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704 Section |IX Gases, Solvents and Other Industrial Toxicants
VetBooks.ir Hanari, N., Kannan, K., Miyake, Y., et al., 2006. Occurrence of polybro- Johnson-Restripo, B., Adams, D.H., Kannan, K., 2008.
ammonium [14C]perfluorooctanoate or potassium [14C]perfluorooc-
tanesulfonate. Fund. App. Tox. 4, 972 976.
minated biphenyls, polybrominated dibenzo-dioxins, and polybromi-
nated dibenzofurans as impurities in commercial polybrominated
diphenyl ether mixtures. Environ. Sci. Tech. 40, 4400 4405.
Hanhijarvi, H., Ylinen, M., Haarenen, T., et al., 1988. A proposed spe- Tetrabromobisphenol A (TBBPA) and hexabromocyclododecanes
(HBCDs) in tissues of humans, dolphins, and sharks from the United
cies difference in the renal excretion of perfluorooctanoic acid in the States. Chemosphere. 70, 1935 1944.
beagle dog and rat. In: Baynen, A.C., Solleveid, H.A. (Eds.), New Jones, P.D., Hu, W., De Coen, W., et al., 2003. Binding of perfluorinated
Development in Biosciences: Their Implications for Laboratory fatty acids to serum proteins. Environ. Toxicol. Chem. 22, 2639 2649.
Animal Sciences. Martinus Nijhoff, Dodrecht, Netherlands, Kannan, K., Newsted, J., Halbrook, R.S., et al., 2002.
pp. 409 412. Perfluorooctanesulfonate and related fluorinated hydrocarbons in
Harley, K.G., Marks, A.R., Chevrier, J., et al., 2010. PBDE concentra- mink and river otters from the United States. Environ. Sci. Tech. 36,
tions in women’s serum and fecundability. Environ. Health Perspect. 2566 2571.
118 (5), 699. Kannan, K., Corsolini, S., Falandysz, J., et al., 2004.
Harvey, J.B., Osborne, T.S., Hong, H.H.L., et al., 2015. Uterine carcino- Perfluorooctanesulfonate and related fluorochemicals in human
mas in tetrabromobisphenol A exposed Wistar Han Rats Harbor blood from several countries. Environ. Sci. Tech. 38, 4489 4495.
Increased Tp53 Mutations and Mimic High-grade Type I Kannan, K., Tao, L., Sinclair, E., et al., 2005a. Perfluorinated com-
Endometrial Carcinomas in Women. Toxicol. Pathol. 43 (8), pounds in aquatic organisms at various trophic levels in a Great
1103 1113. Lakes food chain. Arch. Env. Contam. Toxicol. 48, 559 566.
Heeb, N.V., Schweizer, W.B., Kohler, M., et al., 2005. Structure elucida- Kannan, K., Yun, S.H., Evans, T.I., 2005b. Chlorinated, brominated and
tion of hexabromocyclododecanes: a class of compounds with a perfluorinated contaminants in livers of polar bears from Alaska.
complex stereochemistry. Chemosphere. 61, 65 73. Environ. Sci. Tech. 39, 9057 9063.
Hendriks, H.S., Westerink, R.H., 2015. Neurotoxicity and risk assess- Kannan, K., Moon, H.-B., Yun, S.H., et al., 2008. Chlorinated, bromi-
ment of brominated and alternative flame retardants. Neurotoicol. nated and perfluorinated compounds, polycyclic aromatic hydrocar-
Teratol. 52, 248 269. bons and trace elements in livers of sea otters from California,
Houde, M., Bujas, T.A., Small, J., et al., 2006. Biomagnification of Washington, Alaska (USA) and Kamchatka (Russia). J. Environ.
perfluoroalkyl compounds in the bottlenose dolphin (Tursiops Monitor. 10, 552 558.
truncatus) food web. Environ. Sci. Tech. 40 (13), 4138 4144. Kennedy, G.L., Butenhoff, J.L., Olsen, G.W., et al., 2004. The toxicol-
Hu, G.C., Luo, X.J., Dai, J.Y., et al., 2008. Brominated flame ogy of perfluorooctanoate. Crit. Rev. Toxicol. 34 (4), 351 384.
retardants, polychlorinated biphenyls, and organochlorine pesticides Kierkegaard, A., De Wit, C., Asplund, L., et al., 2009. A mass balance
in captive giant panda (Ailuropoda melanoleuca) and red panda of tri-hexabromodiphenyl ethers in lactating cows. Environ. Sci.
