Affiliation:
1. Department of Metabolic Diseases and Netherlands Metabolomics Center, University Medical Center Utrecht, Utrecht, Netherlands;
2. Departments of Neonatology, and
3. Pediatric Metabolic Diseases, Wilhelmina Children’s Hospital, University Medical Center Utrecht, Utrecht, Netherlands
Abstract
BACKGROUND AND OBJECTIVE:
Vitamin B6 plays a pivotal role in brain development and functioning. Differences in vitamin B6 homeostasis between preterm and term newborn infants have been reported. The authors sought to investigate whether B6 vitamers in cerebrospinal fluid (CSF) of preterm and term newborn infants are different.
METHODS:
B6 vitamer concentrations were determined in 69 CSF samples of 36 newborn infants (26 born preterm and 10 born term) by ultra performance liquid chromatography-tandem mass spectrometry. CSF samples, taken from a subcutaneous intraventricular reservoir, were bedside frozen and protected from light.
RESULTS:
Concentrations of pyridoxal (PL), pyridoxal phosphate (PLP), pyridoxic acid (PA), and pyridoxamine (PM) in preterm newborns (postmenstrual age 30–37 weeks) were at least twice as high as in older newborns (postmenstrual age ≥42 weeks). Pyridoxine and pyridoxamine phosphate concentrations were below limits of quantification in all newborns. In CSF of 2 very preterm newborns (postmenstrual age <30 weeks), significant amounts of pyridoxine were present besides high concentrations of PL, PA, and PM, whereas PLP concentrations were relatively low. B6 vitamers in CSF were positively correlated, especially PA, PLP, and PL.
CONCLUSIONS:
In CSF of newborn infants, PL, PLP, PA, and PM are present, and concentrations are strongly dependent on postmenstrual age. Our results indicate that vitamin B6 homeostasis in brain differs between preterm and term newborns. These results should be taken into account for diagnosis and treatment of epilepsy and vitamin B6 deficiency in newborn infants.
Publisher
American Academy of Pediatrics (AAP)
Subject
Pediatrics, Perinatology, and Child Health
Cited by
19 articles.
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1. A Novel Two-Dimensional Liquid Chromatography Combined with Ultraviolet Detection Method for Quantitative Determination of Pyridoxal 5′-Phosphate, 4-Pyridoxine Acid and Pyridoxal in Animal Plasma;Animals;2023-04-13
2. Validated UPLC-MS/MS method for the analysis of vitamin B6 pyridoxal 5́-phosphate, pyridoxal, pyridoxine, pyridoxamine, and pyridoxic acid in human cerebrospinal fluid;Journal of Chromatography B;2022-12
3. Vitamin B6-Dependent and Vitamin B6-Responsive Disorders;Physician's Guide to the Diagnosis, Treatment, and Follow-Up of Inherited Metabolic Diseases;2022
4. Validated Uplc-Ms/Ms Method for the Analysis of Vitamin B6 Pyridoxal 5´-Phosphate, Pyridoxal, Pyridoxine, Pyridoxamine, and Pyridoxic Acid in Human Cerebrospinal Fluid;SSRN Electronic Journal;2022
5. Vitamin Requirements for Preterm Infants;Nutritional Care of Preterm Infants;2021