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Chronic postnatal administration of methylmalonic acid provokes a decrease of myelin content and ganglioside
A Brusque1, L Rotta, L F Pettenuzzo
1Departamento de Bioquímica, Instituto das Ciências Básicas da Saúde, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brasil.
Abstract:
Levels of methylmalonic acid (MMA) comparable to those of human methylmalonic acidemia were achieved in blood (2-2.5 mmol/l) and brain (1.35 umol/g) of rats by administering buffered MMA, pH 7.4, subcutaneously twice a day from the 5th to the 28th day of life. MMA doses ranged from 0.76 to 1.67 umol/g as a function of animal age. Control rats were treated with saline in the same volumes. The animals were sacrificed by decapitation on the 28th day of age. Blood was taken and the brain was rapidly removed. Medulla, pons, the olfactory lobes and cerebellum were discarded and the rest of the brain ("cerebrum") was isolated. Body and "cerebrum" weight were measured, as well as the cholesterol and triglyceride concentrations in blood and the content of myelin, total lipids, and the concentrations of the lipid fractions (cholesterol, glycerolipids, phospholipids and ganglioside N-acetylneuraminic acid (ganglioside-NANA)) in the "cerebrum". Chronic MMA administration had no effect on body or "cerebrum" weight, suggesting that the metabolites per se neither affect the appetite of the rats nor cause malnutrition. In contrast, MMA caused a significant reduction of plasma triglycerides, but not of plasma cholesterol levels. A significant diminution of myelin content and of ganglioside-NANA concentration was also observed in the "cerebrum". We propose that the reduction of myelin content and ganglioside-NANA caused by MMA may be related to the delayed myelination/cerebral atrophy and neurological dysfunction found in methylmalonic acidemic children.
Insights
Methylmalonic acid (MMA) administration in rats reduced plasma triglycerides and cerebral myelin content. These findings may explain neurological issues in children with methylmalonic acidemia.
Area of Science:
- Biochemistry
- Neuroscience
- Pediatrics
Background:
- Methylmalonic acidemia is a rare genetic disorder.
- Neurological dysfunction is a common symptom in affected children.
Purpose of the Study:
- To investigate the biochemical effects of methylmalonic acid (MMA) on rat brain development.
- To explore the potential link between MMA levels and neurological deficits observed in methylmalonic acidemia.
Main Methods:
- Rats were administered buffered MMA subcutaneously from day 5 to 28 of life.
- Blood and brain tissues were analyzed for lipid content, including cholesterol, triglycerides, myelin, and gangliosides.
- Control rats received saline injections.
Main Results:
- MMA administration achieved blood and brain MMA levels comparable to human methylmalonic acidemia.
- No significant changes in body or brain weight were observed.
- A significant reduction in plasma triglycerides, cerebral myelin content, and ganglioside-NANA concentration was noted.
Conclusions:
- Elevated MMA levels in rats led to decreased myelin and ganglioside content in the brain.
- These biochemical changes may contribute to the delayed myelination and neurological dysfunction seen in methylmalonic acidemia patients.
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