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Ammonia potentiates methylmalonic acid-induced convulsions and TBARS production
Patricia da Costa Marisco1, Marinei Cristina Pereira Ribeiro, Juliana Sartori Bonini
1Department of Chemistry, Center of Natural and Exact Sciences, Federal University of Santa Maria, 97105-900, Santa Maria, RS, Brazil.
Abstract:
Hyperammonemia is a common finding in children with methylmalonic acidemia, an inherited metabolic disease characterized by mental retardation, convulsions, and accumulation of methylmalonic acid (MMA). Although it has been suggested that MMA induces convulsions through succinate dehydrogenase (SDH) inhibition, very little is known about the contribution of hyperammonemia to the development of convulsions in these patients. In the present study we investigated the effects of ammonium ions on the convulsant action of MMA, MMA-induced inhibition of striatal succinate dehydrogenase, and the striatal content of thiobarbituric acid-reactive substances (TBARS). Adult rats were injected with ammonium acetate (1.5 mmol/kg, sc) or sodium acetate (1.5 mmol/kg, sc), followed 5 min later by buffered MMA (3 micromol/microl) or NaCl (4.5 micromol/microl) injected into the striatum. The animals were observed in an open field for the appearance of convulsive episodes. After 30 min of behavioral evaluation, the animals were sacrificed and had their striatal TBARS content measured. Ammonium acetate pretreatment caused no behavioral effects per se, but potentiated MMA-induced convulsions and increased basal TBARS content and MMA-induced TBARS production in the striatum. Ammonium chloride had no effect on basal succinate dehydrogenase activity and did not alter MMA-induced inhibition of SDH in vitro. These results suggest that ammonia potentiates MMA-induced behavioral effects through a mechanism that does not involve further succinate dehydrogenase inhibition, but may involve facilitation of MMA-induced oxidative damage and provide evidence that ammonia and MMA may have mutually additive toxicity.
Insights
Ammonia worsens methylmalonic acidemia (MMA) seizures in rats by increasing oxidative damage, not by inhibiting succinate dehydrogenase (SDH). This suggests ammonia and MMA have additive toxicity in this inherited metabolic disorder.
Area of Science:
- Neuroscience
- Biochemistry
- Genetics
Background:
- Methylmalonic acidemia (MMA) is an inherited metabolic disorder causing intellectual disability and seizures.
- Hyperammonemia is common in MMA patients, but its role in seizure development is unclear.
- Methylmalonic acid (MMA) may induce seizures by inhibiting succinate dehydrogenase (SDH).
Purpose of the Study:
- To investigate the effect of ammonia on MMA-induced seizures.
- To examine MMA-induced inhibition of striatal succinate dehydrogenase (SDH).
- To assess the impact of ammonia and MMA on striatal oxidative stress.
Main Methods:
- Rats were pretreated with ammonium acetate or sodium acetate.
- Methylmalonic acid (MMA) or NaCl was administered intracerebrally.
- Behavioral seizures were observed, and striatal thiobarbituric acid-reactive substances (TBARS) were measured.
Main Results:
- Ammonia pretreatment potentiated MMA-induced convulsions.
- Ammonia increased basal and MMA-induced TBARS, indicating oxidative stress.
- Ammonia did not affect basal SDH activity or MMA-induced SDH inhibition in vitro.
Conclusions:
- Ammonia exacerbates MMA-induced seizures through mechanisms other than SDH inhibition.
- Ammonia may enhance MMA-induced oxidative damage, contributing to neurotoxicity.
- Ammonia and MMA exhibit mutually additive toxicity in this model.