Publication Cover
Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 24, 2007 - Issue 4
195
Views
18
CrossRef citations to date
0
Altmetric
Original

Malondialdehyde Content and Circadian Variations in Brain, Kidney, Liver, and Plasma of Mice

, , , , , & show all
Pages 671-685 | Received 17 Nov 2006, Accepted 16 Mar 2007, Published online: 07 Jul 2009

References

  • Akubue P I, Bagchi D, Ihm W J, Stohs S J. Excretion of malondialdehyde, formaldehyde, acetaldehyde, acetone and methyl ethyl ketone in the urine of rats given an acute dose of malondialdehyde. Arch. Toxicol. 1994; 68: 338–341
  • Alila‐Johansson A, Eriksson L, Soveri T, Laakso M. The daily rhythms of melatonin and free fatty acids in goats under varying photoperiods and constant darkness. Chronobiol. Int. 2006; 23: 565–581
  • Baskar A A, Manoharan S, Manivasagam T, Subramanian P. Temporal patterns of lipid peroxidation product formation and antioxidants activity in oral cancer patients. Cell. Mol. Biol. Lett. 2004; 9: 665–673
  • Baydas G, Ercel E, Canatan H, Donder E, Akyol A. Effect of melatonin on oxidative status of rat brain, liver and kidney tissues under constant light exposure. Cell. Biochem. Funct. 2001; 19: 37–41
  • Baydas G, Gursu M F, Yilmaz S, Canpolat S, Yasar A, Cikim G, Canatan H. Daily rhythm of glutathione peroxidase activity, lipid peroxidation and glutathione levels in tissues of pinealectomized rats. Neurosci. Lett. 2002; 323: 195–198
  • Bélanger P M. Chronobiological variations in the hepatic elimination of drugs and toxic chemical agents. Annu. Rev. Chronopharmacol. 1986; 4: 1–46
  • Bingham C, Arbogast B, Cornélissen‐Guillaume G, Lee J K, Halberg F. Inferential statistical methods for estimating and comparing cosinor parameters. Chronobiologia 1982; 9: 397–439
  • Buege J A, Aust S D. Microsomal lipid peroxidation. Methods Enzymol. 1978; 52: 302–310
  • Burioka N, Miyata M, Endo M, Fukuoka Y, Suyama H, Nakazaki H, Igawa K, Shimizu E. Alteration of the circadian rhythm in peak expiratory flow of nocturnal asthma following nighttime transdermal beta2‐adrenoceptor agonist tulobuterol chronotherapy. Chronobiol. Int. 2005; 22: 383–390
  • Cal J C, Dorian C, Cambar J. Circadian and circaannual changes in nephrotoxic effects of heavy metals and antibiotics. Annu. Rev. Chronopharmacol. 1986; 2: 143–176
  • Cao G, Chen J. Effects of dietary Zn in free radical generation, lipid peroxidation and superoxide dismutase in trained mice. Arch. Biochem. Biophys. 1991; 291: 147–153
  • Ceballos‐Picot I, Triver J M, Nicole A, Sinet P M, Thevenin M. Age‐related modifications of coper‐zinc superoxide dismutase and glutathione‐related enzyme activities in human erythrocytes. Clin. Chem. 1992; 38: 66–70
  • Choi S W, Benie I FF, Collins A R, Hannigan B M, Strain J J. Vitamins C and E: acute interactive effects on biomarkers of antioxidant defence and oxidative stress. J. Mutat. Res. 2004; 551: 109–117
  • Cochrane C G. Mechanisms of oxidant injury of cells. Mol. Aspects Med. 1991; 12: 137–147
  • De Prins J, Waldura J. Sightseeing around the single cosinor. Chronobiol. Int. 1993; 10: 395–400
  • De Prins J, Cornélissen G, Malbecq W. Statistical procedures in chronobiology and chronopharmacology. Annu. Rev. Chronopharmocol. 1986; 2: 27–141
  • Desagné M, Bélanger P M. Chronohepatotoxicity of styrene in rat. Annu. Rev. Chronopharmacol. 1985; 3: 103–106
  • Drew B, Leeuwenburgh C. Aging and the role of reactive nitrogen species. Ann. N.Y. Acad. Sci. 2002; 959: 66–81
  • Dringen R. Metabolism and function of glutathione in brain. Prog. Neurobiol. 2000; 62: 649–671
  • Esterbauer H, Schaur R J, Zollner H. Chemistry and biochemistry of 4‐hydroxynonenal, malondialdehyde and related aldehydes. Free Radic. Biol. Med. 1991; 11: 81–128
  • Frederickson C J. Neurobiology of Zn and Zn‐containing neurons. Int. Rev. Neurobiol. 1989; 31: 145–238
