Oxidative stress and the pathogenesis of Parkinson's disease

被引:755
作者
Jenner, P [1 ]
Olanow, CW [1 ]
机构
[1] MT SINAI SCH MED,DEPT NEUROL,NEW YORK,NY
关键词
D O I
10.1212/WNL.47.6_Suppl_3.161S
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Current concepts of the pathogenesis of Parkinson's disease (PD) center on the formation of reactive oxygen species and the onset of oxidative stress leading to oxidative damage to substantia nigra pars compacta. Extensive postmortem studies have provided evidence to support the involvement of oxidative stress in the pathogenesis of PD; in particular, these include alterations in brain iron content, impaired mitochondrial function, alterations in the antioxidant protective systems (most notably superoxide dismutase [SOD] and reduced glutathione [GSH]), and evidence of oxidative damage to lipids, proteins, and DNA. Iron can induce oxidative stress, and intranigral injections have been shown to induce a model of progressive parkinsonism. A loss of GSH is associated with incidental Lewy body disease and may represent the earliest biochemical marker of nigral cell loss. GSH depletion alone may not result in damage to nigral neurons but may increase susceptibility to subsequent toxic or free radical exposure. The nature of the free radical species responsible for cell death in PD remains unknown, but there is evidence of involvement of hydroxyl radical (OH.), peroxynitrite, and nitric oxide. Indeed, OH. and peroxynitrite formation may be critically dependent on nitric oxide formation. Central to many of the processes involved in oxidative stress and oxidative damage in PD are the actions of monoamine oxidase-B (MAO-B). MAO-B is essential for the activation of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine to 1-methyl-4-phenylpyridinium ion, for a component of the enzymatic conversion of dopamine to hydrogen peroxide (H2O2), and for the activation of other potential toxins such as isoquinolines and beta-carbolines. Thus, the inhibition of MAO-B by drugs such as selegiline may protect against activation of some toxins and free radicals formed from the MAO-B oxidation of dopamine. In addition, selegiline may act through a mechanism unrelated to MAO-B to increase neurotrophic factor activity and upregulate molecules such as glutathione, SOD, catalase, and BCL-2 protein, which protect against oxidant stress and apoptosis. Consequently, selegiline may be advantageous in the long-term treatment of PD.
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页码:S161 / S170
页数:10
相关论文
共 128 条
[51]   EVIDENCE FOR NITRIC OXIDE-MEDIATED OXIDATIVE DAMAGE IN CHRONIC INFLAMMATION - NITROTYROSINE IN SERUM AND SYNOVIAL-FLUID FROM RHEUMATOID PATIENTS [J].
KAUR, H ;
HALLIWELL, B .
FEBS LETTERS, 1994, 350 (01) :9-12
[52]  
KELLY PAT, 1995, J CEREBRAL BLOOD FLO, V12, P311
[53]  
KINDT MV, 1988, EUR J PHARMACOL, V146, P313
[54]   GLUTATHIONE-PEROXIDASE ACTIVITY IN PARKINSONS-DISEASE BRAIN [J].
KISH, SJ ;
MORITO, C ;
HORNYKIEWICZ, O .
NEUROSCIENCE LETTERS, 1985, 58 (03) :343-346
[55]  
KOKOTOS, 1996, SOC NEUR ABSTR
[56]  
Lai C T, 1994, J Neural Transm Suppl, V41, P221
[57]   NORMAL MITOCHONDRIAL GENOME IN BRAIN FROM PATIENTS WITH PARKINSONS-DISEASE AND COMPLEX-I DEFECT [J].
LESTIENNE, P ;
NELSON, J ;
RIEDERER, P ;
JELLINGER, K ;
REICHMANN, H .
JOURNAL OF NEUROCHEMISTRY, 1990, 55 (05) :1810-1812
[58]   THE IRON-BINDING PROTEIN LACTOTRANSFERRIN IS PRESENT IN PATHOLOGICAL LESIONS IN A VARIETY OF NEURODEGENERATIVE DISORDERS - A COMPARATIVE IMMUNOHISTOCHEMICAL ANALYSIS [J].
LEVEUGLE, B ;
SPIK, G ;
PERL, DP ;
BOURAS, C ;
FILLIT, HM ;
HOF, PR .
BRAIN RESEARCH, 1994, 650 (01) :20-31
[59]  
MACKENZIE GM, 1996, NITRIC OXIDE SYNTHAS
[60]   COMPLEX-I, IRON, AND FERRITIN IN PARKINSONS-DISEASE SUBSTANTIA-NIGRA [J].
MANN, VM ;
COOPER, JM ;
DANIEL, SE ;
SRAI, K ;
JENNER, P ;
MARSDEN, CD ;
SCHAPIRA, AHV .
ANNALS OF NEUROLOGY, 1994, 36 (06) :876-881