Tag: thyroid
Thyroid: A butterfly-shaped endocrine gland found in the neck that produces thyroid hormones which regulate several bodily functions, including the rate of energy use.
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The association between breast cancer and lung cancer: a bidirectional Mendelian randomization study
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Li X, Liu J, Zhang J, Wang Y, He J, Zhang H. The association between breast cancer and lung cancer: a bidirectional Mendelian randomization study. Scientific Reports. Springer Science and Business Media LLC; 2024; 14 10.1038/s41598-024-76314-z
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Association between diabetes and subsequent malignancy risk among older breast cancer survivors
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Hardell KNL, Schonfeld SJ, Ramin C, Vo JB, Morton LM. Association between diabetes and subsequent malignancy risk among older breast cancer survivors. JNCI Cancer Spectrum. Oxford University Press (OUP); 2024; 10.1093/jncics/pkae036
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Abstract PO3-11-10: Second primary non-breast cancers in young breast cancer survivors
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Zhang B, Brantley K, Rosenberg S, Kirkner G, Collins L, Ruddy K, et al. Abstract PO3-11-10: Second primary non-breast cancers in young breast cancer survivors. Cancer Research. American Association for Cancer Research (AACR); 2024; 84:PO3-11-10-PO3-11-10 10.1158/1538-7445.sabcs23-po3-11-10
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The effect of thyroid dysfunction on breast cancer risk: an updated meta-analysis
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Tran T, Kitahara CM, Leenhardt L, de Vathaire F, Boutron-Ruault M, Journy N. The effect of thyroid dysfunction on breast cancer risk: an updated meta-analysis. Endocrine-Related Cancer. Bioscientifica; 2022; 10.1530/erc-22-0155
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Risk of Developing a Second Primary Cancer in Male Breast Cancer Survivors: A Systematic Review and Meta-Analysis
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Allen I, Hassan H, Sofianopoulou E, Eccles DM, Turnbull C, Tischkowitz M, et al. Risk of Developing a Second Primary Cancer in Male Breast Cancer Survivors: A Systematic Review and Meta-Analysis. Apollo - University of Cambridge Repository; 2022; 10.17863/CAM.87045
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Mortality after second malignancy in breast cancer survivors compared to a first primary cancer: a nationwide longitudinal cohort study
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Deng Z, Jones MR, Wang M, Visvanathan K. Mortality after second malignancy in breast cancer survivors compared to a first primary cancer: a nationwide longitudinal cohort study. npj Breast Cancer. Springer Science and Business Media LLC; 2022; 8 10.1038/s41523-022-00447-5
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Abstract P3-12-25: Risk of second primary cancers after curative treatment of breast cancer: A Korean nationwide population-based study
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Kim H, Kim SS, Lee JS, Yoon JS, Shin HJ, Lee JE, et al. Abstract P3-12-25: Risk of second primary cancers after curative treatment of breast cancer: A Korean nationwide population-based study. Cancer Research. American Association for Cancer Research (AACR); 2022; 82:P3-12-25-P3-12-25 10.1158/1538-7445.sabcs21-p3-12-25
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Risk of Second Primary Thyroid Cancer in Women with Breast Cancer
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Cieszyńska M, Kluźniak W, Wokołorczyk D, Cybulski C, Huzarski T, Gronwald J, et al. Risk of Second Primary Thyroid Cancer in Women with Breast Cancer. Cancers. MDPI AG; 2022; 14:957 10.3390/cancers14040957
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The TSH/Thyroid Hormones Axis and Breast Cancer
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Voutsadakis IA. The TSH/Thyroid Hormones Axis and Breast Cancer. Journal of Clinical Medicine. MDPI AG; 2022; 11:687 10.3390/jcm11030687
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Exogenous Thyroid Hormone Is Associated with Shortened Survival and Upregulation of High-Risk Gene Expression Profiles in Steroid Receptor–Positive Breast Cancers