  • Galisteo M, Garcia‐Sauara M F, Jimenez R, Villar I C, Zarzuelo A, Vargas F, Duarte J. Effects of chronic quercetin treatment on antioxidant defence system and oxidative status of deoxycorticosterone acetate‐salt‐hypertensive rats. Mol. Cell. Biochem. 2004; 259: 91–99
  • Hagihara M, Nishigaki I, Maseki M, Yagi K. Age‐dependent changes in lipid peroxide levels in lipoprotein fractions of human serum. J. Gerontol. 1984; 39: 269–272
  • Halberg F, Reinberg A. Rythmes circadiens et rythmes de basses fréquences en physiologie humaine. J. Physiol. (Paris) 1967; 59: 117–200
  • Halberg F, Carandente F, Cornélissen G, Katinas G S. Glossary of chronobiology. Chronobiologia 1977; 4(Suppl.1)1–189
  • Halliwell B, Gutteridge J MC. Free Radicals in Biology and Medicine2nd. Clarendon Press, Oxford 1989; 543
  • Hardeland R, Balzer I, Poeggeler B, Fuhrberg B, Uria H, Behrmann G, Wolf R, Meyer T J, Reiter R J. On the primary functions of melatonin in evolution: mediation of photoperiodic signals in a unicell, photooxidation, and scavenging of free radicals. J. Pineal Res. 1995; 18: 104–111
  • Hardeland R, Coto‐Montes A, Poeggeler B. Circadian rhythms, oxidative stress, and antioxidative defense mechanisms. Chronobiol. Int. 2003; 20: 921–962
  • Hartree E F. Determination of protein: a modification of the Lowry method that gives a linear photometric response. Anal. Biochem. 1972; 48: 422–427
  • Hulbert A J, Turner N, Hinde J, Else P, Guderley H. How might you compare mitochondria from different tissues and different species?. J. Comp. Physiol. B 2006; 176: 93–105
  • Jentzsch A M, Bachmann H, Furst P, Biesalski H K. Improved analysis of malondialdehyde in human body fluids. Free Radic. Biol. Med. 1996; 20: 251–256
  • Kehrer J P, Smith C V. Free radicals in biology: sources, reactivities, and roles in the etiology of human diseases. Natural Antioxidants in Human Health and Disease, B Frei. Academic Press, San Diego, Calif. 1994; 25–62
  • Kosugi H, Kojima T, Kikugawa K. Characterics of the thiobarbituric acid reactivity of human urine as a possible consequence of lipid peroxidation. Lipids 1993; 28: 337–343
  • Kotler M, Rodriguez C, Sainz R M, Antolin I, Menendez‐Pelaez A. Melatonin increases gene expression for antioxidant enzymes in rat brain cortex. J. Pineal Res. 1998; 24: 83–89
  • Kumari S S, Menon V P. Changes in concentrations of lipid peroxides and activities of superoxide dismutase and catalase in isoproterenol induced myocardial infarction in rats. Ind. J. Exp. Biol. 1987; 25: 419–423
  • Lapenna D, Ciofani G, Pierdomenico S D, Giamberardino M A, Cuccurullo F. Reaction conditions affecting the relationship between thiobarbituric acid reactivity and lipid peroxides in human plasma. Free Radic. Biol. Med. 2001; 31: 331–335
  • Lavigne J G, Bélanger P M, Doré F, Labrecque G. Temporal variations in chloroform‐induced hepatotoxicity in rats. Toxicology 1983; 26: 267–273
  • Lin X, Xue L Y, Wang R Y, Zao Q Y, Chen Q. Protective effects of endomorphins, endogenous opioid peptides in the brain, on human low density lipoprotein oxidation. FEBS J. 2006; 273: 1275–1284
  • Liu D, Peddada S D, Li L, Weinberg C R. Phase analysis of circadian‐related genes in two tissues. BMC Bioinformatics 2006; 7: 87
  • Lowry O R, Rosebrough N J, Farr A L, Randall R A. Protein measurements with the Folin's phenol reagent. J. Biol. Chem. 1951; 193: 256–273
  • Luo H, Guo H, Xiao J, Xue Z. Circadian variations of plasma SOD and MDA in healthy subjects. Hua Xi Yi Ke Da Xue Xue Bao. 1997; 28: 401–403
  • Maggi‐Capeyron M F, Cases J, Badia E, Cristol J P, Rouanet J M, Besançon P, Descomps C B. A diet high in cholesterol and deficient in vitamin E induces lipid peroxidation but does not enhance antioxidant enzyme expression in rat liver. J. Nutr. Biochem. 2002; 13: 296–301
  • Manoharan S, Baskar A A, Manivasagam T, Subramanian P. Circadian rhythmicity of plasma lipid peroxidation and antioxidants in oral squamous cell carcinoma. Singapore Med. J. 2005a; 46: 184–188
