Coenzyme Q10 and nicotinamide block striatal lesions produced by the mitochondrial toxin malonate
- 1 December 1994
- journal article
- research article
- Published by Wiley in Annals of Neurology
- Vol. 36 (6), 882-888
- https://doi.org/10.1002/ana.410360613
Abstract
A potential mechanism of neuronal injury in neurodegenerative diseases is a defect in energy metabolism that may lead to slow excitotoxic neuronal death. Consistent with this possibility, we showed that specific inhibitors of the electron transport chain produce excitotoxic lesions in vivo. In the present study we examined whether agents that improve energy metabolism can block lesions produced by the mitochondrial toxin malonate. Striatal lesions produced by the complex II inhibitor malonate were blocked in a dose-dependent manner by oral pretreatment with coenzyme Q10. Administration of nicotinamide by Alzet pump for 1 week attenuated malonate-induced lesions, but riboflavin had no effect. Administration of nicotinamide intraperitoneally just prior to and following induction of the lesions produced dose-dependent neuroprotection. A combination of coenzyme Q10 with nicotinamide was more effective than either compound alone, as shown by both lesion size and magnetic resonance imaging in vivo. Both coenzyme Q10 and nicotinamide blocked adenosine triphosphate depletions and lactate increases. These results confirm that mitochondrial toxins produce striatal excitotoxic lesions by a mechanism involving energy depletion in vivo. Furthermore, they suggest novel neuroprotective strategies that may be useful in the treatment of both mitochondrial encephalopathies and neurodegenerative diseases.Keywords
This publication has 30 references indexed in Scilit:
- Age‐Dependent Striatal Excitotoxic Lesions Produced by the Endogenous Mitochondrial Inhibitor MalonateJournal of Neurochemistry, 1993
- Inhibition of Succinate Dehydrogenase by Malonic Acid Produces an “Excitotoxic” Lesion in Rat StriatumJournal of Neurochemistry, 1993
- Age‐Dependent Vulnerability of the Striatum to the Mitochondrial Toxin 3‐Nitropropionic AcidJournal of Neurochemistry, 1993
- Ubiquinone Protects Cultured Neurons against Spontaneous and Excitotoxin-Induced DegenerationJournal of Cerebral Blood Flow & Metabolism, 1992
- 1‐Methyl‐4‐Phenylpyridinium Produces Excitotoxic Lesions in Rat Striatum as a Result of Impairment of Oxidative MetabolismJournal of Neurochemistry, 1992
- Does impairment of energy metabolism result in excitotoxic neuronal death in neurodegenerative illnesses?Annals of Neurology, 1992
- Localized proton NMR spectroscopy in different regions of the human brain in vivo. Relaxation times and concentrations of cerebral metabolitesMagnetic Resonance in Medicine, 1989
- Effect of High Doses of Dietary Vitamin E on the Concentrations of Vitamin E in Several Brain Regions, Plasma, Liver, and Adipose Tissue of RatsJournal of Neurochemistry, 1988
- Therapy of mitochondrial disordersJournal of Inherited Metabolic Disease, 1987
- Selective impairment of learning and blockade of long-term potentiation by an N-methyl-D-aspartate receptor antagonist, AP5Nature, 1986