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Dried Blood Spot Collection of Health Biomarkers to Maximize Participation in Population Studies
Published on: January 28, 2014
Biomarker Profiling for Pyridoxine Dependent Epilepsy in Dried Blood Spots by HILIC-ESI-MS
Elizabeth Mary Mathew1, Sudheer Moorkoth1, Leslie Lewis2
1Department of Pharmaceutical Quality Assurance, Manipal College of Pharmaceutical Sciences, Manipal Academy of Higher Education, Manipal 576104, India.
Insights
Pyridoxine dependent epilepsy, a condition causing severe seizures, can be diagnosed by measuring biomarkers Alpha-amino adipic semialdehyde (AASA), piperidine-6-carboxylic acid (P6C), and pipecolic acid (PA) using a new, rapid HILIC-MS method on dried blood spots.
Area of Science:
- Biochemistry
- Analytical Chemistry
- Clinical Diagnostics
Background:
- Pyridoxine dependent epilepsy (PDE) is a severe neurological disorder characterized by refractory seizures in infants and children.
- Early diagnosis and prophylactic pyridoxine treatment are crucial to prevent irreversible brain damage.
- Alpha-amino adipic semialdehyde (AASA), piperidine-6-carboxylic acid (P6C), and pipecolic acid (PA) are established biomarkers for PDE.
Purpose of the Study:
- To develop and validate a novel hydrophilic interaction liquid chromatography (HILIC) coupled with mass spectrometry (MS) method.
- To quantify key PDE biomarkers (AASA, P6C, PA) in dried blood spot (DBS) samples.
- To establish a rapid, cost-effective, and automatable diagnostic assay for PDE.
Main Methods:
- Development of a HILIC-MS/MS method for simultaneous quantification of AASA, P6C, and PA.
- Extraction of analytes from dried blood spot samples using methanol.
- Analysis on a HILIC column with a formic acid buffer and acetonitrile mobile phase, achieving a 3-minute run time.
Main Results:
- The method achieved a limit of detection (LOD) of 10 ng/mL and a limit of quantification (LOQ) of 50 ng/mL.
- Excellent linearity (r² ≥ 0.990), high recovery (92-101.98%), and low intra- (<8%) and inter-day (<6%) precision were demonstrated.
- Method comparison via Bland-Altman analysis showed comparable results to existing literature methods, confirming clinical validity.
Conclusions:
- A robust, sensitive, and rapid HILIC-MS/MS method for quantifying PDE biomarkers in DBS has been successfully developed and validated.
- The method's simplicity, lack of derivatization, and short run time facilitate automation and high-throughput screening.
- This assay offers a cost-effective and efficient tool for early diagnosis and management of pyridoxine dependent epilepsy.
Abstract:
Pyridoxine dependent epilepsy is a condition where the affected infant or child has prolonged seizures (status epilepticus), which are nonresponsive to anticonvulsant therapy but can be treated with pharmacological doses of pyridoxine. If identified earlier and treated prophylactically with pyridoxine, severe brain damage due to seizures can be prevented. Alpha-amino adipic semialdehyde (AASA), piperidine-6-carboxylic acid (P6C), and pipecolic acid (PA) are known biomarkers of pyridoxine dependent epilepsy. We report the development and validation of a hydrophilic interaction liquid chromatography (HILIC) hyphenated with mass spectroscopy for the quantification of the above analytes from dried blood spot samples. The samples were extracted using methanol and analysed on a iHILIC fusion plus column with formic acid buffer (pH 2.5): acetonitrile (20:80) at a flow rate of 0.5 mL/min within 3 minutes. The method demonstrated a LOD of 10 ng/mL, LOQ of 50 ng/mL, linearity of r2 ≥ 0.990, and recovery of 92-101.98% for all analytes. The intra- and interday precision CVs were < 8% and 6%, respectively. Extensive stability studies demonstrated that the analytes were stable in stock solution and in matrix when stored at -80°C. We performed method comparison studies of the developed method with the literature reported method using normal samples and matrix matched spiked samples at pathological concentrations to mimic clinical validity. The Bland-Altman analysis for comparison of the analytical suitability of the method for the biomarkers in healthy and spiked samples with the literature reported method revealed a bias which suggested that the method was comparable. The newly developed method involves no derivatisation and has a simple sample preparation and a low run time enabling it to be easily automated with a high sample throughput in a cost-effective manner.
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