  • Manoharan S, Kolanjiappan K, Suresh K, Panjamurthy K. Lipid peroxidation and antioxidants status in patients with oral squamous cell carcinoma. Indian J. Med. Res. 2005b; 122: 529–534
  • Mantle D, Preedy V R. Free radicals as mediators of alcohol toxicity. Adverse Drug React. Toxicol. Rev. 1999; 18: 235–252
  • Martin C, Dutertre‐Catella H, Radionoff M, Debray M, Benstaali C, Rat P, Thevenin M, Touitou Y, Warnet J M. Effect of age and photoperiodic conditions on metabolism and oxidative stress related markers at different circadian stages in rat liver and kidney. Life Sci. 2003; 73: 327–335
  • Mediavilla M D, Diez de Teran C, Sanchez‐Barcelo E H. Daily rhythms and age‐dependent changes in serum total antioxidant activity in rats. Influence of the pineal gland. INABIS '98—5th Internet World Congress on Biomedical Sciences. McMaster University, Canada 1998, Available at http://www.mcmaster.ca/inabis98/oxidative/mediavilla0423/index.html
  • Moore R Y, Speh J C. GABA is the principal neurotransmitter of the circadian system. Neurosci. Lett. 1993; 150: 112–116
  • Myers S T, Wang L, Liu F, Bartula L L. Oxygen‐radical regulation of renal blood following suprarenal aortic clamping. J. Vasc. Surg. 2006; 43: 577–586
  • Nelson W, Tong Y L, Lee J K, Halberg F. Methods for cosinor‐rhythmometry. Chronobiologia 1979; 6: 305–323
  • Pal B K, Fulkarni S, Bhandari Y, Ganesh B B, Goswami K, Redy M V. Lymphatic filariasis: possible pathophysiological nexus with oxidative stress. Trans. R. Soc. Trop. Med. Hyg. 2006; 100: 650–655
  • Reinberg A, Smolensky M H. Investigate methodology for chronobiology. Biological Rhythms and Medicine. Cellular, Metabolic, Physiopathologic and Pharmacologic Aspects, A Reinberg, M H Smolensky. Springer‐Verlag, New York 1983; 20–46
  • Reiter R J. Oxidative processes and antioxidative defense mechanisms in the aging brain. FASEB J. 1995; 9: 526–533
  • Reiter R J. Oxidative damage in the central nervous system: protection by melatonin. Prog. Neurobiol. 1998; 56: 359–384
  • Reiter R J, Tang L, Garcia J J, Munoz‐Hoyos A. Pharmacological actions of melatonin in oxygen radical pathophysiology. Life Sci. 1997; 60: 2255–2271
  • Reiter R J, Tan D X, Cabrera J, D'Arpa D, Sainz R M, Mayo J C, Ramos S. The oxidant/antioxidant network: role of melatonin. Biol. Signals Recept. 1999; 8: 56–63
  • Rikans L E, Hornbrook K R. Lipid peroxidation, antioxidant protection and aging. Biochim. Biophys. Acta 1997; 1362: 116–127
  • Sani M, Sebaï H, Gadacha W, Boughattas N A, Reinberg A, Ben Attia M. Catalase activity and rhythmic patterns in mouse brain, kidney and liver. Comp. Biochem. Physiol. B 2006; 145: 331–337
  • Satoh K. Serum lipid peroxide in cerebrovascular disorders determined by a new colorimetric method. Clin. Chim. Acta 1978; 90: 37–43
  • Sohal R S. Mitochondria generate superoxide anion radicals and hydrogen peroxide. FASEB J. 1997; 11: 1269–1270
  • Solar P, Toth G, Smajda B, Ahlers I, Ahlersova E. Circadian and circaannual oscillations of tissue lipoperoxides in rats. Physiol. Res. 1995; 44: 249–256
  • Southorn P A, Powis G. Free radicals in medecine. I. Chemical nature and biologic reactions. Mayo Clin. Proc. 1988; 63: 381–389
  • Subramanian P, Sivabalan S, Venugopal P M, Vasudevan K. Influence of chronic zinc supplementation on biochemical variables and circadian rhythms in wistar rats. Nutr. Res. 2000; 20: 413–425
  • Touitou Y, Bogdan A, Haus E, Touitou C. Modifications of circadian and circannual rhythms with aging. Exp. Gerontol. 1997; 32: 603–614
  • Touitou Y, Smolensky M H, Portaluppi F. Ethics, standards, and procedures of animal and human chronobiology research. Chronobiol. Int. 2006; 23: 1083–1096
  • Warren L. The thiobarbituric acid assay of sialic acids. J. Biol. Chem. 1959; 234: 1971–1975
  • Yokoyama H, Jensen J S, Jensen T, Deckert T. Serum sialic acid concentration is elevated in IDDM especially in early diabetic nephropathy. J. Intern. Med. 1995; 237: 519–523

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.