696
Views
174
CrossRef citations to date
0
Altmetric
Original

Age-associated analysis of oxidative stress parameters in human plasma and erythrocytes

, , , , , & show all
Pages 495-505 | Received 09 Nov 2005, Published online: 07 Jul 2009

References

  • Özben T. Oxidative stress and antioxidants in ageing. Frontiers in neurodegenerative disorder and ageing: Fundamental aspects, clinical perspectives and new insights, T Özben, M Chevion. IOS press. 2004; 99–115
  • Hughes KA, Reynolds RM. Evolutionary and mechanistic theories of aging. Annu Rev Entomol 2005; 50: 421–425
  • Troen BR. The biology of aging. Mt. Sinai. J Med 2003; 70: 3–22
  • Harman D. Ageing: A theory based on free radical and radiation chemistry. J Gerontol 1956; 11: 298–300
  • de Souza-Pinto NC, Bohr VA. The mitochondrial theory of aging: Involvement of mitochondrial DNA damage and repair. Int Rev Neurobiol 2002; 53: 519–534
  • Junqueira VB, Barros SB, Chan SS, Rodriguez L, Giavarotti L, Abud RL, Deucher GP. Aging and oxidative stress. Mol Aspects Med 2004; 25: 5–16
  • Beckman KB, Ames BN. The free radical theory of aging matures. Physiol Rev 1998; 78: 547–581
  • Lenaz G. The mitochondrial production of reactive oxygen species: Mechanism and implications in human pathology. IUBMB Life 2001; 52: 159–164
  • Harper ME, Bevilacqua L, Hagopian K, Weindruch R, Ramsey JJ. Ageing, oxidative stress, and mitochondrial uncoupling. Acta Physiol Scand 2004; 182: 321–331
  • Droge W. Free radicals in the physiological control of cell function. Physiol Rev 2002; 82: 47–95
  • Stadtman ER. Role of oxidant species in aging. Curr Med Chem 2004; 11: 1105–1112
  • Genova ML, Pich MM, Bernacchia A, Bianchi C, Biondi A, Bovina C, Falasca AI, Formiggini G, Castelli GP, Lenaz G. The mitochondrial production of reactive oxygen species in relation to aging and pathology. Ann NY Acad Sci 2004; 1011: 86–100
  • Phillips M, Cataneo RN, Greenberg J, Gunawardena R, Rahbari-Oskoui F. Increased oxidative stress in younger as well as in older humans. Clin Chim Acta 2003; 328: 83–86
  • Melov S. Animal models of oxidative stress, aging, and therapeutic antioxidant interventions. Int J Biochem Cell Biol 2002; 34: 1395–1400
  • Inal ME, Kanbak G, Sunal E. Antioxidant enzyme activities and malondialdehyde levels related to aging. Clin Chim Acta 2001; 305: 75–80
  • Judge S, Jang YM, Smith A, Hagen T, Leeuwenburgh C. Age-associated increases in oxidative stress and antioxidant enzyme activities in cardiac interfibrillar mitochondria: Implications for the mitochondrial theory of aging. FASEB J 2005; 19: 419–421
  • Levine RL, Stadtman ER. Protein modifcations with aging. Handbook of the biology of aging, EL Schneider, JW Rowe. Academic Press, San Diego, CA 1996; 184–197
  • Esterbauer H, Cheeseman KH. Lipid peroxidation: Pathological implications. Chem Phys Lipids 1987; 45: 103–107
  • Barja G. Rate of generation of oxidative stress-related damage and animal longevity. Free Radic Biol Med 2002; 33: 1167–1172
  • Bonnefont-Rousselot D, Therond P, Beaudeux JL, Peynet J, Legrand A, Delattre J. Aging and oxidative stress. Which potential markers?. Ann Biol Clin 2001; 59: 453–459
  • Stadtman ER. Importance of individuality in oxidative stress and aging. Free Radic Biol Med 2002; 33: 597–604
  • Camougrand N, Rigoulet M. Aging and oxidative stress: Studies of some genes involved both in aging and in response to oxidative stress. Respir Physiol 2001; 128: 393–401
  • Richard MJ, Roussel AM. Micronutrients and ageing: Intakes and requirements. Proc Nutr Soc 1999; 58: 573–578
