BioMed Research International · 2014 · 60 citations · 22 references
Electrolyte DisorderValproic Acid ConcentrationsPharmacotherapyTranslational PharmacologyMolecular PharmacologyPharmacological StudyValproic Acid PharmacokineticsHematologyElectrolyte DisturbanceClinical ChemistryLaboratory MedicineHuman MetabolismHealth SciencesBiochemistryChemical PathologyMetabolomicsPharmacologyValproic AcidPhysiologyClinical PharmacologyMetabolismMedicinePharmacokineticsBipolar Disorder
Valproic acid, a branched short-chain fatty acid, has numerous action mechanisms which turn it into a broad spectrum anticonvulsant drug and make its use possible in some other pathologies such as bipolar disorder. It is extensively metabolized in liver, representing β -oxidation in the mitochondria one of its main metabolic route (40%). Carnitine is responsible for its entry into the mitochondria as any other fatty acid. Long-term high-dose VPA therapy or acute VPA overdose induces carnitine depletion, resulting in high levels of ammonia in blood. As a high correlation between salivary valproic acid levels and plasma ultrafiltrate levels was found in humans, saliva becomes a promising monitoring fluid in order to study valproic acid pharmacokinetics and its toxic effect. Extended-release (twice daily) formulations of valproic acid or carnitine supplementation are the proposed two therapeutic strategies in order to reverse hyperammonemia.
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Yogita Ghodke‐Puranik, Caroline F. Thorn, Jatinder K. Lamba et al. · Pharmacogenetics and Genomics · 2013 · 379 citations · Full text
Effect of <scp>l</scp> -carnitine treatment for valproate-induced hepatotoxicity
Timothy P. Bohan, Edward D. Helton, Ian R. McDonald et al. · Neurology · 2001 · 183 citations