Page 535 - The Toxicology of Fishes
P. 535

The Immune System of Fish: A Target Organ of Toxicity                       515


                       Barron, M. G., Anderson, M., Beltman, D., Podrabsky, T., Walsh, W. et al. (2000). Association between PCBs,
                          liver lesions, and biomarker responses in adult walleye (Stizostedium vitreum vitreum) collected from
                          Green Bay, Wisconsin. J. Great Lakes Res., 3, 156–170.
                       Baum, E. J. (1978). Occurrence and surveillance of polycyclic aromatic hydrocarbons. In Polycyclic Hydro-
                          carbons and Cancer, Vol. 1, Gelboin, H. V. and Ts’O, P. O., Eds., Academic Press, New York, pp. 45–60.
                       Bayne, C. J. and Gerwick, L. (2001). The acute phase response and innate immunity of fish. Dev. Comp.
                          Immunol., 25, 725–743.
                       Beaman, J. R., Finch, R., Gardner, H., Hoffman, F., and Rosencrance, A. (1999). Mammalian immunoassays
                          for predicting the toxicity of malathion in a laboratory fish model. J. Toxicol. Environ. Health, 56, 101–120.
                       Bennani, N., Schimid-Alliana, A., and Lafaurie, M. (1996). Immunotoxic effects of copper and cadmium in
                          the sea bass Dicentrarchus Labrax. Immunopharmacol. Immunotoxicol., 18, 129–144.
                       Bernstein, R. M., Schluter, S. F., and Marchalonis, J. J. (1998). Immunity. In The Physiology of Fishes, 3rd
                          ed., Evans, D. H., Ed., CRC Press, Boca Raton, FL, pp. 215–242.
                       Betoulle, S., Duchiron, C., and Deschaux, P. (2000). Lindane differently modulates intracellular calcium levels
                          in two populations of rainbow trout (Oncorhynchus mykiss) immune cells: head kidney phagocytes and
                          peripheral blood leucocytes. Toxicology, 145, 203–215.
                       Bird, S., Zou, J.,  Wang,  T. H., Munday, B., Cunningham, C., and Secombes, C. J. (2002). Evolution of
                          interleukin-1 beta. Cytokine Growth Factor Rev., 13, 483–502.
                       Blaylock, B. L., Abdel-Nasser, M., McCarty, S. M., Knessel, J. A.,  Tolson, K. M., Ferguson, P. W., and
                          Mehendale, H. M. (1995). Suppression of cellular immune responses in BALB/c mice following oral
                          exposure to permethrin. Bull. Environ. Contam. Toxicol., 54, 768–774.
                       Bobe, J. and Goetz, F. W. (2001). Molecular cloning and expression of a TNF receptor and TNF ligands in
                          the fish ovary. Comp. Physiol. Biochem. Mol. Biol., 129, 475–481.
                       Bodammer, J. E. (1986). Ultrastructural observations on peritoneal-exudate cells from the striped bass. Vet.
                          Immunol. Immunopathol., 12, 127–140.
                       Bradbury, S., Goel, P., Coasts, R., and McKim, I. M. (1985). Differential toxicity and uptake of 2 fenvalerate
                          for mutation in fathead minnows (Pimephales promelas). Environ. Toxicol. Chem., 4, 533–542.
                       Breuil, G., Vassiloglou, B., Pepin, J. F., and Romestand, B. (1997). Ontogeny of IgM-bearing cells and changes
                          in the immunoglobulin M-like protein level (IgM) during larval stages in sea bass (Dicentrarchus labrax).
                          Fish Shellfish Immunol., 7, 29–43.
                       Brooks, R. R. and Rumsey, D. (1974). Heavy metals in some New Zealand commercial sea fishes. N.Z. J.
                          Mar. Freshwater Res., 8, 155–166.
                       Broughton, A., Thrasher, J. D., and Madison, R. (1990). Chronic health effects and immunological alterations
                          associated with exposure to pesticides. Commun. Toxicol., 4, 59–71.
                       Burton, J. E., Dorociak, I. R., Schwedler, T. E., and Rice, C. D. (2002). Circulating lysozome and hepatic
                          CYP1A activities during a chronic dietary exposure to tribuyltin (TBT) and 3,3′,4,4′,5-pentachlorobiphenyl
                          (PCB-126) mixtures in channel catfish, Ictalurus punctatus. J. Toxicol. Environ. Health, 65, 589–602.
                       Carlson, E. A., Li, Y., and Zelikoff, J. T. (2002a). The Japanese medaka (Oryzias latipes) model: applicability
                          for investigating the immunosuppressive effects of the aquatic pollutant benzo[a]pyrene (BaP).  Mar.
                          Environ. Res., 54, 1–4.
                       Carlson, E. A., Li, Y., and Zelikoff, J. T. (2002b). Exposure of Japanese medaka (Oryzias latipes) to ben-
                          zo(a)pyrene suppresses immune function and host resistance against bacterial challenge. Aquat. Toxicol.,
                          56, 289–301.
                       Carlson, E. A., Li, Y., and Zelikoff, J. T. (2004). Benzo(a)pyrene-induced immunotoxicity in Japanese medaka
                          (Oryzias  latipes): relationship between lymphoid CYP1A activity and humoral immune suppression.
                          Toxicol. Appl. Pharmacol., 201(1), 40–52.
                       Caspi, R. R. and Avtalion, R. R. (1984). Evidence for the existence of an IL-2 like lymphocyte growth factor
                          in a bony fish, Cyprinus carpio. Dev. Comp. Immunol., 8, 51–60.
                       Castillo, A., Razquin, B. E., Lopez-Fierro, P., Alvzrez, F., Zapata, A., and Villena, A. J. (1990). Enzyme- and
                          immunohistochemical study of the thymic stroma in rainbow trout, Salmo gairdneri, Richardson. Thymus,
                          15, 153–166.
                       Castillo, A., Sanchez, C., Dominguez, J., Kaattari, S. L., and Villena, A. J. (1993). Ontogeny of IgM and IgM-
                          bearing cells in rainbow trout. Dev. Comp. Immunol., 17, 419–424.
                       Chilmonczyk, S. (1985). Evolution of the thymus in rainbow trout, In Fish Immunology, Manning, M. J., Ed.,
                          Academic Press, London, 285–292.
   530   531   532   533   534   535   536   537   538   539   540