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Wahdan-Alaswad RS, Edgerton SM, Salem H, Kim HM, Tan AC, Finlay-Schultz J, et al. Exogenous Thyroid Hormone Is Associated with Shortened Survival and Upregulation of High-Risk Gene Expression Profiles in Steroid Receptor–Positive Breast Cancers. Clinical Cancer Research. American Association for Cancer Research (AACR); 2020; 27:585-597 10.1158/1078-0432.ccr-20-2647
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Thyroid Hormones and Morphological Features of Primary Breast Cancer
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MEIROVITZ A, NISMAN B, ALLWEIS TM, CARMON E, KADOURI L, MALY B, et al. Thyroid Hormones and Morphological Features of Primary Breast Cancer. Anticancer Research. Anticancer Research USA Inc.; 2021; 42:253-261 10.21873/anticanres.15480
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Effects of thyroxine on apoptosis and proliferation of mammary tumors
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Zyla LE, Cano R, Gómez S, Escudero A, Rey L, Santiano FE, et al. Effects of thyroxine on apoptosis and proliferation of mammary tumors. Molecular and Cellular Endocrinology. Elsevier BV; 2021;:111454 10.1016/j.mce.2021.111454
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Multimorbidity clusters among long‐term breast cancer survivors in Spain: Results of the SURBCAN study
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Jansana A, Poblador‐Plou B, Gimeno‐Miguel A, Lanzuela M, Prados‐Torres A, Domingo L, et al. Multimorbidity clusters among long‐term breast cancer survivors in Spain: Results of the SURBCAN study. International Journal of Cancer. Wiley; 2021; 10.1002/ijc.33736
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Thyroid dysfunction and breast cancer risk among women in the UK Biobank cohort
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Tran T, Maringe C, Benitez Majano S, Rachet B, Boutron‐Ruault M, Journy N. Thyroid dysfunction and breast cancer risk among women in the UK Biobank cohort. Cancer Medicine. Wiley; 2021; 10.1002/cam4.3978
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Elevated Free Triiodothyronine Is Associated With Increased Proliferative Activity in Triple-negative Breast Cancer
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NISMAN B, ALLWEIS TM, CARMON E, KADOURI L, MALY B, MAIMON O, et al. Elevated Free Triiodothyronine Is Associated With Increased Proliferative Activity in Triple-negative Breast Cancer. Anticancer Research. Anticancer Research USA Inc.; 2021; 41:949-954 10.21873/anticanres.14848
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Extensive Medullary Thyroid Cancer: Aggressive Surgery with Mediastinal Dissection is Worthwhile?
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Martín Granados G, José Antonio Posada T, Antonio Gómez P, Kuauhyama Luna O, Erika Ruiz G, Silvia Vidal M, et al. Extensive Medullary Thyroid Cancer: Aggressive Surgery with Mediastinal Dissection is Worthwhile?. Journal of Surgical Endocrinology. sPage.direcT; 2017; 1 10.36959/608/438
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Bisphenol A and thyroid hormones
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Yuan N, Wang L, Zhang X, Li W. Bisphenol A and thyroid hormones. Medicine. Ovid Technologies (Wolters Kluwer Health); 2020; 99:e23067 10.1097/md.0000000000023067
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Thyroid Hormones, Silencing Mediator for Retinoid and Thyroid Receptors and Prognosis in Primary Breast Cancer
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NISMAN B, ALLWEIS TM, CARMON E, KADOURI L, MALY B, MAIMON O, et al. Thyroid Hormones, Silencing Mediator for Retinoid and Thyroid Receptors and Prognosis in Primary Breast Cancer. Anticancer Research. Anticancer Research USA Inc.; 2020; 40:6417-6428 10.21873/anticanres.14663
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Incidence of hypothyroidism after treatment for breast cancer—a Danish matched cohort study
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Falstie-Jensen AM, Esen BÖ, Kjærsgaard A, Lorenzen EL, Jensen JD, Reinertsen KV, et al. Incidence of hypothyroidism after treatment for breast cancer—a Danish matched cohort study. Breast Cancer Research. Springer Science and Business Media LLC; 2020; 22 10.1186/s13058-020-01337-z
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Hyperthyroidism is associated with breast cancer risk and mammographic and genetic risk predictors
