Artículo

La versión final de este artículo es de uso interno de la institución.
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Registro:

Documento: Artículo
Título:Does starvation influence the antioxidant status of the digestive gland of Nacella concinna in experimental conditions?
Autor:Ansaldo, M.; Sacristán, H.; Wider, E.
Filiación:Instituto Antártico Argentino, Dirección Nacional del Antártico, Cerrito 1248, 1010 Buenos Aires, Argentina
Departamento de Química Biológica, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, 1428 Buenos Aires, Argentina
Consejo Nacional de Investigaciones Científicas y Técnicas, Rivadavia 1917, (1033), Buenos Aires, Argentina
Palabras clave:CAT; GSH; GST; Lipid-peroxidation; Molluscs; Nacella concinna; Protein oxidation; SOD; antioxidant; catalase; glutathione; glutathione transferase; sea water; superoxide dismutase; thiobarbituric acid reactive substance; article; enzyme activity; exocrine gland; experimental study; food deprivation; frozen section; laboratory; lipid peroxidation; mollusc; nonhuman; priority journal; starvation; Animals; Antioxidants; Catalase; Digestive System; Food Deprivation; Glutathione; Glutathione Transferase; Lipid Peroxidation; Mollusca; Oxidation-Reduction; Oxidative Stress; Proteins; Starvation; Superoxide Dismutase; Mollusca; Nacella concinna; Patellidae
Año:2007
Volumen:146
Número:1-2 SPEC ISS
Página de inicio:118
Página de fin:123
DOI: http://dx.doi.org/10.1016/j.cbpc.2006.11.004
Título revista:Comparative Biochemistry and Physiology - C Toxicology and Pharmacology
Título revista abreviado:Comp. Biochem. Physiol. C Toxicol. Pharmacol.
ISSN:15320456
CODEN:CBPPF
CAS:catalase, 9001-05-2; glutathione, 70-18-8; glutathione transferase, 50812-37-8; superoxide dismutase, 37294-21-6, 9016-01-7, 9054-89-1; Antioxidants; Catalase, 1.11.1.6; Glutathione, 70-18-8; Glutathione Transferase, 2.5.1.18; Proteins; Superoxide Dismutase, 1.15.1.1
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_15320456_v146_n1-2SPECISS_p118_Ansaldo

Referencias:

