Content of carotenoids and the state of tissue antioxidant enzymatic complex in bivalve mollusc Anadara inaequivalvis Br.

Journal of Evolutionary Biochemistry and Physiology - Tập 49 Số 3 - Trang 309-315 - 2013
О. L. Gostyukhina1, А. А. Солдатов1, И. В. Головина1, А. В. Бородина1
1Kovalevskii Institute of Biology of the Southern Seas, National Academy of Sciences of Ukraine, Sevastopol, Ukraine

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Shimidzu, N., Goto, M., and Miki, W., Carotenoids as Singlet Oxygen Quenchers in Marine Organisms, Fish. Sci., 1996, vol. 62, pp. 134–137.

Menshikova, E.B. and Zenkov, N.K., Antioxidants and Inhibitors of Radical Oxidative Processes, Usp. Sovr. Biol., 1993, vol. 113, pp. 442–455.

Yeum, K.-J., Aldini, G., Russell, R.M., and Krinsky, N.I., Antioxidant/Pro-Oxidant Actions of Carotenoids, Carotenoids, vol. 5: Nutrition and Health, Britton, G., Liaaen-Jensen, S., and Pfander, H., Eds., Basel: Birkhauser Verlag, 2009, chapter 12, pp. 235–262.

Osipov, A.N., Azizova, O.A., and Vladimirov, Yu.A., Reactive Oxygen Species and Their Role in Organism, Usp. Sovr. Khim., 1990, vol. 31, pp. 180–208.

Keniya, M.V., Lukash, A.I., and Guskov, E.P., Role of Low-Molecular Antioxidants at Oxidative Stress, Usp. Sovr. Biol., 1003, vol. 113, pp. 456–470.

Cossu, C., Doyotte, A., Babut, M., Exinger, A., and Vasseur, P., Antioxidant Biomarkers in Freshwater Bivalves, Unio tumidus, in Response to Different Contamination Profiles of Aquatic Sediments, Ecotoxicol. Environ. Safety, 2000, vol. 45, pp. 106–121.

Geret, F., Jouan, A., Turpin, V., Bebianno, M.J., and Cosson, R.P., Influence of Metal Exposure on Metallothionein Synthesis and Lipid Peroxidation in Two Bivalve Mollusks: the Oyster (Crassostrea gigas) and the Mussel (Mytilus edulis), Aquat. Living Resource, 2002, vol. 15, pp. 61–66.

Romeo, M., Hoarau, P., Garello, G., Gnassia-Barelli, M., and Girard, J.P., Mussel Transplantation and Biomarkers as Useful Tools for Assessing Water Quality in the NW Mediterranean, Environ. Pollut., 2003, vol. 122, pp. 369–378.

Gravato, C., Oliveira, M., and Santos, M.A., Oxidative Stress and Genotoxic Responses to Resin Acids in Mediterranean Mussels, Ecotoxicol. Environ. Safety, 2005, vol. 61, pp. 221–229.

Karnaukhov, V.N., Biologicheskie funktsii carotenoidov (Biological Functions of Carotenoids), Nauka, Moscow, 1988, 240 p.

Antsupova, L.V. and Rusnak, G.M., Carotenoids in Mussels of the Odessa Bay, Ekologiya Morya, 1990, iss. 6, pp. 61–64.

Bjerkeng, B., Hertzberg, S., and Liaaen-Jensen, S., Carotenoids in Food Chain Studies. 5. Carotenoids of the Bivalves Modiolus modiolus and Pecten maximus-Structural, Metabolic and Food Chain Aspects, Comp. Biochem. Physiol., 1993, vol. 106 B, pp. 243–250.

Borodina, A.V., Nekhoroshev, M.V., and Soldatov, A.A., The Peculiarities of Carotenoid Composition in Tissues of the Bivalve Mollusc Anadara inaequivalvis Brugiere, Dop. NAN Ukraine, 2009, no. 5, pp. 186–190.

Livingstone, D.R., Contaminant-Stimulated Reactive Oxygen Species Production and Oxidative Damage in Aquatic Organisms, Mar. Pollut. Bull., 2001, vol. 42, pp. 656–666.

Gorinstein, S., Moncheva, S., Katrich, E., Toledo, F., Arancibia, P., Goshev, I., and Trakhtenberg, S., Antioxidants in the Black Mussel (Mytilus galloprovincialis) as an Indicator of Black Sea Coastal Pollution, Mar. Poll. Bull., 2003, vol. 46, pp. 1317–1325.

Lionetto, M.G., Caricato, R., Giordano, M.E., Pascariello, M.F., Marinosci, L., and Schettino, T., Integrated Use of Biomarkers (Acetylcholinesterase and Antioxidant Enzymes Activities) in Mytilus galloprovincialis and Mullus barbatus in an Italian Coastal Marine Area, Mar. Pollut. Bull., 2003, vol. 46, pp. 324–330.

Livingstone, D.R., Martinez, G.P., Michel, X., Ribera, D., and Winston, G.W., Oxyradical Production as a Pollution-Mediated Mechanism of Toxicity in the Common Mussel, Mytilus edulis L., and Other Mollusks, Funct. Ecol., 1990, vol. 4, pp. 415–424.

Viarengo, A., Canesi, L., Garcia Martinez, P., Peters, L.D., and Livingstone, D.R., Pro-Oxidant Processes and Antioxidant Defense System in the Tissues of the Antarctic Scallop (Adamussium colbecki) Compared to the Mediterranean Scallop (Pecten jacobaeus), Comp. Biochem. Physiol., 1995, vol. 111B, pp. 119–126.

Soldatov, A.A., Aleksandrova, O.L., Golovina, I.V., and Stolbov, A.Ya., Enzymatic System of Antioxidant Defense in the Black Sea Mollusc Mytilus galloprovincialis Lam. with Pigmented and Depigmented Tissue Structures, Dop. NAN Ukraine, 2003, no. 5, pp. 162–166.

Pereslegina, I.A., Activity of Antioxidant Enzymes in Saliva of Healthy Children, Lab. Delo, 1989, no. 11, pp. 20–23.

Nishikimi, M., Rao, N.A., and Yagi, R., The Occurrence of Superoxide Anion in the Animal Tissues, Biochem. Biophys. Res. Commun., 1972, vol. 46, pp. 849–854.

Girin, S.V., Modification of Method of Determination of Catalase Activity in Biological Substrates, Lab. Diagnostika, 1999, no. 4, pp. 45–46.

Putilina, F.E., Determination of Content of Reduced Glutathione in Tissues, Metody biokhimicheskogo issledovaniya (Methods of Biochemical Investigation), Izd. LGU, Leningrad, 1982, pp. 183–186.

Ohkawa, H., Ohishi, N., and Yagi, K., Assay for Lipid Peroxides in Animal Tissues by Thiobarbituric Acid Reaction, Analyt. Biochem., 1979, vol. 95, pp. 351–358.

Lukiyanova, L.D., Balmukhanov, B.S., and Ugolev, A.T., Kislorodzavisimye protsessy v kletke i ee funktsional’noe sostoyanie (Oxygen-Dependent Processes in Cell and Its Functional State), Nauka, Moscow, 1982, 301 p.

Kulinskii, V.I. and Kolesnichenko, L.S., Glutathione Metabolism, Usp. Sovr. Biol., 1990, vol. 31, pp. 157–179.