Identification of a novel biomarker for pyridoxine-dependent epilepsy: Implications for newborn screening
Michael F Wempe1, Amit Kumar1, Vijay Kumar1
1School of Pharmacy, Department of Pharmaceutical Sciences, University of Colorado, Aurora, Colorado.
Insights
A new biomarker, 6-oxo-pipecolate (6-oxo-PIP), aids in diagnosing pyridoxine-dependent epilepsy (PDE) through newborn screening. This stable metabolite allows for early detection and treatment of this treatable neurological disorder.
Area of Science:
- Biochemistry
- Genetics
- Neurology
Background:
- Pyridoxine-dependent epilepsy (PDE) is an early-onset epileptic encephalopathy treatable with pyridoxine.
- Delayed diagnosis of PDE occurs due to atypical presentations and lack of universally effective early diagnostic markers.
- Early intervention within the first year of life is crucial for optimal neurologic outcomes in PDE patients.
Purpose of the Study:
- To develop a reliable newborn screening method for pyridoxine-dependent epilepsy (PDE).
- To identify a stable biomarker for PDE suitable for current newborn screening platforms.
- To overcome limitations of unstable biomarkers previously identified for PDE.
Main Methods:
- Identified 6-oxo-pipecolate (6-oxo-PIP) as a novel, accumulating metabolite in individuals with PDE.
- Developed a liquid chromatography-tandem mass spectrometry (LC-MS/MS) method to quantify 6-oxo-PIP in biological samples.
- Assessed the stability of 6-oxo-PIP in urine stored at room temperature (RT).
Main Results:
- 6-oxo-PIP was found to accumulate in blood, plasma, urine, and cerebrospinal fluid of PDE patients.
- The developed LC-MS/MS method accurately quantifies 6-oxo-PIP using standard laboratory techniques.
- 6-oxo-PIP remained measurable in urine for up to 4 months at RT, indicating its stability.
Conclusions:
- 6-oxo-PIP is a novel, stable biomarker for pyridoxine-dependent epilepsy (PDE).
- The developed quantification method is compatible with existing newborn screening programs.
- This biomarker facilitates early diagnosis and timely treatment of PDE, improving patient outcomes.
Abstract:
Pyridoxine-dependent epilepsy (PDE) is often characterized as an early onset epileptic encephalopathy with dramatic clinical improvement following pyridoxine supplementation. Unfortunately, not all patients present with classic neonatal seizures or respond to an initial pyridoxine trial, which can result in the under diagnosis of this treatable disorder. Restriction of lysine intake and transport is associated with improved neurologic outcomes, although treatment should be started in the first year of life to be effective. Because of the documented diagnostic delay and benefit of early treatment, we aimed to develop a newborn screening method for PDE. Previous studies have demonstrated the accumulation of Δ1 -piperideine-6-carboxylate and α-aminoadipic semialdehyde in individuals with PDE, although these metabolites are unstable at room temperature (RT) limiting their utility for newborn screening. As a result, we sought to identify a biomarker that could be applied to current newborn screening paradigms. We identified a novel metabolite, 6-oxo-pipecolate (6-oxo-PIP), which accumulates in substantial amounts in blood, plasma, urine, and cerebral spinal fluid of individuals with PDE. Using a stable isotope-labeled internal standard, we developed a nonderivatized liquid chromatography tandem mass spectrometry-based method to quantify 6-oxo-PIP. This method replicates the analytical techniques used in many laboratories and could be used with few modifications in newborn screening programs. Furthermore, 6-oxo-PIP was measurable in urine for 4 months even when stored at RT. Herein, we report a novel biomarker for PDE that is stable at RT and can be quantified using current newborn screening techniques.
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