Diagnostic pitfalls in vitamin B6-dependent epilepsy caused by mutations in the PLPBP gene
Kristian Vestergaard Jensen1, Maria Frid2, Tommy Stödberg3,4
1Department of Neonatology Copenhagen University Hospital Copenhagen Denmark.
Insights
Vitamin B6-responsive epilepsies, including pyridoxal phosphate homeostasis protein (PLPHP) deficiency, can be misdiagnosed due to lactic acidemia and hyperglycinemia. Early pyridoxine treatment and genetic testing are crucial for accurate diagnosis and prognosis.
Area of Science:
- Biochemistry
- Genetics
- Neurology
Background:
- Vitamin B6-responsive epilepsies are genetic disorders often presenting with neonatal seizures resistant to standard treatments.
- Pyridoxal phosphate homeostasis protein (PLPHP) deficiency, caused by PLPBP variants, is a newly identified cause of vitamin B6-dependent epilepsy.
- Current diagnostic methods lack specific metabolic biomarkers for PLPBP deficiency, hindering early detection and prognosis.
Observation:
- Two patients with PLPBP deficiency, including a novel missense variant, exhibited hyperglycinemia and hyperlactatemia from birth.
- These biochemical abnormalities mimicked other metabolic disorders, leading to misdiagnoses such as mitochondrial encephalopathy and glycine encephalopathy in reported cases.
- The study highlights that lactic acidemia and hyperglycinemia can be significant diagnostic pitfalls in vitamin B6-responsive epilepsies.
Findings:
- Hyperglycinemia and hyperlactatemia are consistent biochemical findings in PLPHP deficiency.
- Misinterpretation of lactic acidemia and hyperglycinemia can lead to delayed or incorrect diagnoses, impacting patient outcomes.
- Genetic analysis and a therapeutic trial of pyridoxine are essential for diagnosing vitamin B6-responsive epilepsies, including PLPHP deficiency.
Implications:
- Recognizing lactic acidemia and hyperglycinemia as potential diagnostic pitfalls is critical for timely diagnosis of PLPHP deficiency.
- Early initiation of pyridoxine treatment, guided by clinical suspicion and confirmed by genetic testing, can improve outcomes for patients with vitamin B6-responsive epilepsies.
- Further research into specific biomarkers for PLPBP deficiency is warranted to improve early detection and prognostic accuracy.
Abstract:
Vitamin B6-responsive epilepsies are a group of genetic disorders including ALDH7A1 deficiency, PNPO deficiency, and others, usually causing neonatal onset seizures resistant to treatment with common antiepileptic drugs. Recently, biallelic mutations in PLPBP were shown to be a novel cause of vitamin B6-dependent epilepsy with a variable phenotype. The different vitamin B6-responsive epilepsies can be detected and distinguished by their respective biomarkers and genetic analysis. Unfortunately, metabolic biomarkers for early detection and prognosis of PLPBP deficiency are currently still lacking. Here, we present data from two further patients with vitamin B6-dependent seizures caused by variants in PLPBP, including a novel missense variant, and compare their genotype and phenotypic presentation to previously described cases. Hyperglycinemia and hyperlactatemia are the most consistently observed biochemical abnormalities in pyridoxal phosphate homeostasis protein (PLPHP) deficient patients and were present in both patients in this report within the first days of life. Lactic acidemia, the neuroradiological, and clinical presentation led to misdiagnosis of a mitochondrial encephalopathy in two previously published cases with an early fatal course. Similarly, on the background of glycine elevation in plasma, glycine encephalopathy was wrongly adopted as diagnosis for a patient in our report. In this regard, lactic acidemia as well as hyperglycinemia appear to be diagnostic pitfalls in patients with vitamin B6-responsive epilepsies, including PLPHP deficiency.
Synopsis:
In vitamin B6-responsive epilepsies, including PLPHP deficiency, there are several diagnostic pitfalls, including lactic acidemia as well as hyperglycinemia, highlighting the importance of a pyridoxine trial, and genetic testing.
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