Page 281 - The Toxicology of Fishes
P. 281
Receptor-Mediated Mechanisms of Toxicity 261
Bello, S. M. (1999). Characterization of Resistance to Halogenated Aromatic Hydrocarbons in a Population
of Fundulus heteroclitus from a Marine Superfund site, Ph.D. thesis, Woods Hole Oceanographic Insti-
tution/Massachusetts Institute of Technology, Woods Hole, MA.
Bello, S. M., Heideman, W., and Peterson, R. E. (2004). 2,3,7,8-Tetrachlorodibenzo-p-dioxin inhibits regres-
sion of the common cardinal vein in developing zebrafish. Toxicol. Sci., 78, 258–266.
Billiard, S. M., Timme-Laragy, A. R., Wassenberg, D. M., Cockman, C., and Di Giulio, R. T. (2006). The
role of the aryl hydrocarbon receptor pathway in mediating synergistic developmental toxicity of polycyclic
aromatic hydrocarbons to zebrafish. Toxicol. Sci., 92, 526–536.
Black, J. W. and Leff, P. (1983). Operational models of pharmacological agonism. Proc. R. Soc. Lond. B, 220,
141–162.
Blechinger, S. R., Warren, Jr., J. T., Kuwada, J. Y., and Krone, P. H. (2002). Developmental toxicology of
cadmium in living embryos of a stable transgenic zebrafish line. Environ. Health Perspect., 110,
1041–1046.
Boonanuntanasarn, S., Yoshizaki, G., Takeuchi, Y., Morita, T., and Takeuchi, T. (2002). Gene knock-down in
rainbow trout embryos using antisense morpholino phosphorodiamidate oligonucleotides. Mar. Biotechnol.
(NY), 4, 256–266.
Bosworth, C. A. T., Chou, C. W., Cole, R. B., and Rees, B. B. (2005). Protein expression patterns in
zebrafish skeletal muscle: initial characterization and the effects of hypoxic exposure. Proteomics, 5,
1362–1371.
Brenner, S., Johnson, M., Bridgham, J., Golda, G., Lloyd, D. H. et al. (2000). Gene expression analysis by
massively parallel signature sequencing (MPSS) on microbead arrays. Nat. Biotechnol., 18, 630–634.
Bresolin, T., de Freitas Rebelo, M., and Celso Dias Bainy, A. (2005). Expression of PXR, CYP3A and MDR1
genes in liver of zebrafish. Comp. Biochem. Physiol. C Toxicol. Pharmacol., 140, 403–407.
Brian, J. V., Harris, C. A., Scholze, M., Backhaus, T., Booy, P. et al. (2005). Accurate prediction of the response
of freshwater fish to a mixture of estrogenic chemicals. Environ. Health Perspect., 113, 721–728.
Brown, S. B., Evans, R. E., Vandenbyllardt, L., Finnson, K. W., Palace, V. P. et al. (2004). Altered thyroid
status in lake trout (Salvelinus namaycush) exposed to co-planar 3,3′,4,4′,5-pentachlorobiphenyl. Aquat.
Toxicol., 67, 75–85.
Brunet, F. G., Crollius, H. R., Paris, M., Aury, J. M., Gibert, P. et al. (2006). Gene loss and evolutionary rates
following whole-genome duplication in teleost fishes. Mol. Biol. Evol., 23, 1808–1816.
Bury, N. R., Sturm, A., Le Rouzic, P., Lethimonier, C., Ducouret, B. et al. (2003). Evidence for two distinct
functional glucocorticoid receptors in teleost fish. J. Mol. Endocrinol., 31, 141–156.
Carney, S. A., Chen, J., Burns, C. G., Xiong, K. M., Peterson, R. E., and Heideman, W. (2006). Aryl
hydrocarbon receptor activation produces heart-specific transcriptional and toxic responses in developing
zebrafish. Mol. Pharmacol., 70, 549–561.
Carney, S. A., Peterson, R. E., and Heideman, W. (2004). 2,3,7,8-Tetrachlorodibenzo-p-dioxin activation of
the aryl hydrocarbon receptor/aryl hydrocarbon receptor nuclear translocator pathway causes develop-
mental toxicity through a CYP1A-independent mechanism in zebrafish. Mol. Pharmacol., 66, 512–521.
Carr, R. L., Couch, T. A., Liu, J., Coats, J. R., and Chambers, J. E. (1999). The interaction of chlorinated
alicyclic insecticides with brain GABA(A) receptors in channel catfish (Ictalurus punctatus). J. Toxicol.
Environ. Health A, 56, 543–553.
Carvan III, M. J., Solis, W. A., Gedamu, L., and Nebert, D. W. (2000). Activation of transcription factors in
zebrafish cell cultures by environmental pollutants. Arch. Biochem. Biophys., 376, 320–327.
Carvan III, M. J., Sonntag, D. M., Cmar, C. B., Cook, R. S., Curran, M. A., and Miller, G. L. (2001). Oxidative
stress in zebrafish cells: potential utility of transgenic zebrafish as a deployable sentinel for site hazard
ranking. Sci. Total Environ., 274, 183–196.
Carvan III, M. J., Heiden, T. K., and Tomasiewicz, H. (2005). The utility of zebrafish as a model for
toxicological research. In Biochemistry and Molecular Biology of Fishes. Vol. 6. Environmental Toxicology,
Moon, T. W. and Mommsen, T. P., Eds., Elsevier, Amsterdam, pp. 3–41.
Celander, M., Bremer, J., Hahn, M. E., and Stegeman, J. J. (1997). Glucocorticoid–xenobiotic interactions:
dexamethasone potentiation of cytochrome P4501A induction by β-naphthoflavone in a fish hepatoma
cell line (PLHC-1). Environ. Toxicol. Chem., 16, 900–907.
Celander, M., Hahn, M. E., and Stegeman, J. J. (1996). Cytochromes P450 (CYP) in the Poeciliopsis lucida
hepatocellular carcinoma cell line (PLHC-1): dose- and time-dependent glucocorticoid potentiation of
CYP1A induction without induction of CYP3A. Arch. Biochem. Biophys., 329, 113–122.