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Yang H, Holowko N, Grassmann F, Eriksson M, Hall P, Czene K. Hyperthyroidism is associated with breast cancer risk and mammographic and genetic risk predictors. BMC Medicine. Springer Science and Business Media LLC; 2020; 18 10.1186/s12916-020-01690-y
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Does hypothyroidism increase the risk of breast cancer: evidence from a meta-analysis
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Wang B, Lu Z, Huang Y, Li R, Lin T. Does hypothyroidism increase the risk of breast cancer: evidence from a meta-analysis. BMC Cancer. Springer Science and Business Media LLC; 2020; 20 10.1186/s12885-020-07230-4
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Association between thyroid gland diseases and breast cancer: a case–control study
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Bach L, Kostev K, Schiffmann L, Kalder M. Association between thyroid gland diseases and breast cancer: a case–control study. Breast Cancer Research and Treatment. Springer Science and Business Media LLC; 2020; 182:207-213 10.1007/s10549-020-05675-6
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Breast Cancer Risk in Postmenopausal Women with Medical History of Thyroid Disorder in the Women's Health Initiative
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Weng C, Okawa ER, Roberts MB, Park SK, Umbricht CB, Manson JE, et al. Breast Cancer Risk in Postmenopausal Women with Medical History of Thyroid Disorder in the Women's Health Initiative. Thyroid. Mary Ann Liebert Inc; 2020; 30:519-530 10.1089/thy.2019.0426
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Clinicopathological features, survival and risk in breast cancer survivors with thyroid cancer: an analysis of the SEER database
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Li S, Yang J, Shen Y, Zhao X, Zhang L, Wang B, et al. Clinicopathological features, survival and risk in breast cancer survivors with thyroid cancer: an analysis of the SEER database. BMC Public Health. Springer Science and Business Media LLC; 2019; 19 10.1186/s12889-019-7947-y
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Thyroid Hormone Receptor β Inhibits Self-Renewal Capacity of Breast Cancer Stem Cells
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López-Mateo I, Alonso-Merino E, Suarez-Cabrera C, Park JW, Cheng S, Alemany S, et al. Thyroid Hormone Receptor β Inhibits Self-Renewal Capacity of Breast Cancer Stem Cells. Thyroid. Mary Ann Liebert Inc; 2020; 30:116-132 10.1089/thy.2019.0175
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Thyroid function following breast cancer chemotherapy: A systematic review
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Mortezaee K, Ahmadi A, Haghi‐Aminjan H, Khanlarkhani N, Salehi E, Shabani Nashtaei M, et al. Thyroid function following breast cancer chemotherapy: A systematic review. Journal of Cellular Biochemistry. Wiley; 2019; 120:12101-12107 10.1002/jcb.28771
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Serum concentration of thyroid hormones in abnormal and euthyroid ranges and breast cancer risk: A cohort study
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Kim EY, Chang Y, Lee KH, Yun J, Park YL, Park CH, et al. Serum concentration of thyroid hormones in abnormal and euthyroid ranges and breast cancer risk: A cohort study. International Journal of Cancer. Wiley; 2019; 145:3257-3266 10.1002/ijc.32283
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Hypothyroidism and the risk of breast cancer recurrence and all-cause mortality - a Danish population-based study
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Falstie-Jensen AM, Kjærsgaard A, Lorenzen EL, Jensen JD, Reinertsen KV, Dekkers OM, et al. Hypothyroidism and the risk of breast cancer recurrence and all-cause mortality - a Danish population-based study. Breast Cancer Research. Springer Science and Business Media LLC; 2019; 21 10.1186/s13058-019-1122-3
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Abstract P5-05-02: Thyroid hormone replacement therapy shortens survival in hormone receptor positive early stage breast cancers
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Wahdan-Alaswad R, Edgerton S, Salem H, Liu B, Thor A. Abstract P5-05-02: Thyroid hormone replacement therapy shortens survival in hormone receptor positive early stage breast cancers. Poster Session Abstracts. American Association for Cancer Research; 2019; 10.1158/1538-7445.sabcs18-p5-05-02