  • Leeuwenburgh C, Heinecke JW. Oxidative stress and antioxidants in exercise. Curr Med Chem 2001; 8: 829–838
  • Sohal RS, Ku HH, Agarwal S, Forster MJ, Lal H. Oxidative damage, mitochondrial oxidant generation and antioxidant defenses during aging and in response to food restriction in the mouse. Mech Aging Dev 1994; 74: 121–133
  • Bejma J, Li LL. Aging and acute exercise enhance free radical generation in rat skeletal muscle. J Appl Physiol 1999; 87: 465–470
  • Jones DP, Mody VC, Carlson JL, Lynn MJ, Sternberg P. Redox analysis of human plasma allows separation of pro-oxidant events of aging from decline in antioxidant defenses. Free Radic Biol Med 2002; 33: 1290–1300
  • Ozbay B, Dulger H. Lipid peroxidation and antioxidant enzymes in Turkish population: Relation to age, gender, exercise, and smoking. Tohoku J Exp Med 2002; 197. 124
  • Erden-Inal M, Sunal E, Kanbak G. Age-related changes in the glutathione redox system. Cell Biochem Funct 2002; 20: 61–66
  • Junqueira VBC, Barros BBM, Chan SS, Rodrigues L, Giavarotti L, Abud RL, Deucher GP. Aging and oxidative stress. Mol Aspect Med 2004; 25: 5–16
  • Poubelle P, Chaintreuil J, Bensadoun J, Blotman F, Simon L, Crastes de Paulet A. Plasma lipoperoxides and aging. Biomedicine 1982; 36: 164–167
  • Kim JW, No JK, Yu BP, Chung HY. Analysis of redox status in serum during aging. Healthy aging for functional longevity: Molecular and cellular interactions in senescence, S Chul Park, E Seong Hwang, HS Kim, WY Park. NY Acad Sci. 2001; 298: 350
  • Esterbauer H, Cheeseman KH, Dianzani MU, Poli G, Slater TF. Separation and characterization of the aldehydic products of lipid peroxidation stimulated by ADP-Fe2+ in rat liver microsomes. J Biochem 1982; 208: 129–140
  • Grune T, Siems WG, Zollner H, Esterbauer H. Metabolism of 4-hydroxynonenl, a cytotoxic lipid peroxidation product, in Ehrlich mouse ascites cells at different proliferation stages. Cancer Res 1994; 54: 5231–5235
  • Wong SHJ, Knight JA, Hopfer SM, Zaharia O, Leach CN, Sunderman FW. Lipoperoxides in plasma as measured by liquid-chromatographic separation of malondialdehyde–thiobarbituric acid adduct. Clin Chem 1987; 33: 214–220
  • Sommerburg O, Grune T, Klee S, Ungemach FR, Siems WG. Formation of 4-hydroxynonenal and further aldehydic mediators of inflammation during bromo-trichloromethane treatment of rat liver cells. Mediat Inflamm 1993; 2: 27–31
  • Siems WG, Brenke R, Sommerburg O, Grune T. Improved antioxidative protection in winter swimmers. Q J Med 1999; 92: 193–198
  • Beutler E, Duron O, Kelly BM. Improved method for the determination of blood glutathione. J Lab Clin Med 1963; 61: 882–886
  • Hissin PJ, Hilf R. A fluorimetric method for determination of oxidised and reduced glutathione in tissues. Anal Biochem 1976; 74: 371–377
  • Schafer FQ, Buettner GR. Redox environment of the cell as viewed through the redox state of the glutathione disulfide/glutathione couple. Free Radic Biol Med 2001; 30: 1191–1212
  • Bergmeyer HU. Method of enzymatic analysis. Beertfield Beach. Verlag Chemie Int., Florida 1981
  • Buss H, Chan TP, Sluis KB, Domingan NM, Witerbourn CC. Protein carbonyls measurement by a sensitive ELISA method. Free Radic Biol Med 1997; 23: 361–366
  • Sitte N, Merker K, Grune T. Proteasome-dependent degradation of oxidized protein in MRC-5 fibroblasts. FEBS Lett 1998; 440: 399–402
  • IFCC. The theory of reference values. Part 5. Statistical treatment of collected reference values: Determination of reference limits. J Clin Chem Clin Biochem 1983; 21: 749–760
  • Solberg HE. Establishment and use of reference values. Tietz textbook of clinical chemistry2nd, CA Burtis, ER Ashwood. WB Saunders, Philadelphia 1994; 454–484
