Available studies (115 found)

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Patisaul et al. 2007 Patisaul HB, Fortino AE, and Polston EK. Differential disruption of nuclear volume and neuronal phenotype in the preoptic area by neonatal exposure to genistein and bisphenol-A. Neurotoxicology 2007; 28:1-12. DOI
Patisaul et al. 2009 Patisaul HB et al. Impact of neonatal exposure to the ERalpha agonist PPT, bisphenol-A or phytoestrogens on hypothalamic kisspeptin fiber density in male and female rats. Neurotoxicology 2009; 30:350-7. DOI
Patisaul et al. 2012 Patisaul, Heather B, Sullivan, Alana W, Radford, Meghan E, Walker, Deena M, Adewale, Heather B, Winnik, Bozena, Coughlin, Janis L, Buckley, Brian, Gore, Andrea C. Anxiogenic Effects of Developmental Bisphenol A Exposure Are Associated with Gene Expression Changes in the Juvenile Rat Amygdala and Mitigated by Soy. 2012. PLoS ONE 7(12): e43890.
Patisaul et al. 2014 Patisaul HB, Mabrey N, Adewale HB, Sullivan AW. Soy but not bisphenol A (BPA) induces hallmarks of polycystic ovary syndrome (PCOS) and related metabolic co-morbidities in rats. Reprod Toxicol 2014; 49:209-18. DOI
Prins et al. 2011 Prins, Gail S, Ye, Shu Hua, Birch, Lynn, Ho, Shuk-mei, Kannan, Kurunthachalam. Serum Bisphenol A Pharmacokinetics and Prostate Neoplastic Responses following Oral and Subcutaneous Exposures in Neonatal Sprague-Dawley Rats. 2011. Reprod Toxicol 31(1): 1-9.
Prins et al. 2017 Prins, Gail S, Ye, Shu-Hua, Birch, Lynn, Zhang, Xiang, Cheong, Ana, Lin, Han, Calderon-Gierszal, Esther, Groen, Jacob, Hu, Wen-Yang, Ho, Shuk-Mei, van Breemen, Richard B. Prostate Cancer Risk and DNA Methylation Signatures in Aging Rats following Developmental BPA Exposure: A Dose–Response Analysis. 2017. Environmental Health Perspectives 125(7): 077007
Prins et al. 2018 Prins, Gail S, Hu, Wen-Yang, Xie, Lishi, Shi, Guang-Bin, Hu, Dan-Ping, Birch, Lynn, Bosland, Maarten C. Evaluation of Bisphenol A (BPA) Exposures on Prostate Stem Cell Homeostasis and Prostate Cancer Risk in the NCTR-Sprague-Dawley Rat: An NIEHS/FDA CLARITY-BPA Consortium Study. 2018. Environmental Health Perspectives 126(11): 11701.
Ramos et al. 2001 Ramos JG, Varayoud J, Sonnenschein C, Soto AM, Muñoz De Toro M, Luque EH. Prenatal exposure to low doses of bisphenol A alters the periductal stroma and glandular cell function in the rat ventral prostate. Biology of Reproduction 2001; 65:1271-1277. DOI
Rebuli et al. 2014 Rebuli ME, Cao J, Sluzas E, Delclos KB, Camacho L, Lewis SM, Vanlandingham MM, Patisaul HB. Investigation of the effects of subchronic low dose oral exposure to bisphenol A (BPA) and ethinyl estradiol (EE) on estrogen receptor expression in the juvenile and adult female rat hypothalamus. Toxicol Sci 2014; 140:190-203. DOI
Rebuli et al. 2015 Rebuli, Meghan E, Camacho, Luisa, Adonay, Maria E, Reif, David M, Aylor, David L, Patisaul, Heather B. Impact of Low-Dose Oral Exposure to Bisphenol A (BPA) on Juvenile and Adult Rat Exploratory and Anxiety Behavior: A CLARITY-BPA Consortium Study. 2015. Society of Toxicology 148(2): 341-354.
Rebuli et al. 2016 Rebuli ME, Gibson P, Rhodes CL, Cushing BS, Patisaul HB. Sex differences in microglial colonization and vulnerabilities to endocrine disruption in the social brain. Gen Comp Endocrinol 2016; 238:39-46. DOI
Rubin et al. 2001 Rubin BS, Murray MK, Damassa DA, King JC, Soto AM. Perinatal exposure to low doses of bisphenol A affects body weight, patterns of estrous cyclicity, and plasma LH levels. Environmental Health Perspectives 2001; 109:675-680.
Rubin et al. 2006 Rubin BS, Lenkowski JR, Schaeberle CM, Vandenberg LN, Ronsheim PM, Soto AM. Evidence of altered brain sexual differentiation in mice exposed perinatally to low, environmentally relevant levels of bisphenol A. Endocrinology 2006; 147:3681-91. DOI
Rubin et al. 2017 Rubin, Beverly S, Paranjpe, Maneesha, DaFonte, Tracey, Schaeberle, Cheryl, Soto, Ana M, Obin, Martin, Greenberg, Andrew S. Perinatal BPA Exposure Alters Body Weight and Composition in a Dose Specific and Sex Specific Manner: The Addition of Peripubertal Exposure Exacerbates Adverse Effects in Female Mice. 2017. Reproductive Toxicology 68: 130-144.
