Melatonin in Alzheimer's disease and other neurodegenerative disorders

被引:170
作者
Srinivasan V. [1 ]
Pandi-Perumal S.R. [2 ]
Cardinali D.P. [3 ]
Poeggeler B. [4 ]
Hardeland R. [4 ]
机构
[1] Department of Physiology, School of Medical Sciences, University Sains Malaysia, 16150 Kubang kerian, Kelantan, Kampus Kesihatan
[2] Comprehensive Center for Sleep Medicine, Division of Pulmonary Critical Care and Sleep Medicine, Mount Sinai School of Medicine, New York, NY 10029
[3] Departamento de Fisiología, Facultad de Medicina, Universidad de Buenos Aires, Buenos Aires
[4] Johann Friedrich Blumenbach Institute of Zoology and Anthropology, University of Goettingen, D-37073 Goettingen
关键词
Melatonin; Quinolinic Acid; Melatonin Level; Internal Globus Pallidus; Melatonin Secretion;
D O I
10.1186/1744-9081-2-15
中图分类号
学科分类号
摘要
Increased oxidative stress and mitochondrial dysfunction have been identified as common pathophysiological phenomena associated with neurodegenerative disorders such as Alzheimer's disease (AD), Parkinson's disease (PD) and Huntington's disease (HD). As the age-related decline i the production of melatonin may contribute to increased levels of oxidati stress in the elderly, the role of this neuroprotective agent is attracting increasing attention. Melatonin has multiple actions as a regulator of antioxidant and prooxidant enzymes, radical scavenger and antagonist o mitochondrial radical formation. The ability of melatonin and its kynuran metabolites to interact directly with the electron transport chain by increasing the electron flow and reducing electron leakage are unique features by which melatonin is able to increase the survival of neurons under enhanced oxidative stress. Moreover, antifibrillogenic actions haves been demonstrated in vitro, also in the presence of profibrillogenic apoE apoE3, and in vivo, in a transgenic mouse model. Amyloid-β toxicity is antagonized by melatonin and one of its kynuramine metabolites. Cytoskeletal disorganization and protein hyperphosphorylation, as induce in several cell-line models, have been attenuated by melatonin, effects comprising stress kinase downregulation and extending to neurotrophin expression. Various experimental models of AD, PD and HD indicate the usefulness of melatonin in antagonizing disease progression and/or mitigating some of the symptoms. Melatonin secretion has been found to altered in AD and PD. Attempts to compensate for age- and disease-dependent melatonin deficiency have shown that administration of this compound can improve sleep efficiency in AD and PD and, to some extent, cognitive function in AD patients. Exogenous melatonin has also been reported to alleviate behavioral symptoms such as sundowning. Taken together, these findings suggest that melatonin, its analogues and kynuric metabolites may have potential value in prevention and treatment of AD and other neurodegenerative disorders. © 2006 Srinivasan et al; licensee BioMed Central Ltd.
引用
收藏
相关论文
共 167 条
[1]  
Harman D., Aging: A theory based on free radical radiation chemistry, J Gerontol, 11, pp. 298-300, (1956)
[2]  
Vollicer L., Crino B., Involvement of free radicals in dementia of the Alzheimer's type: A hypothesis, Neurobiol Aging, 11, pp. 567-571, (1990)
[3]  
Pappolla M.A., Omar R.A., Kim R.S., Robakis N.K., Immunohistochemical evidence of oxidative stress in Alzheimer's disease, Am J Pathol, 140, pp. 621-628, (1992)
[4]  
Reiter R.J., Oxidative processes and antioxidative defense mechanism in the aging brain, FASEB J, 9, pp. 526-533, (1995)
[5]  
Markesbery W., Oxidative stress hypothesis in Alzheimer's disease, Free Radic Biol Med, 23, pp. 134-147, (1997)
[6]  
Christen Y., Oxidative stress and Alzheimer's disease, Am J Clin Nutr, 71, (2000)
[7]  
Smith M.A., Rottkamp C.A., Nunomura A., Raina A.K., Perry G., Oxidative stress in Alzheimer's disease, Biochim Biophys Acta, 1502, pp. 139-144, (2000)
[8]  
Srinivasan V., Melatonin oxidative stress and neurodegenerative diseases, Indian J Exp Biol, 40, pp. 668-679, (2002)
[9]  
Srinivasan V., Pandi-Perumal S.R., Maestroni G.J.M., Esquifino A.I., Hardeland Cardinali D.P., Role of melatonin in neurodegenerative diseases, Neurotox Res, 7, pp. 293-318, (2005)
[10]  
Subbarao K.V., Richardson J.S., Ang L.S., Autopsy samples of Alzheimer's cortex show increased peroxidation in vitro, J Neurochem, 55, pp. 342-345, (1990)