Publication Cover
Redox Report
Communications in Free Radical Research
Volume 6, 2001 - Issue 3
203
Views
26
CrossRef citations to date
0
Altmetric
Research Articles

Influence of aging on Kupffer cell respiratory activity in relation to particle phagocytosis and oxidative stress parameters in mouse liver

, &
Pages 155-159 | Published online: 19 Jul 2013

  • Jungermann K. Functional heterogeneity of periportal and perivenous hepatocytes. Enzyme 1986; 35: 161–180.
  • Le Couteur DG, McLean AJ. The aging liver. Drug clearance and an oxygen diffusion barrier hypothesis. Clin Pharmacokinet 1998; 34: 359–373.
  • Blouin A, Bolender RP, Weibel ER. Distribution of organelles and membranes between hepatocytes and non-hepatocytes in rat liver parenchyma. J Cell Biol 1977; 72: 441–455.
  • Wisse E, Bract F, Luo D et al. Structure and function of sinusoidal lining cells in the liver. Toxicol Pathol 1996; 24: 100–111.
  • Decker K. Biologically active products of stimulated liver macrophages (Kupffer cells). Eur J Biochem 1990; 192: 245–261.
  • Wang J-F, Komarov P, de Groot H. Luminol chemiluminescence in rat macrophages and granulocytes: the role of NO, 02-/H202, and HOC1. Arch Biochem Biophys 1993; 304: 189–196.
  • Tsukamoto H, Lin M. The role of Kupffer cells in liver injury. In: Wisse E, Knook DL, Balabaud C. (eds) Cells of the Hepatic Sinusoid, vol. 6. Leiden: Kupffer Cell Foundation, 1997; 244-250.
  • Tapia G, Pepper I, Smok G, Videla LA. Kupffer cell function in thyroid hormone-induced liver oxidative stress in the rat. Free Radic Res 1997; 26: 267–279.
  • Tapia G, Troncoso P, Galleano M, Fernindez V, Puntarulo S, Videla LA. Time course study of the influence of acute iron overload on Kupffer cell functioning and hepatotoxicity assessed in the isolated perfused rat liver. Hepatology 1998; 27: 1311–1316.
  • Sans J, Aguilera AM, Faundez P, Troncoso P, Fernández V, Videla LA. Influence of copper-(1) on colloidal carbon-induced Kupffer cell-dependent oxygen uptake in rat liver: relation to hepatotoxicity. Free Radic Res 1999; 30: 489–498.
  • Hayflick L. The cellular basis for biological aging. In: Finch CE, Hayflick L. (eds) Handbook of the Biology of Aging. New York: Van Nostrand Reinhold, 1977; 159–179.
  • Harman D. The aging process. Proc Natl Acad Sci USA 1981; 78: 7124–7128.
  • Wynne HA, James OFW. The aging liver. Age Ageing 1990; 19: 1–3.
  • Varga F, Fisher A. Age dependent changes in blood supply of the liver and in the biliary excretion of eosine in rats. In: Kitani K. (ed) Liver and Aging. Amsterdam: Elsevier North Holland, 1978; 327–342.
  • Dini L, Lentini A, Devirgiliis LC. Binding and uptake of ligands for mannose-specific receptors in liver cells: an electron microscopic study during development and aging in rat. Mech Ageing Dev 1990; 56: 117–128.
  • Durham SK, Brouwer A, Barelds RJ, Horan MA, Knook DL. Comparative endotoxin-induced hepatic injury in young and aged rats. J Pathol 1990; 162: 341–349.
  • Martin G, Sewell RB, Yeomans ND, Morgan DJ, Smallwood RA. Hepatic Kupffer cell function: the efficiency of uptake and intracellular degradation of “C-labelled mitochondria is reduced in aged rats. Mech Ageing Dev 1994; 73: 157–168.
