Oxidative stress as a cause of nigral cell death in Parkinson's disease and incidental lewy body disease
- 1 January 1992
- journal article
- review article
- Published by Wiley in Annals of Neurology
- Vol. 32 (S1) , S82-S87
- https://doi.org/10.1002/ana.410320714
Abstract
We examine the evidence for free radical involvement and oxidative stress in the pathological process underlying Parkinson's disease, from postmortem brain tissue. The concept of free radical involvement is supported by enhanced basal lipid peroxidation in substantia nigra in patients with Parkinson's disease, demonstrated by increased levels of malondialdehyde and lipid hydroperoxides. The activity of many of the protective mechanisms against oxidative stress does not seem to be significantly altered in the nigra in Parkinson's disease. Thus, activities of catalase and glutathione peroxidase are more or less unchanged, as are concentrations of vitamin C and vitamin E. The activity of mitochondrial superoxide dismutase and the levels of the antioxidant ion zinc are, however, increased, which may reflect oxidative stress in substantia nigra. Levels of reduced glutathione are decreased in nigra in Parkinson's disease; this decrease does not occur in other brain areas or in other neurodegenerative illnesses affecting this brain region (i.e., multiple system atrophy, progressive supranuclear palsy). Altered glutathione metabolism may prevent inactivation of hydrogen peroxide and enhance formation of toxic hydroxyl radicals. In brain material from patients with incidental Lewy body disease (presymptomatic Parkinson's disease), there is no evidence for alterations in iron metabolism and no significant change in mitochondrial complex I function. The levels of reduced glutathione in substantia nigra, however, are reduced to the same extent as in advanced Parkinson's disease. These data suggest that changes in glutathione function are an early component of the pathological process of Parkinson's disease. The data presented suggest (1) there is oxidative stress in the substantia nigra at the time of death in advanced Parkinson's disease that manifests in terms of increased lipid peroxidation, superoxide dismutase activity, and zinc levels; (2) there is a major impairment of the glutathione pathway in Parkinson's disease; and (3) alterations in reduced glutathione levels may occur very early in the illness.Keywords
This publication has 31 references indexed in Scilit:
- Irreversible Inhibition of Mitochondrial Complex I by 1‐Methyl‐4‐Phenylpyridinium: Evidence for Free Radical InvolvementJournal of Neurochemistry, 1992
- ALTERATIONS IN THE LEVELS OF IRON, FERRITIN AND OTHER TRACE METALS IN PARKINSON'S DISEASE AND OTHER NEURODEGENERATIVE DISEASES AFFECTING THE BASAL GANGLIABrain, 1991
- Increased Nigral Iron Content and Alterations in Other Metal Ions Occurring in Brain in Parkinson's DiseaseJournal of Neurochemistry, 1989
- Transition Metals, Ferritin, Glutathione, and Ascorbic Acid in Parkinsonian BrainsJournal of Neurochemistry, 1989
- 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) and free radicals in vitroBiochemical Pharmacology, 1988
- Increased iron (III) and total iron content in post mortem substantia nigra of parkinsonian brainJournal Of Neural Transmission-Parkinsons Disease and Dementia Section, 1988
- Biochemical Events in the Development of Parkinsonism Induced by 1‐Methyl‐4‐Phenyl‐1,2,3,6‐TetrahydropyridineJournal of Neurochemistry, 1987
- Selective nigral toxicity after systemic administration of 1-methyl-4-phenyl-1,2,5,6-tetrahydropyrine (MPTP) in the squirrel monkeyBrain Research, 1984
- A primate model of parkinsonism: selective destruction of dopaminergic neurons in the pars compacta of the substantia nigra by N-methyl-4-phenyl-1,2,3,6-tetrahydropyridine.Proceedings of the National Academy of Sciences, 1983
- Chronic Parkinsonism in Humans Due to a Product of Meperidine-Analog SynthesisScience, 1983