Page 404 - The Toxicology of Fishes
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384 The Toxicology of Fishes
Farber, E. (1956). Similarities in the sequence of early histological changes induced in the liver of the rat by
ethionine 2-acetylaminofluorene and 3′-methyl-4-dimethylaminoazobenzene. Cancer Res., 16, 142–149.
Fardel, O., L. Payen et al. (2002). Drug membrane transporters in the liver: regulation of their expression and
activity. Ann. Pharm. Fr., 60(6), 380–385.
Fatima, M., I. Amad et al. (2000). Pollutant-induced over-activation of phagocytes is concomitantly associated
with peroxidative damage in fish tissues. Aquat. Toxicol., 49, 243–250.
Fent, K., B. R. Woodin et al. (1998). Effects of triphenyltin and other organotins on hepatic monooxygenase
system in fish. Comp. Biochem. Physiol. C Pharmacol. Toxicol. Endocrinol., 121(1–3), 277–288.
Ferri, S. and A. Sesso. (1981). Ultrastructural study of the endothelial cells in teleost liver sinusoids under
normal and experimental conditions. Cell Tissue Res., 219, 649–657.
Field, H. A., E. A. Ober et al. (2003). Morphogenesis of the zebrafish liver and pancreas. Dev. Biol., 259(2),
585–585.
Figueiredo-Fernandes, A. M., A. A. Fontainhas-Fernandes et al. (2007). Spatial relationships of the intrahepatic
vascular-biliary tracts and associated pancreatic acini of Nile tilapia, Oreochromis niloticus (Teleostei,
Cichlidae), a serial section study by light microscopy. Ann. Anat., 189(1), 117–130.
Fujita, H. (1985). Fine structural characteristics of the liver of cod (Gadus morhua macrocephalus), with
special regard to the concept of a hepatoskeletal system formed by Ito cells. Cell Tiss. Res., 244, 63–67.
Fujita, H., T. Tamaru et al. (1980). Fine structural characteristics of the hepatic sinusoidal walls of the goldfish
(Carassius auratus). Arch. Histol. Jpn., 43, 265–273.
Gagnon, M. M. and D. A. Holdway. (2002). EROD activity, serum SDH and PAH biliary metabolites in sand
flathead (Platycephalus bassensis) collected in Port Phillip Bay, Australia. Mar. Pollut. Bull., 44(3),
230–237.
Ganey, P. E., Y. W. Barton et al. (2001). Involvement of cyclooxygenase-2 in the potentiation of allyl alcohol-
induced liver injury by bacterial lipopolysaccharide. Toxicol. Appl. Pharmacol., 174(2), 113–121.
Gas, N. and A. Serfaty. (1972). Cytophysiologie du foie du carpe (Cyprinus carpio): modifications ultrastruc-
turales consécutives au maintien dans les conditions de jêune hivernal. J. Physiol. (Paris), 64, 57–67.
Gibson, G. and B. Lake. (1993). Peroxisomes: Biology and Importance in Toxicology and Medicine, Taylor
& Francis, London.
Gingerich, W. H. (1982). Hepatic toxicology of fishes. In Aquatic Toxicology, Weber, L. J., Ed., Raven Press,
New York, pp. 55–105.
Glass, C. K. and M. G. Rosenfeld. (2000). The coregulator exchange in transcriptional functions of nuclear
receptors. Genes Dev., 14(2), 121–141.
Gluth, G. and W. Hanke. (1985). A comparison of physiological changes in carp, Cyprinus carpio, induced
by several pollutants at sublethal concentrations. 1. The dependency on exposure time. Ecotoxicol. Environ.
Saf., 9(2), 179–188.
Goeger, D. E., D. W. Shelton et al. (1986). Mechanisms of anti-carcinogenesis by indole-3-carbinol: effect
on the distribution and metabolism of aflatoxin-B 1 in rainbow trout. Carcinogenesis, 7(12), 2025–2031.
Goksøyr, A. (2006). Endocrine disruptors in the marine environment: mechanisms of toxicity and their
influence on reproductive processes in fish. J. Toxicol. Environ. Health Part A, 69, 175–184.
Goksøyr, A. and A. M. Husoy. (1998). Immunochemical approaches to studies of CYP1A localization and
induction by xenobiotics in fish. EXS (Basel), 86, 165–202.
Goksøyr, A. and L. Förlin. (1992). The cytochrome P450 system in fish, aquatic toxicology and environmental
monitoring. Aquat. Toxicol., 22, 287–312.
Grinwis, G. C., H. T. Besselink et al. (2000). Toxicity of TCDD in European flounder (Platichthys flesus)
with emphasis on histopathology and cytochrome P450 1A induction in several organ systems. Aquat.
Toxicol., 50(4), 387–401.
Gronemeyer, H., J. A. Gustafsson et al. (2004). Principles for modulation of the nuclear receptor superfamily.
Nat. Rev. Drug Discov., 3(11), 950–64.
Groothuis, G. M. and D. K. Meijer. (1996). Drug traffic in the hepatobiliary system. J. Hepatol., 24(Suppl.
1), 3–28.
Grosell, M., M. J. O’Donnell et al. (2000). Hepatic versus gallbladder bile composition: in vivo transport
physiology of the gallbladder in rainbow trout. Am. J. Physiol. Regul. Integr. Comp. Physiol., 278(6),
R1674–R1684.
Grun, F. and B. Blumberg. (2006). Environmental obesogens: organotins and endocrine disruption via nuclear
receptor signaling. Endocrinology, 147(6, Suppl.), S50–S55.