was dysmorphic and delayed at 5 months. At 11 months, seizures and microcephaly were evident but skeletal and cerebral imaging, karyotyping, and genetic metabolic tests were unremarkable. Serum alkaline phosphatase activity, however, was elevated (1.3 +/- 0.6 times greater than the upper limit of normal) on seven occasions between 5 months and 4(1/2) years of age. Hyperphosphatasia with neurologic deficit (MIM #239300), a rare autosomal recessive disorder, was diagnosed. The low serum levels of pyridoxal 5'-phosphate (6 nmol/L; normal >20 nmol/L) prompted a pyridoxine challenge. A clinically significant but paradoxical response was observed. On electroencephalography, diffuse delta slow waves (1-2 Hz) were observed, suggestive of stage 3 or 4 slow-wave sleep. With daily administration of 100 mg pyridoxine and withdrawal of phenobarbital, seizures were not evident. We suggest that serum alkaline phosphatase should be measured in cases of seizures with paradoxical electroencephalographic response to pyridoxine. Conversely, pyridoxine challenge should be considered in cases of hyperphosphatasia with seizures and neurologic deficit.
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