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Darbre. J Cancer Metastasis Treat 2019;5:58  I  http://dx.doi.org/10.20517/2394-4722.2019.22                                 Page 13 of 13

               75.   Yang X, Belosay A, Hartman JA, Song H, Zhang Y, et al. Dietary soy isoflavones increase metastasis to lungs in an experimental
                   model of breast cancer with bone micro-tumors. Clin Exp Metastasis 2015;32:323-33.
               76.   Vandenberg LN, Colborn T, Hayes TB, Heindel JJ, Jacobs DR, et al. Hormones and endocrine-disrupting chemicals: low-dose effects
                   and nonmonotonic dose responses. Endocrine Rev 2012;33:378-455.
               77.   Rajapakse N, Silva E, Kortenkamp A. Combining xenoestrogens at levels below individual no-observed-effect concentrations
                   dramatically enhances steroid hormone action. Environ. Health Perspect 2002;110:917-21.
               78.   Van Den Berg M, Kypke K, Kotz A, Tritscher A, Lee SY, et al. WHO/UNEP global surveys of PCDDs, PCDFs, PCBs and DDTs in
                   human milk and benefit–risk evaluation of breastfeeding. Arch Toxicol 2017;91:83-96.
               79.   Key TJ, Verkasalo PK, Banks E. Epidemiology of breast cancer. The Lancet Oncology 2011;2:133-40.
               80.   Goodson WH, Lowe L, Carpenter DO, Gilbertson M, Ali AM, et al. Assessing the carcinogenic potential of low-dose exposures to
                   chemical mixtures in the environment: the challenge ahead. Carcinogenesis 2015;36:254-96.
               81.   Darbre PD, Fernandez MF. Environmental oestrogens and breast cancer: long-term low-dose effects of mixtures of various chemical
                   combinations. J Epidemiol Commun Health 2013;67:203-5.
               82.   Darbre PD. Hypothesis: Underarm cosmetics are a cause of breast cancer. Eur J Cancer Prevent 2001;10:389-93.
               83.   Darbre PD. Underarm cosmetics and breast cancer. J Appl Toxicol 2003;23:89-95.
               84.   Janjua NR, Mogensen B, Andersson AM, Petersen JH, Henriksen M, et al. Systemic absorption of the sunscreens benzophenone-3,
                   octyl-methoxycinnamate, and 3-(4-methyl-benzilidene) camphor after whole-body topical application and reproductive hormone
                   levels in humans. J Invest Dermatol 2004;123:57-61.
               85.   Janjua NR, Mortensen GK, Andersson AM, Kongshoj B, Skakkebaek NE, et al. Systemic uptake of diethyl phthalate, dibutyl
                   phthalate, and butyl paraben following whole-body topical application and reproductive and thyroid hormone levels in humans.
                   Environ. Sci Technol 2007;41:5564-70.
               86.   Calafat AM, Wong LY, Ye X, Reidy JA, Needham LL. Concentrations of the Sunscreen Agent Benzophenone-3in Residents of the
                   United States: National Health and Nutrition Examination Survey 2003-2004. Environ Health Perspect 2008;116:893-7.
               87.   Sandanger TM, Huber S, Moe MK, Braathen T, Leknes H, et al. Plasma concentrations of parabens in postmenopausal women and
                   self-reported use of personal care products: the NOWAC postgenome study. J Expo Sci Environ Epidemiol 2011;21:595-600.
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