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Published on: March 5, 2020
Plasma taurine levels are not affected by vigabatrin in pediatric patients
Emily M Spelbrink1,2, Tarub S Mabud1, Richard Reimer1
1Department of Neurology, Stanford University School of Medicine, Stanford, California, U.S.A.
Insights
Vigabatrin, an effective antiseizure drug, did not significantly alter plasma taurine levels in children with epilepsy. Age, not vigabatrin use, was linked to lower taurine levels in children.
Area of Science:
- Neurology
- Ophthalmology
- Clinical Chemistry
Background:
- Vigabatrin is a crucial antiseizure medication.
- Retinal toxicity is a significant concern limiting vigabatrin use.
- Vigabatrin-induced reduction of taurine is a proposed toxicity mechanism.
Purpose of the Study:
- To investigate the association between vigabatrin use and plasma taurine levels in pediatric epilepsy patients.
- To determine if vigabatrin affects taurine levels independently of age.
Main Methods:
- Retrospective cohort study of children undergoing plasma amino acid analysis (2006-2015).
- Comparison of plasma taurine levels between children on vigabatrin, other antiseizure medications, and no medication.
- Statistical analysis including ANOVA and multiple linear regression controlling for age.
Main Results:
- No significant differences in plasma taurine levels were found between children taking vigabatrin and control groups (ANOVA p = 0.841).
- Plasma taurine levels showed age-dependent decreases.
- Vigabatrin use was not significantly associated with plasma taurine levels after controlling for age (p = 0.87).
Conclusions:
- Children with epilepsy on vigabatrin maintain normal plasma taurine levels.
- Age is a significant factor influencing plasma taurine levels in children.
- Further research is needed to clarify the role of taurine in vigabatrin-associated visual field loss.
Abstract:
Vigabatrin is a highly effective antiseizure medication, but its use is limited due to concerns about retinal toxicity. One proposed mechanism for this toxicity is vigabatrin-mediated reduction of taurine. Herein we assess plasma taurine levels in a retrospective cohort of children with epilepsy, including a subset receiving vigabatrin. All children who underwent a plasma amino acid analysis as part of their clinical evaluation between 2006 and 2015 at Stanford Children's Health were included in the analysis. There were no significant differences in plasma taurine levels between children taking vigabatrin (n = 16), children taking other anti-seizure medications, and children not taking any anti-seizure medication (n = 556) (analysis of variance [ANOVA] p = 0.841). There were, however, age-dependent decreases in plasma taurine levels. Multiple linear regression revealed no significant association between vigabatrin use and plasma taurine level (p = 0.87) when controlling for age. These results suggest that children taking vigabatrin maintain normal plasma taurine levels, although they leave unanswered whether taurine supplementation is necessary or sufficient to prevent vigabatrin-associated visual field loss. They also indicate that age should be taken into consideration when evaluating taurine levels in young children.
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