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Methoxyacetic acid and ethoxyacetic acid inhibit mitochondrial function in vitro
1Department of Environmental and Industrial Health, University of Michigan, Ann Arbor 48109-2029.
Journal of Biochemical Toxicology
|September 1, 1986
Summary
Methoxyacetic acid (MAA) and ethoxyacetic acid (EAA) inhibit mitochondrial function, explaining the reproductive toxicity of ethylene glycol monomethyl ether (EGME) and ethylene glycol monoethyl ether (EGEE). These metabolites impact respiration and cytochrome c oxidase activity.
Area of Science:
- Toxicology
- Biochemistry
- Cell Biology
Background:
- Ethylene glycol monomethyl ether (EGME) and ethylene glycol monoethyl ether (EGEE) are recognized reproductive toxicants in animal models.
- Their toxicity is attributed to their metabolites: methoxyacetic acid (MAA) and ethoxyacetic acid (EAA).
- Target tissues exhibit rapid cell division and high energy demands, suggesting mitochondrial involvement.
Purpose of the Study:
- To investigate the effects of EGME, EGEE, and their metabolites (MAA, EAA) on mitochondrial function.
- To determine if MAA and EAA directly impact mitochondrial respiration and enzyme activity.
- To correlate mitochondrial dysfunction with the known reproductive toxicity of EGME and EGEE.
Main Methods:
- Isolated hepatic mitochondria were used to assess mitochondrial respiration (state 3) and respiratory control ratio (RCR) with various substrates.
- Cytochrome c oxidase activity was measured in the presence of MAA and EAA.
- Mitochondrial function in testicular tissue was also examined for MAA effects.
Main Results:
- MAA and EAA significantly inhibited state 3 respiration and RCR in hepatic mitochondria at concentrations as low as 3.85 mM.
- Both metabolites also inhibited cytochrome c oxidase activity at similar concentrations.
- MAA demonstrated comparable inhibitory effects on testicular mitochondria.
- EGME and EGEE did not affect mitochondrial function at high concentrations.
Conclusions:
- The findings support the hypothesis that MAA and EAA mediate the reproductive toxicity of EGME and EGEE.
- MAA and EAA exert their toxic effects, at least in part, by impairing mitochondrial function.
- Mitochondrial inhibition is a key mechanism underlying the reproductive toxicity of these glycol ethers.