Page 414 - The Toxicology of Fishes
P. 414

394                                                        The Toxicology of Fishes


                       Park, S. S., H. Miller et al. (1986). Monoclonal antibodies to liver cytochrome P450 E of the marine fish scup.
                          Arch. Biochem. Biophys., 249, 339–350.
                       Pathiratne, A. and S. George. (1996). Comparison of xenobiotic metabolizing enzymes of tilapia with those
                          of other fish species and interspecies relationships between gene families. Mar. Environ. Res., 42, 293.
                       Pauli-Magnus, C. and P. J. Meier. (2005). Hepatocellular transporters and cholestasis. J. Clin. Gastroenterol.,
                          39(4, Suppl. 2), S103–S110.
                       Payne, J. F. and W. R. Penrose. (1975). Induction of aryl hydrocarbon (benzo(a)pyrene) hydroxylase in fish
                          by petroleum. Bull. Environ. Contam. Toxicol., 14, 112–116.
                       Payne, J., A. Mathieu et al. (2003). Ecotoxicological studies focusing on marine and freshwater fish. In PAHs:
                          An Ecotoxicological Perspective, Douben, P., Ed., John Wiley & Sons, New York, pp. 191–224.
                       Peakall, D. (1992). Animal Biomarkers as Pollution Indicators. Chapman & Hall, New York.
                       Pesonen, M. and T. B. Andersson. (1997). Fish primary hepatocyte culture: an important model for xenobiotic
                          metabolism and toxicity studies. Aquat. Toxicol., 37(2–3), 253–267.
                       Peute, J., M. A. Vandergaag et al. (1978). Ultrastructure and lipid content of liver of zebrafish, Brachydanio
                          rerio, related to vitellogenin synthesis. Cell Tissue Res., 186(2), 297–308.
                       Phillips, M. J., S. Poucell et al. (1986). Mechanisms of cholestasis. Lab. Invest., 54(6), 593–608.
                       Polly, P., M. Herdick et al. (2000). VDR-Alien: a novel, DNA-selective vitamin D(3) receptor-corepressor
                          partnership. FASEB J., 14(10), 1455–1463.
                       Postlethwait, J., A. Amores et al. (2004). Subfunction partitioning, the teleost radiation and the annotation of
                          the human genome. Trends Genet., 20(10), 481–490.
                       Pouria, S., A. de Andrade et al. (1998). Fatal microcystin intoxication in haemodialysis unit in Caruaru, Brazil.
                          Lancet, 352(9121), 21–26.
                       Power, D. M., P. M. Ingleton et al. (2002). Application of comparative genomics in fish endocrinology. Int.
                          Rev. Cytol., 221, 149–190.
                       Pretti, C., S. Novi et al. (1999). Effect of clofibrate, a peroxisome proliferator, in sea bass (Dicentrarchus
                          labrax), a marine fish. Environ. Res., 80(3), 294–296.
                       Rabergh, C. M. I. and M. M. Lipsky. (1997). Toxicity of chloroform and carbon tetrachloride in primary
                          cultures of rainbow trout hepatocytes. Aquat. Toxicol., 37(2–3), 169–182.
                       Rabergh, C. M. I., B. Isomaa et al. (1992). The resin acids dehydroabietic acid and isopimaric acid inhibit
                          bile acid uptake and perturb potassium transport in isolated hepatocytes from rainbow trout (Oncorhynchus
                          mykiss). Aquat. Toxicol., 23(3–4), 169–180.
                       Rabergh, C. M., K. Ziegler et al. (1994). Uptake of taurocholic acid and cholic acid in isolated hepatocytes
                          from rainbow trout. Am. J. Physiol., 267(3, Pt. 1), G380–G386.
                       Radi, A., B. Matkovics et al. (1987). Comparative studies of the phospholipids fatty acids and the antioxidant
                          enzyme activities in fish with different feeding habits. Comp. Biochem. Physiol., 87B, 49–54.
                       Rao, D. S. and N. Raghuramulu. (1999a). Is vitamin D redundant in an aquatic habitat? J. Nutr. Sci. Vitaminol.
                          (Tokyo), 45(1), 1–8.
                       Rao, D. S. and N. Raghuramulu. (1999b).  Vitamin D3 and its metabolites have no role in calcium and
                          phosphorus metabolism in Tilapia mossambica. J. Nutr. Sci. Vitaminol. (Tokyo), 45(1), 9–19.
                       Rebbeor, J. F., G. C. Connolly et al. (2000). ATP-dependent GSH and glutathione S-conjugate transport in
                          skate liver: role of an MRP functional homologue. Am. J. Physiol. Gastrointest. Liver Physiol., 279(2),
                          G417–G425.
                       Reddy, J. K. and G. P. Mannaerts. (1994). Peroxisomal lipid metabolism. Annu. Rev. Nutr., 14, 343–370.
                       Reddy, J. K., M. Rao et al. (1987). Induction of hepatic peroxisome proliferation by xenobiotics. In Peroxisomes
                          in Biology and Medicine, Fahimi, H. and Sies, H., Eds., Springer-Verlag, Heidelberg, pp. 255–262.
                       Renton, K. W. (2000). Hepatic drug metabolism and immunostimulation. Toxicology, 142(3), 173–178.
                       Reschly, E. J. and M. D. Krasowski. (2006). Evolution and function of the NR1I nuclear hormone receptor
                          subfamily (VDR, PXR, and CAR) with respect to metabolism of xenobiotics and endogenous compounds.
                          Curr. Drug Metab., 7(4), 349–365.
                       Rice, C. D. (2001). Fish immunotoxicology: understanding mechanisms of action. In Target Organ Toxicity
                          in Marine and Freshwater Teleosts. Vol. 2. Systems, Schlenk, D. and Benson, W., Eds., Taylor & Francis,
                          London, pp. 96–138.
                       Riede, U. N. and D. Sasse. (1981). Quantitative topography of organelles in the liver: a combined histochemical
                          and morphometric analysis. Cell Tissue Res., 221(1), 209–220.
   409   410   411   412   413   414   415   416   417   418   419