(Ailurus fulgens) from China. Environ. Sci. Tech. 42 (13), Tech. 43, 2602 2607.
4704 4709. Kitamura, S., Jinno, N., Ohta, S., et al., 2002. Thyroid hormonal activity
Hu, W., Jones, P.D., Upham, B.L., et al., 2002. Inhibition of gap junc- of the flame retardants tetrabromobisphenol A and tetrachlorobi-
tional intercellular communication by perfluorinated compounds in sphenol A. Biochem. Biophys. Res. Comm. 293 (1), 554 559.
rat liver and dolphin kidney epithelial cell lines in vitro and Knudsen, G.A., Sanders, J.M., Sadik, A.M., et al., 2014. Disposition and
Sprague Dawley rats in vivo. Toxicol. Sci. 68, 429 436. kinetics of tetrabromobisphenol A in female Wistar Han rats.
Huber, S., Ballschmiter, K., 2001. Characterization of five technical mix- Toxicol. Rep. 1, 214 223.
tures of brominated flame retardants. Fresenius’ J. Analyt Chem. Knudsen, G.A., Hughes, M.F., McIntosh, K.L., et al., 2015. Estimation
371, 882 890. of tetrabromobisphenol A (TBBPA) percutaneous uptake in humans
Hundley, S.G., Sarrif, A.M., Kennedy, G.L., 2006. Absorption, distribu- using the parallelogram method. Toxicol. Appl. Pharmacol. 289 (2),
tion, and excretion of ammonium perfluorooctanoate (APFO) after 323 329.
oral administration to various species. Drug Chem. Toxicol. 29, Koch, C., Schmidt-Kotters, T., Rupp, R., et al., 2015. Review of hexab-
137 145. romocyclododecane (HBCD) with a focus on legislation and recent
Ibhazehiebo, K., Iwasaki, T., Shimokawa, N., et al., 2011. publications concerning toxicokinetics and dynamics. Environ.
1,2,5,6,9,10-α-Hexabromocyclododecane (HBCD) impairs thyroid Poll. 199, 26 34.
hormone-induced dendrite arborization of Purkinje cells and Kodavanti, P.R.S., Curras-Collazo, M.C., 2010. Neuroendocrine actions
suppresses thyroid hormone receptor-mediated transcription. of organohalogens: thyroid hormones, arginine vasopressin, and neu-
Cerebellum. 10, 22 31. roplasticity. Front. Neuroendo. 31, 479 496.
Ikeda, T., Fukuda, K., Mori, I., et al., 1987. Induction of cytochrome P- Kodavanti, P.R.S., Ward, T.R., 2005. Differential effects of commercial
450 and peroxisome proliferation in rat liver by perfluorinated octa- polybrominated diphenyl ether and polychlorinated biphenyl
nesulfonic acid. In: Fahimi, H.D., Sies, H. (Eds.), Peroxisomes in mixture on intracellular signaling in rat brain in vitro. Toxicol. Sci.
Biology and Medicine. Springer-Verlag, New York, pp. 304 308. 85, 952.
Johansson, N., Eriksson, P., Viberg, H., 2009. Neonatal exposure to Kodavanti, P.R.S., Loganathan, B.G., 2016. Brominated flame retardants:
PFOS and PFOA in mice results in changes in proteins which are spatial and temporal trends in the environment and biota from the
important for neuronal growth and synaptogenesis in the developing pacific basin countries. In: Loganathan, B., et al., (Eds.), Persistent
brain. Toxicol. Sci. 108, 412 418. Organic Chemicals in the Environment: Status and Trends in the
Johnson, J.D., Gibson, S.J., Ober, R.E., 1984. Cholestyramine-enhanced Pacific Basin Countries II. Temporal Trends. ACS Symposium Series,
fecal elimination of carbon-14 in rats after administration of American Chemical Society, Washington, DC, pp. 21 48.