Rationale: Several drugs used to treat bipolar disorder (lithium and carbamazepine), when administered chronically to rats, reduce the turnover of arachidonic acid, but not docosahexaenoic acid, in brain phospholipids by decreasing the activity of an arachidonic acid-selective phospholipase A(2). Although chronic valproic acid produces similar effects on brain arachidonic acid and docosahexaenoic acid turnover, it does not alter phospholipase A(2) activity, suggesting that it targets a different enzyme in the turnover pathway.
Materials And Methods/results: By isolating rat brain microsomal long-chain fatty acyl-CoA synthetases (Acsl), we show in vitro that valproic acid is a non-competitive inhibitor of Acsl, as it reduces the maximal velocity of the reaction without changing the affinity of the substrate for the enzyme. While valproic acid inhibited the synthesis of arachidonoyl-CoA, palmitoyl-CoA, and docosahexaenoyl-CoA, the K (i )for inhibition of arachidonoyl-CoA synthesis (14.1 mM) was approximately one fifth the K (i) for inhibiting palmitoyl-CoA (85.4 mM) and docosahexaenoyl-CoA (78.2 mM) synthesis. As chronic administration of valproic acid in bipolar disorder achieves whole-brain levels of 1.0 to 1.5 mM, inhibition of arachidonoyl-CoA formation can occur at brain concentrations that are therapeutically relevant to this disease. Furthermore, brain microsomal Acsl did not produce valproyl-CoA.
Conclusions: This study shows that valproic acid acts as a non-competitive inhibitor of brain microsomal Acsl, and that inhibition is substrate-selective. The study supports the hypothesis that valproic acid acts in bipolar disorder by reducing the brain arachidonic acid cascade, by inhibiting arachidonoyl-CoA formation.
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http://dx.doi.org/10.1007/s00213-005-0272-4 | DOI Listing |
NeuroSci
December 2024
Instituto de Investigaciones Cerebrales, Universidad Veracruzana, Xalapa 91070, Mexico.
Exposure to valproic acid (VPA) during embryogenesis has become a valuable tool for modeling neurodevelopmental disorders in animal models such as zebrafish (). This article examines the effects of embryonic exposure to VPA in zebrafish on the basis of 39 articles sourced from PubMed and Google Scholar. We conducted a systematic review and meta-analysis to elucidate the common impacts of VPA exposure and reported that VPA significantly altered development at various levels.
View Article and Find Full Text PDFCNS Spectr
December 2024
Department of Psychiatry, University of Toronto, Toronto, ON, Canada.
Background: Recent guidance from UK health authorities strongly cautions against the use of valproic acid (VPA) in persons under 55 because of reevaluated risk of teratogenicity.
Objective: To summarize the extant literature documenting VPA-associated anatomical, behavioral, and cognitive teratogenicity.
Method: Pubmed, Medline, Cochrane Library, PsychInfo, Embase, Scopus, Web of Science, and Google Scholar were searched in accordance with PRISMA guidelines.
J Mol Histol
December 2024
Faculty of Engineering, Department of Chemistry, Istanbul University- Cerrahpaşa, Avcilar, Istanbul, Türkiye.
Sodium valproate- a salt of valproic acid (VPA), is an anticonvulsant used in the treatment of epilepsy and a range of psychiatric conditions that include panic attacks, anxiety, post-traumatic stress, migraine and bipolar disorder etc. VPA can cause direct damage to many tissues due to accumulation of toxic metabolites. Nowadays, phytochemicals are amongst the best options for the treatment of diseases.
View Article and Find Full Text PDFIBRO Neurosci Rep
December 2024
Physiology Research Center, Iran University of Medical Sciences, Tehran, Iran.
Unlabelled: Valproic acid (VPA) demonstrates teratogenic effects during pregnancy. Prenatal exposure to VPA may result in autism spectrum disorder (ASD) -like phenotypes. Apigenin, a natural flavonoid, has been shown to have neuroprotective impacts due to its antioxidant properties.
View Article and Find Full Text PDFJ Epilepsy Res
December 2024
Department of Neurology, Comprehensive Epilepsy Center, Johns Hopkins University School of Medicine, Baltimore, MD, USA.
Lance Adams syndrome (LAS) is characterized by chronic action or intention myoclonus resulting from cerebral hypoxia. Perampanel, a non-competitive antagonist of aamino-3-hydroxy-5methyl-4 isooxazoleproprionic acid glutamate receptor, has demonstrated some efficacy in myoclonic epilepsy and other types of myoclonus. We report significant benefit in a patient with LAS treated with add on perampanel and provide a review of the relevant literature.
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