Available studies (115 found)
| Short citation | Full citation | Bioassay | Epidemiology | Epi. meta-analysis | In vitro | Ecology |
|---|---|---|---|---|---|---|
| Khurana et al. 2000 | Khurana S, Ranmal S, and Ben-Jonathan N. Exposure of newborn male and female rats to environmental estrogens: Delayed and sustained hyperprolactinemia and alterations in estrogen receptor expression. Endocrinology 2000; 141:4512-4517. DOI | |||||
| Kovanecz et al. 2013 | Kovanecz, I.,Gelfand, R.,Masouminia, M.,Gharib, S.,Segura, D.,Vernet, D.,Rajfer, J.,Li, D. K.,Liao, C. Y.,Kannan, K.,Gonzalez-Cadavid, N. F. (2013). Chronic high dose intraperitoneal bisphenol A (BPA) induces substantial histological and gene expression alterations in rat penile tissue without impairing erectile function. The journal of sexual medicine, 10(12), 2952–2966. doi:10.1111/jsm.12336 | |||||
| Kovanecz et al. 2014 | Kovanecz I, Gelfand R, Masouminia M, et al. Oral Bisphenol A (BPA) given to rats at moderate doses is associated with erectile dysfunction, cavernosal lipofibrosis and alterations of global gene transcription. Int J Impot Res. 2014;26(2):67–75. doi:10.1038/ijir.2013.37 | |||||
| Leung et al. 2017 | Leung YK, Govindarajah V, Cheong A, Veevers J, Song D, Gear R, Zhu X, Ying J, Kendler A, Medvedovic M, Belcher S, Ho SM. Gestational high-fat diet and bisphenol A exposure heightens mammary cancer risk. Endocr Relat Cancer 2017; 24:365-378. DOI | |||||
| Leung et al. 2020 | Leung, Yuet-Kin, Biesiada, Jacek, Govindarajah, Vinothini, Ying, Jun, Kendler, Ady, Medvedovic, Mario, Ho, Shuk-Mei. Low-Dose Bisphenol A in a Rat Model of Endometrial Cancer: A CLARITY-BPA Study. 2020. Environmental Health Perspectives 128(12). https://doi.org/10.1289/EHP6875 | |||||
| Li Q. et al. 2018 | Li Q, Lawrence CR, Nowak RA, Flaws JA, Bagchi MK, Bagchi IC. Bisphenol A and Phthalates Modulate Peritoneal Macrophage Function in Female Mice Involving SYMD2-H3K36 Dimethylation. Bisphenol A and Phthalates Modulate Peritoneal Macrophage Function in Female Mice Involving SYMD2-H3K36 Dimethylation. Endocrinology 2018; 159:2216-2228. DOI | |||||
| Li, J. et al. 2018a | Li, Jinpeng, Bach, Anthony, Crawford, Robert B, Phadnis-Moghe, Ashwini S, Chen, Weimin, D'Ingillo, Shawna, Kovalova, Natalia, Suarez-Martinez, Jose E, Zhou, Jiajun, Kaplan, Barbara LF, Kaminski, Norbert E. CLARITY BPA: Effects of Chronic Bisphenol A Exposure on the Immune System: Part 1 - Quantification of the Relative Number and Proportion of Leukocyte Populations in the Spleen and Thymus. 2018. Toxicology 396-397: 46-53. | |||||
| Li, J. et al. 2018b | Li, Jinpeng, Bach, Anthony, Crawford, Robert B, Phadnis-Moghe, Ashwini S, Chen, Weimin, D'Ingillo, Shawna, Kovalova, Natalia, Suarez-Martinez, Jose E, Zhou, Jiajun, Kaplan, Barbara LF, Kaminski, Norbert E. CLARITY BPA: Effects of Chronic Bisphenol A Exposure on the Immune System: Part 2 - Characterization of Lymphoproliferative and Immune Effector Responses by Splenic Leukocytes. 2018. Toxicology 396-397: 54-67. | |||||
| Li, Q. et al. 2016 | Li, Quanxi, Davila, Juanmahel, Kannan, Athilakshmi, Flaws, Jodi A, Bagchi, Milan K, Bagchi, Indrani C. Chronic Exposure to Bisphenol A Affects Uterine Function During Early Pregnancy in Mice. 2016. Endocrinology 157(5): 1764-1774. | |||||
| Losa-Ward et al. 2012 | Losa-Ward SM, Todd KL, McCaffrey KA, Tsutsui K, Patisaul HB. Disrupted organization of RFamide pathways in the hypothalamus is associated with advanced puberty in female rats neonatally exposed to bisphenol A. Biol Reprod 2012; 87:28. DOI | |||||
| Mahalingam et al. 2017 | Mahalingam S, Ther L, Gao L, Wang W, Ziv-Gal A, Flaws JA. The effects of in utero bisphenol A exposure on ovarian follicle numbers and steroidogenesis in the F1 and F2 generations of mice. Reprod Toxicol 2017; 74:150-157. DOI | |||||
