Valproic acid metabolism and its effects on mitochondrial fatty acid oxidation: A review
Метаболизм вальпроевой кислоты и её влияние на митохондриальное бета-окисление жирных кислот: обзор
2008-04-01
SCID: 54.1/rxx3z243
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CoAValproic acidcarnitineinborn errors of metabolismmitochondrial fatty acid beta-oxidation
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Abstract (AI)
Valproic acid (VPA; 2-n-propylpentanoic acid) is widely used as a major drug in the treatment of epilepsy and in the control of several types of seizures. Being a simple fatty acid, VPA is a substrate for the fatty acid beta-oxidation (FAO) pathway, which takes place primarily in mitochondria. The toxicity of valproate has long been considered to be due primarily to its interference with mitochondrial beta-oxidation. The metabolism of the drug, its effects on enzymes of FAO and their cofactors such as CoA and/or carnitine will be reviewed. The cumulative consequences of VPA therapy in inborn errors of metabolism (IEMs) and the importance of recognizing an underlying IEM in cases of VPA-induced steatosis and acute liver toxicity are two different concepts that will be emphasized.
Key Findings
1
Recognizing an underlying IEM is important when evaluating VPA-induced steatosis and acute liver toxicity.
2
VPA metabolism affects enzymes of FAO and their cofactors, including CoA and carnitine.
3
VPA therapy can have cumulative harmful consequences in patients with inborn errors of metabolism (IEMs).
4
VPA toxicity is primarily attributed to its interference with mitochondrial beta-oxidation of fatty acids.
5
Valproic acid (VPA) is metabolized via mitochondrial fatty acid beta-oxidation (FAO) because it is a simple fatty acid substrate for that pathway.
Research Object
Valproic acid (VPA) metabolism in mitochondria / mitochondrial fatty acid beta-oxidation pathway
Research Subject
Effects of VPA metabolism on mitochondrial fatty acid beta-oxidation enzymes, cofactors (CoA, carnitine), associated toxicity (steatosis, acute liver injury), and interactions with inborn errors of metabolism
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2008-04-01
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