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Effects of isoflavones on breast tissue and the thyroid hormone system in humans: a comprehensive safety evaluation
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Hüser S, Guth S, Joost HG, Soukup ST, Köhrle J, Kreienbrock L, et al. Effects of isoflavones on breast tissue and the thyroid hormone system in humans: a comprehensive safety evaluation. Archives of Toxicology. Springer Science and Business Media LLC; 2018; 92:2703-2748 10.1007/s00204-018-2279-8
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Thyroid hormones and breast cancer association according to menopausal status and body mass index
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Ortega-Olvera C, Ulloa-Aguirre A, Ángeles-Llerenas A, Mainero-Ratchelous FE, González-Acevedo CE, Hernández-Blanco MdL, et al. Thyroid hormones and breast cancer association according to menopausal status and body mass index. Breast Cancer Research. Springer Science and Business Media LLC; 2018; 20 10.1186/s13058-018-1017-8
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Levothyroxine use and the risk of breast cancer: a nation-wide population-based case–control study
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Wu C, Yu Y, Yang H, Nguyen PA, Poly TN, Islam MM, et al. Levothyroxine use and the risk of breast cancer: a nation-wide population-based case–control study. Archives of Gynecology and Obstetrics. Springer Science and Business Media LLC; 2018; 298:389-396 10.1007/s00404-018-4837-y
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Multiple primary non-breast tumors in breast cancer survivors
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Corso G, Veronesi P, Santomauro GI, Maisonneuve P, Morigi C, Peruzzotti G, et al. Multiple primary non-breast tumors in breast cancer survivors. Journal of Cancer Research and Clinical Oncology. Springer Science and Business Media LLC; 2018; 144:979-986 10.1007/s00432-018-2621-9
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Study on the status of thyroid function and thyroid nodules in chinese breast cancer patients
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Shi Y, Li X, Ran L, Arshad B, Li H, Xu Z, et al. Study on the status of thyroid function and thyroid nodules in chinese breast cancer patients. Oncotarget. Impact Journals, LLC; 2017; 8:80820-80825 10.18632/oncotarget.20542
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Does thyroid dysfunction increase the risk of breast cancer? A systematic review and meta-analysis
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Fang Y, Yao L, Sun J, Yang R, Chen Y, Tian J, et al. Does thyroid dysfunction increase the risk of breast cancer? A systematic review and meta-analysis. Journal of Endocrinological Investigation. Springer Science and Business Media LLC; 2017; 40:1035-1047 10.1007/s40618-017-0679-x
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Thyroid Hormone Controls Breast Cancer Cell Movement via Integrin αV/β3/SRC/FAK/PI3-Kinases
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Flamini MI, Uzair ID, Pennacchio GE, Neira FJ, Mondaca JM, Cuello-Carrión FD, et al. Thyroid Hormone Controls Breast Cancer Cell Movement via Integrin αV/β3/SRC/FAK/PI3-Kinases. Hormones and Cancer. Springer Science and Business Media LLC; 2017; 8:16-27 10.1007/s12672-016-0280-3
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Breast cancer and thyroid diseases: analysis of 867 consecutive cases
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Chiappa C, Rovera F, Rausei S, Del Ferraro S, Fachinetti A, Lavazza M, et al. Breast cancer and thyroid diseases: analysis of 867 consecutive cases. Journal of Endocrinological Investigation. Springer Science and Business Media LLC; 2016; 40:179-184 10.1007/s40618-016-0543-4
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Thyroid function and survival following breast cancer
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Brandt J, Borgquist S, Almquist M, Manjer J. Thyroid function and survival following breast cancer. British Journal of Surgery. Oxford University Press (OUP); 2016; 103:1649-1657 10.1002/bjs.10284
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Abstract 3787: Thyroid hormone induced proliferation of breast cancer cell lines: A novel approach to hormone therapy
