Page 157 - The Toxicology of Fishes
P. 157

Toxicokinetics in Fishes                                                    137


                       Bury, N.R., Grosell, M., Grover, A.K., and Wood, C.M. 1999. ATP-dependent silver transport across the
                          basolateral membrane of rainbow trout gills. Toxicol. Appl. Pharmacol., 159: 1–8.
                       Cameron, J.N. 1975. Blood flow distribution as indicated by tracer microspheres in resting and hypoxic arctic
                          grayling (Thymallus arcticus). Comp. Biochem. Physiol., 52A: 441–444.
                       Campfens, J. and Mackay, D. 1997. Fugacity-based model of PCB bioaccumulation in complex aquatic food
                          webs. Environ. Sci. Technol., 31: 577–583.
                       Camusso, M., Vigano, L., and Balestrini, R. 1995. Bioconcentration of trace metals in rainbow trout: a field
                          study. Ecotoxicol. Environ. Saf., 31: 133–141.
                       Carlson, A.R., Phipps, G.L., Mattson, V.R., Kosian, P.A., and Cotter, A.M. 1991. The role of acid-volatile
                          sulfide in determining cadmium bioavailability and toxicity in freshwater sediments. Environ. Toxicol.
                          Chem., 10: 1309–1319.
                       Chin, Y.-P. and Gschwend, P.M. 1992. Partitioning of polycyclic aromatic hydrocarbons to marine porewater
                          organic colloids. Environ. Sci. Technol., 26: 1621–1626.
                       Clark, K.E., Gobas, F.A.P.C., and Mackay, D. 1990. Model of organic chemical uptake and clearance by fish
                          from food and water. Environ. Sci. Technol., 24: 1203–1213.
                                                                             125
                       Collicutt, J.M. and Eales, J.G. 1974. Excretion and enterohepatic cycling of  I-L-thyroxine in channel catfish,
                          Ictalurus punctatus Rafinesque. Gen. Comp. Endocrinol., 23: 390–402.
                       Collier, T.K. and Varanasi, U. 1991. Hepatic activities of xenobiotic metabolizing enzymes and biliary levels
                          of xenobiotics in English sole (Parophrys vetulus) exposed to environmental contaminants. Arch. Environ.
                          Contam. Toxicol., 20: 462–473.
                       Collier, T.K., Thomas, L.C., and Malins, D.C. 1978. Influence of environmental temperature on deposition of
                          dietary naphthalene in Coho salmon (Oncorhynchus kisutch): isolation and identification of individual
                          metabolites. Comp. Biochem. Physiol., 61C: 23–28.
                       Connolly, J.P. 1991. Application of a food chain model to PCB contamination of the lobster and winter flounder
                          food chains in New Bedford Harbor. Environ. Sci. Technol., 25: 760–769.
                       Connolly, J.P. and Pederson, C.J. 1988. A thermodynamic-based evaluation of organic chemical accumulation
                          in aquatic organisms. Environ. Sci. Technol., 22: 99–103.
                       Conolly, R.B., Reitz, R.H., Clewell III, H.J., and  Andersen, M.E. 1988. Pharmacokinetics, biochemical
                          mechanism and mutation accumulation: a comprehensive model of chemical carcinogenesis. Toxicol. Lett.,
                          43: 189–200.
                       Cravedi, J.P., Choubert, G., and Delous, G. 1987. Digestibility of chloramphenicol, oxolinic acid and
                          oxytetracycline in rainbow trout and influence of these antibiotics on lipid digestibility. Aquaculture, 60:
                          133–141.
                       Cravedi, J.P., Lafuente, A., Baradat, M., Hillenweck, A., and Perdu-Durand, E. 1999. Biotransformation of
                          pentachlorophenol, aniline and biphenyl in isolated rainbow trout (Oncorhynchus mykiss) hepatocytes:
                          comparison with in vivo metabolism. Xenobiotica, 29: 499–509.
                       Crockett, E.L. and Hazel, J.R. 1995. Cholesterol levels explain inverse compensation of membrane order in
                          brush border but not homeoviscous adaptation in basolateral membranes from the intestinal epithelia of
                          rainbow trout. J. Exp. Biol., 198: 1105–1113.
                       Cunningham, J.G. 1997. Textbook of Veterinary Physiology, W.B. Saunders, Philadelphia, PA.
                       Curtis, L.R. 1983. Glucuronidation and biliary excretion of phenolphthalein in temperature-acclimated steel-
                          head trout (Salmo gairdneri). Comp. Biochem. Physiol., 76C: 107–111.
                                                                        14
                       Curtis, L.R., Kemp, C.J., and Svec, A.V. 1986. Biliary excretion of [ C] taurocholate by rainbow trout (Salmo
                          gairdneri) is stimulated at warmer acclimation temperature. Comp. Biochem. Physiol., 84C: 87–90.
                       Curtis, L.R., Fredrickson, L.K., and Carpenter, H.M. 1990. Biliary excretion appears rate limiting for hepatic
                          elimination of benzo(a)pyrene by temperature-acclimated rainbow trout.  Fundam. Appl. Toxicol., 15:
                          420–428.
                                                                                 3
                       Curtis, L.R., Hemmer, M.J., and Courtney, L.A. 2000. Dieldrin induces cytosolic [ H] 7,12-dimethylbenz(a)an-
                          thracene binding but not multidrug resistance proteins in rainbow trout liver. J. Toxicol. Environ. Health,
                          60: 275–289.
                       Dabrowska, H., Fisher, S.W., Dabrowski, K., and Staubus, A.E. 1996. Dietary uptake efficiency of HCBP in
                          channel catfish: the effect of fish contaminant body burden. Environ. Toxicol. Chem., 15: 746–749.
                       Das, A.B. 1967. Biochemical changes in tissues of goldfish acclimated to high and low temperatures. II.
                          Synthesis of protein and RNA of subcellular fractions and tissue composition. Comp. Biochem. Physiol.,
                          21: 469–485.
   152   153   154   155   156   157   158   159   160   161   162