| Markey et al. 2001 | Markey CM, Luque EH, Munoz De Toro M, Sonnenschein C, Soto AM. In utero exposure to bisphenol a alters the development and tissue organization of the mouse mammary gland. Biology of Reproduction 2001; 65:1215-1223. DOI | |||||
| Markey et al. 2003 | Markey CM, Coombs MA, Sonnenschein C, Soto AM. Mammalian development in a changing environment: exposure to endocrine disruptors reveals the developmental plasticity of steroid-hormone target organs. Evol Dev 2003; 5:67-75. | |||||
| Markey et al. 2005 | Markey CM, Wadia PR, Rubin BS, Sonnenschein C, Soto AM. Long-term effects of fetal exposure to low doses of the xenoestrogen bisphenol-A in the female mouse genital tract. Biol Reprod 2005; 72:1344-51. DOI | |||||
| McCaffrey et al. 2013 | McCaffrey KA, Jones B, Mabrey N, Weiss B, Swan SH, Patisaul HB. Sex specific impact of perinatal bisphenol A (BPA) exposure over a range of orally administered doses on rat hypothalamic sexual differentiation. Neurotoxicology 2013; 36:55-62. DOI | |||||
| Montévil et al. 2020 | Montévil, Mael, Acevedo, Nicole, Schaeberle, Cheryl M, Bharadwaj, Manushree, Fenton, Suzanne E, Soto, Ana M. A Combined Morphometric and Statistical Approach to Assess Non-monotonicity in the Developing Mammary Gland of Rats in the CLARITY-BPA Study. 2020. Environmental Health Perspectives. | |||||
| Munoz-de-Toro et al. 2005 | Muñoz-de-Toro, Monica, Markey, Caroline M, Wadia, Perinaaz R, Luque, Enrique H, Rubin, Beverly S, Sonnenschein, Carlos, Soto, Ana M. Perinatal Exposure to Bisphenol-A Alters Peripubertal Mammary Gland Development in Mice. 2005. Endocrinology 146(9): 4138-4147. | |||||
| Murray et al. 2007 | Murray, Tessa J, Maffini, Maricel V, Ucci, Angelo A, Sonnenschein, Carlos, Soto, Ana M. Induction of Mammary Gland Ductal Hyperplasias and Carcinoma in situ Following Fetal Bisphenol A Exposure. 2007. Reprod Toxicol 23(3): 383-390. | |||||
| NTP 2018 | National Toxicology Program. NTP Research Report on the CLARITY-BPA Core Study: A Perinatal and Chronic Extended-Dose-Range Study of Bisphenol A in Rats. 2018. NTP RR 9: 1-261. | |||||
| Nagel et al. 1997 | Nagel, Susan C, vom Saal, Frederick S, Thayer, Kristina A, Dhar, Minati G, Boechler, Michael, Welshons, Wade V. Relative Binding Affinity-Serum Modified Access (RBA-SMA) Assay Predicts the Relative In Vivo Bioactivity of the Xenoestrogens Bisphenol A and Octylphenol. 1997. Environmental Health Perspectives 105(1): 70-76. | |||||
| Neff et al. 2019 | Neff, Alison M, Blanco, Sean C, Flaws, Jodi A, Bagchi, Idrani C, Bagchi, Milan K. Chronic Exposure of Mice to Bisphenol-A Alters Uterine Fibroblast Grown Factor Signaling and Leads to Aberrant Epithelial Proliferation. 2019. Endocrinology 160(5): 1234-1246 | |||||
| Palanza et al. 2002 | Palanza, P. L., Howdeshell, K. L., Parmigiani, S., & vom Saal, F. S. (2002). Exposure to a low dose of bisphenol A during fetal life or in adulthood alters maternal behavior in mice. Environmental health perspectives, 110 Suppl 3(Suppl 3), 415–422. doi:10.1289/ehp.02110s3415 | |||||
| Patel et al. 2017 | Patel S, Brehm E, Gao L, Rattan S, Ziv-Gal A, Flaws JA. Bisphenol A Exposure, Ovarian Follicle Numbers, and Female Sex Steroid Hormone Levels: Results From a CLARITY-BPA Study. 2017. Endocrinology 158: 1727-1738. | |||||
| Patisaul and Bateman 2008 | Patisaul HB and Bateman HL. Neonatal exposure to endocrine active compounds or an ERbeta agonist increases adult anxiety and aggression in gonadally intact male rats. Horm Behav 2008; 53:580-8. DOI | |||||
| Patisaul et al. 2006 | Patisaul HB, Fortino AE, Polston EK. Neonatal Genistein or Bisphenol-A Exposure Alters Sexual Differentiation of the AVPV. 2006. Neurotoxicology and Teratology 28: 111-118. |
Showing studies 51-75 of 115