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Jerzak KJ, Cockburn JG, Hassel J, Pritchard KI, Dhesy-Thind SK, Anita B. Abstract 3787: Thyroid hormone induced proliferation of breast cancer cell lines: A novel approach to hormone therapy. Experimental and Molecular Therapeutics. American Association for Cancer Research; 2016; 10.1158/1538-7445.am2016-3787
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Concentrations of thiocyanate and goitrin in human plasma, their precursor concentrations in brassica vegetables, and associated potential risk for hypothyroidism
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Felker P, Bunch R, Leung AM. Concentrations of thiocyanate and goitrin in human plasma, their precursor concentrations in brassica vegetables, and associated potential risk for hypothyroidism. Nutrition Reviews. Oxford University Press (OUP); 2016; 74:248-258 10.1093/nutrit/nuv110
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Risk of Second Non-Breast Primary Cancer in Male and Female Breast Cancer Patients: A Population-Based Cohort Study
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Hung M, Liu C, Teng C, Hu Y, Yeh C, Chen S, et al. Risk of Second Non-Breast Primary Cancer in Male and Female Breast Cancer Patients: A Population-Based Cohort Study. PLOS ONE. Public Library of Science (PLoS); 2016; 11:e0148597 10.1371/journal.pone.0148597
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The Breast–Thyroid Cancer Link: A Systematic Review and Meta-analysis
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Nielsen SM, White MG, Hong S, Aschebrook-Kilfoy B, Kaplan EL, Angelos P, et al. The Breast–Thyroid Cancer Link: A Systematic Review and Meta-analysis. Cancer Epidemiology Biomarkers & Prevention. American Association for Cancer Research (AACR); 2016; 25:231-238 10.1158/1055-9965.epi-15-0833
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Cancer Risk in Patients with Graves' Disease: A Nationwide Cohort Study
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Chen Y, Lin C, Chang Y, Cheng FT, Peng C, Sung F, et al. Cancer Risk in Patients with Graves' Disease: A Nationwide Cohort Study. Thyroid. Mary Ann Liebert Inc; 2013; 23:879-884 10.1089/thy.2012.0568
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Triiodothyronine levels in relation to mortality from breast cancer and all causes: a population-based prospective cohort study
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Tosovic A, Bondeson A, Bondeson L, Ericsson U, Manjer J. Triiodothyronine levels in relation to mortality from breast cancer and all causes: a population-based prospective cohort study. European Journal of Endocrinology. Bioscientifica; 2013; 168:483-490 10.1530/eje-12-0564
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Cancer Mortality among Women Frequently Exposed to Radiographic Examinations for Spinal Disorders
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Ronckers CM, Land CE, Miller JS, Stovall M, Lonstein JE, Doody MM. Cancer Mortality among Women Frequently Exposed to Radiographic Examinations for Spinal Disorders. Radiation Research. Radiation Research Society; 2010; 174:83-90 10.1667/rr2022.1
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Personal care products and endocrine disruption: A critical review of the literature
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Witorsch RJ, Thomas JA. Personal care products and endocrine disruption: A critical review of the literature. Critical Reviews in Toxicology. Informa UK Limited; 2010; 40:1-30 10.3109/10408444.2010.515563
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Triclosan Exposure Modulates Estrogen-Dependent Responses in the Female Wistar Rat
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Stoker TE, Gibson EK, Zorrilla LM. Triclosan Exposure Modulates Estrogen-Dependent Responses in the Female Wistar Rat. Toxicological Sciences. Oxford University Press (OUP); 2010; 117:45-53 10.1093/toxsci/kfq180
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Vitamin D Deficiency Promotes Human Breast Cancer Growth in a Murine Model of Bone Metastasis
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Ooi LL, Zhou H, Kalak R, Zheng Y, Conigrave AD, Seibel MJ, et al. Vitamin D Deficiency Promotes Human Breast Cancer Growth in a Murine Model of Bone Metastasis. Cancer Research. American Association for Cancer Research (AACR); 2010; 70:1835-1844 10.1158/0008-5472.can-09-3194