  • Siems WG, Brenke R, Sommerburg O, Grune T. Oxidative stress in chronic lymphoedema. Q J Med 2002; 95: 803–809
  • Siems WG, Brenke R, Sommerburg O, Grune T. Improved antioxidative protection in winter swimmers. Q J Med 1999; 92: 193–198
  • Adams JM, White M. Biological ageing: A fundamental, biological link between socio-economic status and health?. Eur J Public Health 2004; 14: 331–334
  • Lane N. A unifying view of ageing and disease: The double-agent theory. J Theor Biol 2003; 225: 531–540
  • Griffiths HR, Moller L, Bartosz G, Bast A, Bertoni-Freddari C, Collins A, Cooke M, Coolen S, Haenen G, Hoberg AM, Loft S, Lunec J, Olinski R, Parry J, Pompella A, Poulsen H, Verhagen H, Astley SB. Biomarkers. Mol Aspects Med 2002; 23: 101–208
  • Merry BJ. Oxidative stress and mitochondrial function with aging—the effects of calorie restriction. Ageing Cell 2004; 3: 7–12
  • Sampayo JN, Gill MS, Lithgow GJ. Oxidative stress and aging—the use of superoxide dismutase/catalase mimetics to extend lifespan. Biochem Soc Trans 2003; 31: 1305–1307
  • Grune T, Shringarpure R, Sitte N, Davies KJA. Age related changes in protein oxidation and proteolysis in mammalian cells. J Gerontol A Biol Sci Med Sci 2001; 56: B459–B467
  • Dean RT, Shanlin F, Stocker R, Davies MJ. Biochemistry and pathology of radical-mediated protein oxidation. Biochem J 1997; 324: 1–18
  • Stadtman E. Protein oxidation in aging and age-related diseases. Ann NY Acad Sci 2001; 298: 22–38
  • Grune T, Davies KJA. Oxidative processes in aging. Handbook of the biology of aging5th. Academic Press. 2001; 25–58
  • Grune T, Jung K, Merker K, Davies KJA. Decreased proteolysis caused by protein aggregation, inclusion bodies, plaques, lipofuscin, ceroid and “aggresomes” during oxidative stress, aging and disease. Int J Biochem Cell Biol 2004; 36: 2519–2530
  • Aejemelaeus RT, Holm P, Kaukinen U, Metsa-Ketela TJ, Laippala P, Hervonen AL, Alho HE. Age related changes in the peroxyl radical scavenging capacity of human plasma. Free Radic Biol Med 1997; 23: 69–75
  • Feillet-Coudray C, Tourtauchaux R, Niculescu M, Rock E, Tauveron I, Alexandre-Gouabau MC, Rayssiguier Y, Jalenques I, Mazur A. Plasma levels of 8-epiPGF2 alpha, an in vivo marker of oxidative stress are not affected by aging or Alzheimer's disease. Free Radic Biol Med 1999; 27: 463–469
  • Diaz J, Serrano E, Acosta F, Carbonell LF. Reference intervals for four biochemistry analytes in plasma for evaluating oxidative stress and lipid peroxidation in human plasma. Clin Chem 1998; 44: 2215–2217
  • Yang CS, Chou ST, Liu L, Tsai PJ, Kuo JS. Effect of ageing on human plasma glutathione concentrations as determined by high-perfornance liquid chromatography with fluorimetric detection. J Chromatogr B Biomed Appl 1995; 674: 23–30
  • Borras C, Gambini J, Gomez-Cabrera MC, Sastre J, Pallardo FV, Mann GE, Vina J. 17beta-oestradiol up-regulates longevity-related, antioxidant enzyme expression via ERK1 and ERK2[MAPK]/NFkappaB cascarde. Aging Cell 2005; 4: 113–118
  • Vina J, Borras C, Gambini J, Sastre J, Pallardo FV. Why females live longer than males? Importance of upregulation of longevity-associated genes by oestrogenic compounds. FEBS Lett 2005; 579: 2541–2545
  • Block G, Dietrich M, Norkus EP, Packer L. Oxidative stress in humans populations. Critical reviews of oxidative stress and aging: Advances in basic science, diagnostic and interventions, RG Cutler, H Rodriguez. World Scientific Publishing, Singapore 2003; 870–880

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.