Oxidative Stress, Accumulation of Biological 'Garbage', and Aging
- 1 January 2006
- journal article
- review article
- Published by Mary Ann Liebert Inc in Antioxidants and Redox Signaling
- Vol. 8 (1-2), 197-204
- https://doi.org/10.1089/ars.2006.8.197
Abstract
Normal metabolism is associated with unavoidable mild oxidative stress resulting in biomolecular damage that cannot be totally repaired or removed by cellular degradative systems, including lysosomes, proteasomes, and cytosolic and mitochondrial proteases. Consequently, irreversibly damaged and functionally defective structures (biological 'garbage') accumulate within long-lived postmitotic cells, such as cardiac myocytes and neurons, leading to progressive loss of adaptability and increased probability of death and characterizing a process called aging, or senescence. Intralysosomal 'garbage' is represented by lipofuscin (age pigment), an undegradable autophagocytosed material, while extralysosomal 'garbage' involves oxidatively modified cytosolic proteins, altered biomembranes, defective mitochondria and other organelles. In aged postmitotic cells, heavily lipofuscin-loaded lysosomes perform poorly, resulting in the enhanced accumulation of defective mitochondria, which in turn produce more reactive oxygen species causing additional damage (the mitochondrial–lysosomal axis theory). Potential anti-aging strategies may involve not only overall reduction of oxidative stress, but also the use of intralysosomal iron chelators hampering Fenton-type chemistry as well as the stimulation of cellular degradative systems. Antioxid. Redox Signal. 8, 197–204.Keywords
This publication has 85 references indexed in Scilit:
- Reversal of a hallmark of brain ageing: lipofuscin accumulationNeurobiology of Aging, 2005
- Myocyte aging and mitochondrial turnoverExperimental Gerontology, 2004
- Somatic cell mutations: can they provide a link between aging and cancer?Mechanisms of Ageing and Development, 2000
- Mortality Patterns Suggest Lack of Senescence in HydraExperimental Gerontology, 1998
- Lipofuscin accumulation in cultured retinal pigment epithelial cells reduces their phagocytic capacityCurrent Eye Research, 1998
- Early appearance of age-associated deterioration in mitochondrial function of diaphragm and heart in rats treated with doxorubicinExperimental Gerontology, 1995
- Role of Glycation in AgingAnnals of the New York Academy of Sciences, 1992
- Intrinsic Mutagenesis: A Genetic Basis of AgeingPathology, 1974
- Electron microscopical studies on rat brain neurons. Localization of acid phosphatase and mode of formation of lipofuscin bodiesJournal of Ultrastructure Research, 1972
- Aging: A Theory Based on Free Radical and Radiation ChemistryJournal of Gerontology, 1956