  • Abele, D., Burlando, B., Viarengo, A., Pörtner, H.-O., Exposure to elevated temperatures and hydrogen peroxide elicits oxidative stress and antioxidant response in the Antarctic intertidal limpet Nacella concinna (1998) Comp. Biochem. Physiol. B, 120, pp. 425-435
  • Aebi, H., Catalase in vitro (1984) Methods Enzymol., 105, pp. 121-126
  • Ahn, I., Kim, K., Choi, H.J., A baseline study on metal concentrations in the Antarctic limpet Nacella concinna (Gastropoda: Patellidae) on King George island: variations with sex and body parts (2002) Mar. Pollut. Bull., 44, pp. 421-431
  • Ansaldo, M., Najle, R., Luquet, C.M., Oxidative stress generated by diesel seawater contamination in the digestive gland of the Antarctic limpet Nacella concinna (2005) Mar. Environ. Res., 59, pp. 381-390
  • Barroso, J.B., Peragón, J., Contreras-Jurado, C., García-Salguero, L., Corpas, F.J., Esteban, F.J., Peinado, M.A., Lupiáñez, J.A., Impact of starvation-refeeding on kinetics and protein expression of trout liver NADPH-production systems (1998) Am. J. Physiol., 274, pp. R1578-R1587
  • Borges, E., Vuaden, F.C., Cognato, G.d.P., Fauth, M.G., Bonan, C.D., Turcato, G., Rossi, I.C., Días, R.D., Effects of starvation on haemolymphatic glucose levels, glycogen contents and nucleotidase activities in different tissues of Helix aspersa (Muller, 1774) (Mollusca, Gastropoda) (2004) J. Exp. Zool. A Comp. Exp. Biol., 301, pp. 891-897
  • Bracho, M.A., Segnini de Bravo, M.I., Vinoles, I., Chung, K.S., Food effect on the physiological condition of the mussel Perna viridis (Bivalvia: Mytilidae), using RNA/DNA ratio (2000) Rev. Biol. Trop., 48 (SUPPL. 1), pp. 171-182
  • Brockington, S., Clarke, A., The relative influence of temperature and food on the metabolism of a marine invertebrate (2001) J. Exp. Mar. Biol. Ecol., 258, pp. 87-99
  • Buege, J.A., Aust, S.D., Microsomal lipid peroxidation (1978) Methods Enzymol., 52, pp. 302-309
  • Cadée, G.C., Shell damage and shell repair in the Antarctic limpet Nacella concinna from King George Island (1999) J. Sea Res., 41, pp. 149-161
  • Clarke, A., Life in cold water: the physiological ecology of polar marine ectotherms (1983) Oceanogr. Mar. Biol. Annu. Rev., 21, pp. 341-453
  • Clarke, A., Seasonality in the Antarctic marine environment (1988) Comp. Biochem. Physiol. B, 90, pp. 461-473
  • Clarke, A., Leakey, R.J.G., The seasonal cycle of phytoplankton, macronutrients and the microbial community in a nearshore Antarctic marine ecosystem (1996) Limnol. Oceanogr., 41, pp. 1281-1294
  • Clarke, A., Prothero-Thomas, E., Beaumont, J.C., Chapman, A., Brey, T., Growth in the limpet Nacella concinna from contrasting sites in Antarctica (2004) Polar Biol., 28, pp. 62-71
  • Cripps, G.C., Shears, J., The fate in the marine environment of minor diesel fuel spill from an Antarctic Research Station (1997) Environ. Monit. Assess., 46, pp. 221-232
  • Domenicali, M., Caraceni, P., Vendemiale, G., Grattagliano, I., Nardo, B., Dall'Agata, M., Santoni, B., Bernardi, M., Food deprivation exacerbates mitochondrial oxidative stress in rat liver exposed to ischemia-reperfusion injury (2001) J. Nutr., 131, pp. 105-110
  • Dummermuth, A.L., Karsten, U., Fisch, K.M., König, G.M., Wiencke, C., Responses of marine macroalgae to hydrogen-peroxide stress (2003) J. Exp. Mar. Biol. Ecol., 289, pp. 103-121
  • Fagan, J.M., Sleczka, B.G., Sohar, I., Quantitation of oxidative damage to tissue proteins (1999) Int. J. Biochem. Cell Biol., 3, pp. 751-757
  • Fraser, K.P.P., Clarke, A., Peck, L.S., Feast and famine in Antarctica: seasonal physiology in the limpet Nacella concinna (2002) Mar. Ecol., Prog. Ser., 242, pp. 169-177
  • Fujisawa, T., Akagi, S., Kawase, M., Yamamoto, M., Ohmori, S., D-lactate metabolism in starved Octopus ocellatus (2005) J. Exp. Zool. A Comp. Exp. Biol., 303, pp. 489-496
  • Guderley, H., Lapointe, D., Bédard, M., Dutil, J.-D., Metabolic priorities during starvation: enzyme paring in liver and white muscle of Atlantic cod, Gadus morhua L (2003) Comp. Biochem. Physiol. C, 135, pp. 347-356
  • Habig, W., Pabst, M.J., Jakoby, W.B., Glutathione-S-transferases (1974) J. Biol. Chem., 249, pp. 7130-7139
  • Halliwell, B., Gutteridge, J.M.C., (1999) Free Radicals in Biology and Medicine, , Oxford University Press, Oxford
  • Hermes-Lima, M., Oxygen in biology and biochemistry: role of free radicals (2004) Functional Metabolisms: Regulation and Adaptation, pp. 319-368. , Storey K.B. (Ed), John Wiley and sons
  • Iken, K., Quartino, M.L., Barrera-Oro, E., Palermo, J., Wiencke, C., Brey, T., Trophic relations between macroalgae and herbivores (1998) Ber. Polarforsch., 299, pp. 258-262
  • Kennicutt, M.C., McDonald, T.J., Denoux, G.J., McDonald, S.J., Hydrocarbon contamination in the Antarctic Peninsula: II. Arthur Harbour - Inter- and subtidal limpets (Nacella concinna) (1992) Mar. Pollut. Bull., 24, pp. 506-511
  • Lowry, O.M., Rosenbrough, N.J., Farr, L., Randall, R.J., Protein measurement with the phenol reagent (1951) J. Biol. Chem., 193, pp. 265-275
  • Misra, H.P., Fridovich, Y., The role of superoxide anion in the autooxidation of epinephrine and a simple assay for superoxide dismutase (1972) J. Biol. Chem., 247, pp. 3170-3175
  • Moore, M.N., Diet restriction induced autophagy: a lysosomal protective system against oxidative- and pollutant-stress and cell injury (2004) Mar. Environ. Res., 58, pp. 603-607
  • Morales, A.E., Pérez-Jiménez, A., Hidalgo, M.C., Abellán, E., Cardenete, G., Oxidative stress and antioxidant defenses after prolonged starvation in Dentex dentex liver (2004) Comp. Biochem. Physiol. C, 139, pp. 153-161
  • Moron, M.S., Depierre, J.W., Mannervik, B., Levels of glutathione, glutathione reductase and glutathione S transferase activities in rat lung and liver (1979) Biochim. Biophys. Acta, 582, pp. 67-78
  • Najle, R., Elissondo, M., Gentile, S., Vacarezza, G., Solana, H., Histopathology of the digestive gland of an Antarctic limpet exposed to cadmium (2000) Sci. Total Environ., 247, pp. 263-268
  • Ohkawa, H., Ohishi, N., Yagi, K., Assay of lipid peroxides in animal tissues by thiobarbituric acid reaction (1979) Anal. Biochem., 95, pp. 351-358
  • Pascual, P., Pedrajas, J.R., Toribio, F., López-Barea, J., Peinado, J., Effect of food deprivation on oxidative stress biomarkers in fish (Sparus aurata) (2003) Chem. Biol. Int., 145, pp. 191-199
  • Peck, L.S., Veal, R., feeding, metabolism and growth in the Antarctic limpet Nacella concinna (Strebel 1908) (2001) Mar. Biol., 138, pp. 553-560
  • Pinheiro, J., Gomes, E.M., Chagas, G.M., Aminotransferases activity in the hemolymph of Bradybaena similaris (Gastropoda, Xanthonychidae) under starvation (2001) Mem. Inst. Oswaldo Cruz, 96, pp. 1161-1164
  • Pinho, G.L.L., Moura da Rosa, C., Yunes, J.S., Luquet, C.M., Bianchini, A., Monserrat, J.M., Toxic effects of microcystins in the hepatopancreas of the estuarine crab Chasmagnathus granulatus (Decapoda, Grapsidae) (2003) Comp. Biochem. Physiol., 135 C, pp. 459-468
  • Ramnanan, C.J., Story, K.B., Glucose-6-phosphate dehydrogenase regulation during hypometabolism (2006) Biochem. Biophys. Res. Commun., 339, pp. 7-16
  • Reznick, A.Z., Packer, L., Oxidative damage to proteins: spectrophotometric method for carbonyl assay (1994) Methods Enzymol., 233, pp. 357-363
  • Robinson, M.K., Rustum, R.R., Chambers, E.A., Rounds, J.D., Wilmore, D.W., Jacobs, D.O., Starvation enhances hepatic free radical release following endotoxemia (1997) J. Surg. Res., 69, pp. 325-330
  • Santini, G., Bianchi, T., Chelazzi, G., Metabolic responses to food deprivation in two limpets with different foraging regimes, revealed by recording of cardiac activity (2002) J. Zool., 256, pp. 11-15
  • Sies, H., Oxidative stress: introductory remarks (1985) Oxidative Stress, , Sies H. (Ed), Academic press, Incorporated, London
  • Sokal, R.R., Rohlf, F.J., (1997) Biometry. The principles and practice of statistic in biological research, , WH Freeman and Company, NY. USA
  • Stanwell-Smith, D., Clarke, E., The timing in the Antarctic limpet Nacella concinna (Strebe, 1908) (Patellidae) at Signy Island, in relation to environmental variables (1998) J. Molluscan Stud., 64, pp. 123-127
  • Vijayavel, K., Gomathi, R.D., Durgabhavani, K., Balasubramanian, M.P., Sublethal effect of naphtalene on lipid peroxidation and antioxidant status in the edible crab Scylla serrata (2004) Mar. Pollut. Bull., 48, pp. 429-433
  • Wilhelm Filho, D., Tribess, T., Gáspari, C., Claudio, F.D., Torres, M.A., Magalhães, A.R.M., Seasonal changes in antioxidant defenses of the digestive gland of the brown mussel (Perna perna) (2001) Aquaculture, 203, pp. 149-158
  • Wilhelm Filho, D., Torres, M.A., Zaniboni-Filho, E., Pedrosa, R.C., Effect of different oxygen tensions on weight gain, feed conversion, and antioxidant status in piapara, Leporius elongatus (Valenciennes, 1847) (2005) Aquaculture, 244, pp. 349-357

