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2013;33(4):265–72.
139. Suh KS, Choi EM, Kim YJ, Hong SM, Park SY, Rhee SY, et al. Perfluorooctanoic acid
induces oxidative damage and mitochondrial dysfunction in pancreatic β-cells. Mol Med
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140. Lv Z, Li G, Li Y, Ying C, Chen J, Chen T, et al. Glucose and lipid homeostasis in adult
rat is impaired by early-life exposure to perfluorooctane sulfonate. Environ Toxicol.
2013;28(9):532–42.
141. Yan S, Zhang H, Zheng F, Sheng N, Guo X, Dai J. Perfluorooctanoic acid exposure for
28 days affects glucose homeostasis and induces insulin hypersensitivity in mice. Sci Rep.
2015;5:11029.
142. Kamendulis LM, Wu Q, Sandusky GE, Hocevar BA. Perfluorooctanoic acid exposure triggers oxidative stress in the mouse pancreas. Toxicol Rep. 2014;1:513–21.
143. Sant KE, Jacobs HM, Borofski KA, Moss JB, Timme-Laragy AR. Embryonic exposures
to perfluorooctanesulfonic acid (PFOS) disrupt pancreatic organogenesis in the zebrafish.
Environ Pollut. 2017;220:807–17.
144. Gallo V, Leonardi G, Genser B, Lopez-Espinosa M-J, Frisbee SJ, Karlsson L, et al. Serum
perfluorooctanoate (PFOA) and perfluorooctane sulfonate (PFOS) concentrations and liver
function biomarkers in a population with elevated PFOA exposure. Environ Health Perspect.
2012;120(5):655–60.
145. Domazet SL, Grøntved A, Timmermann AG, Nielsen F, Jensen TK. Longitudinal associations of exposure to perfluoroalkylated substances in childhood and adolescence and indicators of adiposity and glucose metabolism 6 and 12 years later: the European Youth Heart
Study. Diabetes Care. 2016;39(10):1745–51.
146. Lassen C, Jensen A, Potrykus A, Christensen F, Kjolholt J, Jeppesen C, et al. Survey of PFOS,
PFOA and other perfluoroalkyl and polyfluoroalkyl substances. Part of the LOUS-review.
Environmental Project No. 1475; 2013.
147. Ellis DA, Martin JW, De Silva AO, Mabury SA, Hurley MD, Sulbaek Andersen MP, et al.
Degradation of fluorotelomer alcohols: a likely atmospheric source of perfluorinated carboxylic acids. Environ Sci Technol. 2004;38(12):3316–21.
148. Zhao Z, Xie Z, Möller A, Sturm R, Tang J, Zhang G, et al. Distribution and long-range transport of polyfluoroalkyl substances in the Arctic, Atlantic Ocean and Antarctic coast. Environ
Pollut. 2012;170:71–7.
149. Corporation. EI. Assessment of POP Criteria for Specific Short-Chain Perfluorinated
Alkyl Substances (Prepared for FluoroCouncil, Washington, DC). Arlington: ENVIRON
International Corporation; 2014.
S. G. Niazi et al.
138. Henry ND, Fair PA. Comparison of in vitro cytotoxicity, estrogenicity and anti- estrogenicity
of triclosan, perfluorooctane sulfonate and perfluorooctanoic acid. J Appl Toxicol.
2013;33(4):265–72.
139. Suh KS, Choi EM, Kim YJ, Hong SM, Park SY, Rhee SY, et al. Perfluorooctanoic acid
induces oxidative damage and mitochondrial dysfunction in pancreatic β-cells. Mol Med
Rep. 2017;15(6):3871–8.
140. Lv Z, Li G, Li Y, Ying C, Chen J, Chen T, et al. Glucose and lipid homeostasis in adult
rat is impaired by early-life exposure to perfluorooctane sulfonate. Environ Toxicol.
2013;28(9):532–42.
141. Yan S, Zhang H, Zheng F, Sheng N, Guo X, Dai J. Perfluorooctanoic acid exposure for
28 days affects glucose homeostasis and induces insulin hypersensitivity in mice. Sci Rep.
2015;5:11029.
142. Kamendulis LM, Wu Q, Sandusky GE, Hocevar BA. Perfluorooctanoic acid exposure triggers oxidative stress in the mouse pancreas. Toxicol Rep. 2014;1:513–21.
143. Sant KE, Jacobs HM, Borofski KA, Moss JB, Timme-Laragy AR. Embryonic exposures
to perfluorooctanesulfonic acid (PFOS) disrupt pancreatic organogenesis in the zebrafish.
Environ Pollut. 2017;220:807–17.
144. Gallo V, Leonardi G, Genser B, Lopez-Espinosa M-J, Frisbee SJ, Karlsson L, et al. Serum
perfluorooctanoate (PFOA) and perfluorooctane sulfonate (PFOS) concentrations and liver
function biomarkers in a population with elevated PFOA exposure. Environ Health Perspect.
2012;120(5):655–60.
145. Domazet SL, Grøntved A, Timmermann AG, Nielsen F, Jensen TK. Longitudinal associations of exposure to perfluoroalkylated substances in childhood and adolescence and indicators of adiposity and glucose metabolism 6 and 12 years later: the European Youth Heart
Study. Diabetes Care. 2016;39(10):1745–51.
146. Lassen C, Jensen A, Potrykus A, Christensen F, Kjolholt J, Jeppesen C, et al. Survey of PFOS,
PFOA and other perfluoroalkyl and polyfluoroalkyl substances. Part of the LOUS-review.
Environmental Project No. 1475; 2013.
147. Ellis DA, Martin JW, De Silva AO, Mabury SA, Hurley MD, Sulbaek Andersen MP, et al.
Degradation of fluorotelomer alcohols: a likely atmospheric source of perfluorinated carboxylic acids. Environ Sci Technol. 2004;38(12):3316–21.
148. Zhao Z, Xie Z, Möller A, Sturm R, Tang J, Zhang G, et al. Distribution and long-range transport of polyfluoroalkyl substances in the Arctic, Atlantic Ocean and Antarctic coast. Environ
Pollut. 2012;170:71–7.
149. Corporation. EI. Assessment of POP Criteria for Specific Short-Chain Perfluorinated
Alkyl Substances (Prepared for FluoroCouncil, Washington, DC). Arlington: ENVIRON
International Corporation; 2014.
S. G. Niazi et al.