Strakovsky et al. 2015 Strakovsky RS, Wang H, Engeseth NJ, Flaws JA, Helferich WG, Pan YX, Lezmi S. Developmental bisphenol A (BPA) exposure leads to sex-specific modification of hepatic gene expression and epigenome at birth that may exacerbate high-fat diet-induced hepatic steatosis. Toxicol Appl Pharmacol 2015; 284:101-12. DOI
Sullivan et al. 2014 Sullivan AW, Beach EC, Stetzik LA, Perry A, D'Addezio AS, Cushing BS, Patisaul HB. A novel model for neuroendocrine toxicology: neurobehavioral effects of BPA exposure in a prosocial species, the prairie vole (Microtus ochrogaster). Endocrinology 2014; 155 (10):3867-81. PubMed DOI
Tang et al. 2012 Tang WY, Morey LM, Cheung YY, Birch L, Prins GS, Ho SM. Neonatal Exposure to Estradiol/Bisphenol A Alters Promoter Methylation and Expression of Nsbp1 and Hpcal1 Genes and Transcriptional Programs of Dnmt3a/b and Mbd2/4 in the RatProstate Gland Throughout Life. 2012. Endocrinology 153(1): 42-55.
Tarapore et al. 2017 Tarapore P, Hennessy M, Song D, Ying J, Ouyang B, Govindarajah V, Leung YK, Ho SM. High butter-fat diet and bisphenol A additively impair male rat spermatogenesis. Reprod Toxicol 2017; 68:191-199. DOI
Taylor et al. 2020 Taylor, Julia A, Bell Jones, Maren, Besch-Williford, Cynthia L, Berendzen, Ashley F, Ricke, William A, vom Saal, Frederick S. Interactive E ects of Perinatal BPA or DES and Adult Testosterone and Estradiol Exposure on Adult Urethral Obstruction and Bladder, Kidney, and Prostate Pathology in Male Mice. 2020. International Journal of Molecular Sciences: 21 (3902): 1-19. doi:10.3390/ijms21113902
Taylor, Shioda et al. 2018 Taylor, Julia A, Shioda, Keiko, Mitsunaga, Shino, Yawata, Shiomi, Angle, Brittany M, Nagel, Susan C, vom Saal, Frederick S, Shioda, Toshi. Prenatal Exposure to Bisphenol A Disrupts Naturally Occurring Bimodal DNA Methylation at Proximal Promoter of fggy, an Obesity-Relevant Gene Encoding a Carbohydrate Kinase, in Gonadal White Adipose Tissues of CD-1 Mice. 2018. Endocrinology 159(2): 779-794.
Taylor, Sommerfeld-Sager et al. 2018 Taylor JA, Sommerfeld-Sager JM, Meng CX, Nagel SC, Shioda T, Vom Saal FS. Reduced body weight at weaning followed by increased post-weaning growth rate interacts with part-per-trillion fetal serum concentrations of bisphenol A (BPA) to impair glucose tolerance in male mice. PLoS One 2018; 13:e0208846. DOI
Tharp et al. 2012 Tharp, Andrew P, Maffini, Maricel V, Hunt, Patricia A, VandeVoort, Catherine A, Sonnenschein, Carlos, Soto, Ana M. Bisphenol A Alters the Development of the Rhesus Monkey Mammary Gland. 2012. PNAS 109(21): 8190-8195.
Timms et al. 2005 Timms, Barry G, Howdeshell, Kembra L, Barton, Lesley, Bradley, Sarahann, Richter, Catherine A, vom Saal, Frederick S. Estrogenic Chemicals in Plastic and Oral Contraceptives Disrupt Development of the Fetal Mouse Prostate and Urethra. 2005. PNAS 102(19): 7014-7019.
Tremblay-Franco et al. 2015 Tremblay-Franco M, Cabaton NJ, Canlet C, Gautier R, Schaeberle CM, Jourdan F, Sonnenschein C, Vinson F, Soto AM, Zalko D. Dynamic Metabolic Disruption in Rats Perinatally Exposed to Low Doses of Bisphenol-A. PLoS One 2015; 10:e0141698. DOI
Uctmann et al. 2020 Uchtmann KS, Taylor JA, Timms BG, Stahlhut RW, Ricke EA, Ellersieck MR, vom Saal FS, Ricke WA. 2020. Fetal bisphenol A and ethinylestradiol exposure alters male rat urogenital tract morphology at birth: Confirmation of prior low-dose findings in CLARITY-BPA. Reprod Toxicol. 91:131-141.

Showing studies 76-100 of 115