Citas:

---------- APA ----------
Ansaldo, M., Sacristán, H. & Wider, E. (2007) . Does starvation influence the antioxidant status of the digestive gland of Nacella concinna in experimental conditions?. Comparative Biochemistry and Physiology - C Toxicology and Pharmacology, 146(1-2 SPEC ISS), 118-123.
http://dx.doi.org/10.1016/j.cbpc.2006.11.004
---------- CHICAGO ----------
Ansaldo, M., Sacristán, H., Wider, E. "Does starvation influence the antioxidant status of the digestive gland of Nacella concinna in experimental conditions?" . Comparative Biochemistry and Physiology - C Toxicology and Pharmacology 146, no. 1-2 SPEC ISS (2007) : 118-123.
http://dx.doi.org/10.1016/j.cbpc.2006.11.004
---------- MLA ----------
Ansaldo, M., Sacristán, H., Wider, E. "Does starvation influence the antioxidant status of the digestive gland of Nacella concinna in experimental conditions?" . Comparative Biochemistry and Physiology - C Toxicology and Pharmacology, vol. 146, no. 1-2 SPEC ISS, 2007, pp. 118-123.
http://dx.doi.org/10.1016/j.cbpc.2006.11.004
---------- VANCOUVER ----------
Ansaldo, M., Sacristán, H., Wider, E. Does starvation influence the antioxidant status of the digestive gland of Nacella concinna in experimental conditions?. Comp. Biochem. Physiol. C Toxicol. Pharmacol. 2007;146(1-2 SPEC ISS):118-123.
http://dx.doi.org/10.1016/j.cbpc.2006.11.004