Available studies (115 found)
| Short citation | Full citation | Bioassay | Epidemiology | Epi. meta-analysis | In vitro | Ecology |
|---|---|---|---|---|---|---|
| Vandenberg et al. 2007 | Vandenberg, Laura N, Maffini, Maricel V, Wadia, Perinaaz R, Sonnenschein, Carlos, Rubin, Beverly S, Soto, Ana M. Exposure to Environmentally Relevant Doses of the Xenoestrogen Bisphenol-A Alters Development of the Fetal Mouse Mammary Gland. 2007. Endocrinology 148(1): 116-127. | |||||
| Vandenberg et al. 2008 | Vandenberg, Laura N, Maffini, Maricel V, Schaeberle, Cheryl M, Ucci, Angelo A, Sonnenschein, Carlos, Rubin, Beverly S, Soto, Ana M. Perinatal Exposure to the Xenoestrogen Bisphenol-A Induces Mammary Intraductal Hyperplasias in Adult CD-1 Mice. 2008. Reprod Toxicol 26(0): 210-219. | |||||
| Vandenberg et al. 2013 | Vandenberg, Laura N, Schaeberle, Cheryl M, Rubin, Beverly S, Sonnenschein, Carlos, Soto, Ana M. The Male Mammary Gland: a Target for the Xenoestrogen Bisphenol A. 2013. Reprod Toxicol 37: 15-23. | |||||
| Veiga-Lopez et al. 2015 | Veiga-Lopez A, Pennathur S, Kannan K, Patisaul HB, Dolinoy DC, Zeng L, Padmanabhan V. Impact of gestational bisphenol A on oxidative stress and free fatty acids: Human association and interspecies animal testing studies. Endocrinology 2015; 156:911-22. DOI | |||||
| Vom Saal et al. 1998 | vom Saal FS, Cooke PS, Buchanan DL, Palanza P, Thayer KA, Nagel SC, Parmigiani S, Welshons WV. A physiologically based approach to the study of bisphenol A and other estrogenic chemicals on the size of reproductive organs, daily sperm production, and behavior. Toxicology and Industrial Health 1998; 14:239-260. | |||||
| Wadia et al. 2007 | Wadia, Perinaaz R, Vandenberg, Laura N, Schaeberle, Cheryl M, Rubin, Beverly S, Sonnenschein, Carlos, Soto, Ana M. Perinatal Bisphenol A Exposure Increases Estrogen Sensitivity of the Mammary Gland in Diverse Mouse Strains. 2007. Environmental Health Perspectives 115(4): 592-598. | |||||
| Wadia et al. 2013 | Wadia, Perinaaz R, Cabaton, Nicolas J, Borrero, Michael D, Rubin, Beverly S, Sonnenschein, Carlos, Shioda, Toshi, Soto, Ana M. Low-Dose BPA Exposure Alters the Mesenchymal and Epithelial Transcriptomes of the Mouse Fetal Mammary Gland. 2013. PLoS ONE 8(5): e63902. | |||||
| Wang, Q. et al. 2016 | Wang Q, Trevino LS, Wong RL, Medvedovic M, Chen J, Ho SM, Shen J, Foulds CE, Coarfa C, O'Malley BW, Shilatifard A, Walker CL. Reprogramming of the Epigenome by MLL1 Links Early-Life Environmental Exposures to Prostate Cancer Risk. Molecular Endocrinology 2016; 30:856-871. DOI | |||||
| Wang, W. et al. 2014 | Wang, Wei, Hafner, Katlyn S, Flaws, Jodi A. In utero Bisphenol A Exposure Disrupts Germ Cell Nest Breakdown and Reduces Fertility with Age in the Mouse. 2014. Toxicol Appl Pharmacol 276(2): 157-164. | |||||
| Williams et al. 2013 | Williams SA, Jasarevic E, Vandas GM, Warzak DA, Geary DC, Ellersieck MR, Roberts RM, Rosenfeld CS. Effects of developmental bisphenol A exposure on reproductive-related behaviors in California mice (Peromyscus californicus): a monogamous animal model. PLoS One 2013; 8:e55698. DOI | |||||
| Witchey et al. 2019 | Witchey, Shannah K, Fuchs, Joelle, Patisaul, Heather B. Perinatal bisphenol A (BPA) exposure alters brain oxytocin receptor (OTR) expression in a sex- and region-specific manner: A CLARITY-BPA consortium follow-up study. 2019. Neurotoxicology 74: 139-148. | |||||
| Wolstenholme et al. 2019 | Wolstenholme, Jennifer T, Drobna, Zuzana, Henriksen, Anne D, Goldsby, Jessica A, Stevenson, Rachel, Irvin, Joshua W, Flaws, Jodi A, Rissman, Emilie F. Transgenerational Bisphenol A Causes Deficits in Social Recognition and Alters Postsynaptic Density Genes in Mice. 2019. Endocrinology 160(8):1854-1867. | |||||
| Wong et al. 2015 | Wong, Rebecca L, Wang, Quan, Trevino, Lindsey S, Bosland, Maarten C, Chen, Jing, Medvedovic, Mario, Prins, Gail S, Kannan, Kurunthachalam, Ho, Shuk-Mei, Walker, Cheryl L. Identification of Secretaglobin Scgb2a1 as a Target for Developmental Reprogramming by BPA in the Rat Prostate. 2015. Epigenetics 10(2): 127-134. | |||||
| Wright et al. 2017 | Wright EC, Johnson SA, Hao R, Kowalczyk AS, Greenberg GD, OrdoƱes Sanchez E, Laman-Maharg A, Trainor BC, Rosenfeld CS. Exposure to extrinsic stressors, social defeat or bisphenol A, eliminates sex differences in DNA methyltransferase expression in the amygdala. Journal of Neuroendocrinology 2017; 29:1-9. DOI | |||||
| Zoeller et al. 2005 | Zoeller, R. Thomas, Bansal, Ruby, Parris, Colleen. Bisphenol-A, an Environmental Contaminant that Acts as a Thyroid Hormone Receptor Antagonist in Vitro, Increases Serum Thyroxine, and Alters RC3/Neurogranin Expression in the Developing Rat Brain. 2005. Endocrinology 146(2): 607-612. |
Showing studies 101-115 of 115