  • Yamano T, DeCicco LA, Rikans LE. Attenuation of cadmium-induced liver injury in senescent male Fisher 344 rats: role of Kupffer cells and inflammatory cytokines. Toxicol Appl Pharmacol 2000; 162: 68–75.
  • Knook DL, Brouwer A. Kupffer cells and the acute phase response: the effect of aging. Immunol Invest 1989; 18: 339–350.
  • Bergmeyer HU, Berra E. Lactate dehydrogenase. In: Bergmeyer HU. (ed) Methods of Enzymatic Analysis, vol. 2. New York: Academic Press, 1974; 574-579.
  • Cowper KB, Currin RT, Dawson TL, Lindert KA, Lemasters JJ, Thurman RG. A new method to monitor Kupffer-cell function continuously in the perfused rat liver. Biochem J 1990; 266: 141–147.
  • Tietze E Enzymatic method for quantitative determination of nanogram amounts of total and oxidized glutathione: applications to mammalian blood and other tissues. Anal Biochem 1969; 27: 502–522.
  • Lowry OH, Rosebrough NJ, Fan AL, Randall RJ. Protein measurement with the Folin phenol reagent. J Biol Chem 1951; 193: 265–275.
  • Reznick AZ, Packer L. Oxidative damage to proteins: spectrophotometric method for carbonyl assay. Methods Enzymol 1994; 233: 357–363.
  • Stots SJ, Hassing JM, Al-Turk WA, Masoud A. Glutathione levels in hepatic and extrahepatic tissues of mice as a function of age. Age 1980; 3: 11–15.
  • Hazelton GA, Lang CA. Glutathione contents of tissues in the aging mouse. Biochem J 1980; 188: 25–30.
  • Videla LA, Fernández V, Valenzuela A. Age-dependent changes in rat liver lipid peroxidation and glutathione content induced by acute ethanol ingestion. Cell Biochem Funct 1987; 5: 273–280.
  • Stots SJ, Al-Turk WA, Angle CR. Glutathione-S-transferase and glutathione reductase activities in hepatic and extrahepatic tissues of female mice as a function of age. Biochem Pharmacol 1982; 31: 2113–2116.
  • Stio M, Iantomasi T, Favilli Fet al. Glutathione metabolism in heart and liver of the aging rat. Biochem Cell Biol 1994; 72: 58–61.
  • Reiss U, Gershon D. Comparison of cytoplasmic superoxide dismutase in liver, heart and brain of aging rats and mice. Biochem Biophys Res Commun 1976; 73: 255–262.
  • Santa Maria C, Ayala A, Revilla E. Changes in superoxide dismutase activity in liver and lung of old rats. Free Radic Res 1996; 25: 401–405.
  • Player TJ, Mills DJ, Horton AA. Age-dependent changes in rat liver microsomal and mitochondrial NADPH-dependent lipid peroxidation. Biochem Biophys Res Commun 1977; 78: 1397–1402.
  • Starke-Reed PE, Oliver CN. Protein oxidation and proteolysis during aging and oxidative stress. Arch Biochem Biophys 1989; 275: 559–567.
  • Dini L, Rossi L, Marchese E, Ruzittu MT, Rotilio G. Age-related changes in the binding and uptake of Cu, Zn superoxide dismutase in rat liver cells. Mech Ageing Dev 1996; 90: 21–23.
  • Brouwer A, Barelds RJ, Knook DL. Age-related changes in the endocytic capacity of rat liver Kupffer and endothelial cells. Hepatology 1985; 5: 362–366.
  • Lentini A, Falasca L, Autuori F, Dini L. The simultaneous exposition of galactose and mannose-specific receptors on rat liver macrophages is developmentally regulated. Biosci Rep 1992; 12:453–461.
  • Jandl RC, Andre-Schwartz J, Borges-DuBois L, McMurrich BJ, Babior BM. Termination of the respiratory burst in human neutrophils. J Clin Invest 1978; 61: 1176–1185.

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.