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The Antioxidant Cofactor Alpha-Lipoic Acid May Control Endogenous Formaldehyde Metabolism in Mammals
Anastasia V Shindyapina1,2, Tatiana V Komarova1,2, Ekaterina V Sheshukova1,2
1Department of Genetics and Biotechnology, N. I. Vavilov Institute of General Genetics, Russian Academy of Science, Moscow, Russia.
Abstract:
The healthy human body contains small amounts of metabolic formaldehyde (FA) that mainly results from methanol oxidation by pectin methylesterase, which is active in a vegetable diet and in the gastrointestinal microbiome. With age, the ability to maintain a low level of FA decreases, which increases the risk of Alzheimer's disease and dementia. It has been shown that 1,2-dithiolane-3-pentanoic acid or alpha lipoic acid (ALA), a naturally occurring dithiol and antioxidant cofactor of mitochondrial α-ketoacid dehydrogenases, increases glutathione (GSH) content and FA metabolism by mitochondrial aldehyde dehydrogenase 2 (ALDH2) thus manifests a therapeutic potential beyond its antioxidant property. We suggested that ALA can contribute to a decrease in the FA content of mammals by acting on ALDH2 expression. To test this assumption, we administered ALA in mice in order to examine the effect on FA metabolism and collected blood samples for the measurement of FA. Our data revealed that ALA efficiently eliminated FA in mice. Without affecting the specific activity of FA-metabolizing enzymes (ADH1, ALDH2, and ADH5), ALA increased the GSH content in the brain and up-regulated the expression of the FA-metabolizing ALDH2 gene in the brain, particularly in the hippocampus, but did not impact its expression in the liver in vivo or in rat liver isolated from the rest of the body. After ALA administration in mice and in accordance with the increased content of brain ALDH2 mRNA, we detected increased ALDH2 activity in brain homogenates. We hypothesized that the beneficial effects of ALA on patients with Alzheimer's disease may be associated with accelerated ALDH2-mediated FA detoxification and clearance.
Insights
Alpha lipoic acid (ALA) effectively reduces formaldehyde (FA) levels in mice by up-regulating ALDH2 gene expression in the brain. This suggests ALA may help prevent Alzheimer's disease by enhancing FA detoxification.
Area of Science:
- Biochemistry
- Neuroscience
- Toxicology
Background:
- Metabolic formaldehyde (FA) accumulates with age, increasing Alzheimer's and dementia risk.
- Alpha lipoic acid (ALA) is an antioxidant that impacts FA metabolism.
- ALA's potential therapeutic role beyond its antioxidant properties is being explored.
Purpose of the Study:
- To investigate if ALA decreases mammalian FA levels by modulating ALDH2 expression.
- To examine the effect of ALA administration on FA metabolism in mice.
Main Methods:
- ALA was administered to mice.
- Blood samples were collected for FA measurement.
- Brain and liver tissues were analyzed for enzyme activity, GSH content, and ALDH2 gene expression.
Main Results:
- ALA administration efficiently reduced FA levels in mice.
- ALA increased brain glutathione (GSH) content.
- ALA up-regulated ALDH2 gene expression and activity in the brain, particularly the hippocampus, without affecting other FA-metabolizing enzymes.
Conclusions:
- ALA accelerates ALDH2-mediated formaldehyde detoxification and clearance.
- ALA's beneficial effects in Alzheimer's disease may stem from enhanced FA metabolism.
- ALA demonstrates therapeutic potential for age-related cognitive decline linked to FA accumulation.
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