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                   J Inorg Biochem 2015;152:180-5.
               44.   Mandriota SJ, Tenan M, Ferrari P, Sappino AP. Aluminium chloride promotes tumorigenesis and metastasis in normal murine
                   mammary gland epithelial cells. Int J Cancer 2016;139:2781-90.
               45.   Dann AB, Hontela A. Triclosan: environmental exposure, toxicity and mechanisms of action. J Appl Toxicol 2011;31:285-311.
               46.   Gee RH, Charles A, Taylor N, Darbre PD. Oestrogenic and androgenic activity of triclosan in breast cancer cells. J Appl Toxicol
                   2008;28:78-91.
               47.   Lee GA,Choi KC, Hwang KA. Kaempferol, a phytoestrogen, suppressed triclosan-induced epithelial-mesenchymal transition and
                   metastatic-related behaviors of MCF-7 breast cancer cells. Environ Toxicol Pharmacol 2017;49:48-57.
               48.   Organisation for Economic Cooperation and Development (OECD). The 2004 OECD List of High Production Volume Chemicals.
                   Environment Directorate, Paris, 2004.
               49.   Silva MJ, Barr DB, Reidy JA, Malek NA, Hodge CC, et al. Urinary levels of seven phthalate metabolites in the U.S. population from
                   the National Health and Nutrition Examination Survey (NHANES) 1999-2000. Environ Health Perspect 2004;112:331-8.
               50.   Schlumpf M, Kypke K, Wittassek M, Angerer J, Mascher H, et al. Exposure patterns of UV filters, fragrances, parabens, phthalates,
                   organochlorpesticides, PBDEs and PCBs in human milk: Correlation of UV filters with use of cosmetics. Chemosphere 2010;81:1171-
                   83.
               51.   Jobling S, Reynolds T, White R, Parker MG, Sumpter JP. A variety of environmentally persistent chemicals, including some phthalate
                   plasticizers, are weakly estrogenic. Environ Health Perspect 1995;103:582-7.
               52.   Harris CA, Henttu P, Parker MG, Sumpter JP. The estrogenic activity of phthalate esters in vitro. Environ Health Perspect
                   1997;105:802-11.
               53.   Hsieh TH, Tsai CF, Hsu CY, Kuo PL, Lee JN, et al. Phthalates stimulate the epithelial to mesenchymal transition through an HDAC6-
                   dependent mechanism in human breast epithelial stem cells. Toxicol Sci 2012;128:365-76.
               54.   Wang YC, Tsai CF, Chuang HL, Chang YC, Chen HS, et al. Benzyl butyl phthalate promotes breast cancer stem cell expansion via
                   SPHK1/S1P/S1PR3 signaling. Oncotarget 2016;7:29563-76.
               55.   Rochester JR. Bisphenol A and human health: a review of the literature. Reprod Toxicol 2013;42:132-55.
               56.   Krishnan AV, Stathis P, Permuth SF, Tokes L, Feldman D. Bisphenol-A: an estrogenic substance is released from polycarbonate flasks
                   during autoclaving. Endocrinol 1993;132:2279-86.
               57.   Hines EP, Mendola P, von Ehrenstein OS, Ye X, Calafat AM, et al. Concentrations of environmental phenols and parabens in milk,
                   urine and serum of lactating North Carolina women. Reprod Toxicol 2015;54:120-8.
               58.   Jenkins S, Raghuraman N, Eltoum I, Carpenter M, Russo J, et al. Oral exposure to bisphenol A increases dimethylbenzanthracene-
                   induced mammary cancer in rats. Environ Health Perspect 2009;117:910-915.
               59.   Lozada KW, Keri RA. Bisphenol A increases mammary cancer risk in two distinct mouse models of breast cancer. Biol Reprod
                   2011;85:490-7.
               60.   Jenkins S, Wang J, Eltoum I, Desmond R, Lamartiniere CA. Chronic oral exposure to bisphenol A results in a nonmonotonic dose
                   response in mammary carcinogenesis and metastasis in MMTV-erbB2 mice. Environ Health Perspect 2011;119:1604-9.
               61.   Zhang XL, Wang HS, Liu N, Ge LC. Bisphenol A stimulates the epithelial mesenchymal transition of estrogen negative breast cancer
                   cells via FOXA1 signals. Arch Biochem Biophys 2015;585:10-6.
               62.   Song Y, Washington MK, Crawford HC. Loss of FOXA1/2 is essential for the epithelial-to-mesenchymal transition in pancreatic
                   cancer. Cancer Res 2010;70:2115-25.
               63.   Zhang XL, Liu N, Weng SF, Wang HS. Bisphenol A increases the migration and invasion of triple-negative breast cancer cells via
                   oestrogen-related receptor gamma. Basic Clin Pharmacol Toxicol 2016;119:389-95.
               64.   World Health Organisation. Polychlorinated dibenzo-p-dioxins and dibenzofurans. Environmental Health Criteria 1989; Number 88.
               65.   Safe S, Wormke M. Inhibitory aryl hydrocarbon receptor-estrogen receptor cross-talk and mechanisms of action. Chem Res Toxicol
                   2003;16:807-16.
               66.   Ikuta T, Kawajiri K. Zinc finger transcription factor Slug is a novel target gene of aryl hydrocarbon receptor. Exp Cell Res
                   2006;312:3585-94.
               67.   Diry M, Tomkiewicz C, Koehle C, Coumoul X, Bock KW, et al. Activation of the dioxin/aryl hydrocarbon receptor (AhR) modulates
                   cell plasticity through a JNK-dependent mechanism. Oncogene 2006;25:5570-4.
               68.   Wang T, Wyrick KL, Meadows GG, Wills TB, Vorderstrasse BA. Activation of the aryl hydrocarbon receptor by TCDD inhibits
                   mammary tumor metastasis in a syngeneic mouse model of breast cancer. Toxicol Sci 2011;124:291-8.
               69.   Zhang S, Kim K, Jin UH, Pfent C, Cao H, et al. Aryl hydrocarbon receptor agonists induce microRNA-335 expression and inhibit lung
                   metastasis of estrogen receptor negative breast cancer cells. Cancer Ther 2012;11:108-18.
               70.   Woods HF (chairman). Phytoestrogens and health. Crown copyright, 2003.
               71.   Matsumura A, Ghosh A, Pope GS, Darbre PD. Comparative study of oestrogenic properties of eight phytoestrogens in MCF7 human
                   breast cancer cells. J Steroid Biochem Mol Biol 2005;94:431-43.
               72.   Chen J, Thompson LU. Lignans and tamoxifen, alone or in combination, reduce human breast cancer cell adhesion, invasion and
                   migration in vitro. Breast Cancer Res Treat 2003;80:163-70.
               73.   Bao C, Namgung H, Lee J, Park HC, Ko J, et al. Daidzein suppresses tumor necrosis factor-α induced migration and invasion by
                   inhibiting hedgehog/Gli1 signaling in human breast cancer cells. J Agric Food Chem 2014;62:3759-67.
               74.   Zhou R, Xu L, Ye M, Liao M, Du H, et al. Formononetin inhibits migration and invasion of MDA-MB-231 and 4T1 breast cancer cells
                   by suppressing MMP-2 and MMP-9 through PI3K/AKT signaling pathways. Horm Metab Res 2014;46:753-60.
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