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G. Kuiper, E. Enmark, M. Pelto-huikko, S. Nilsson, J. Gustafsson (1996)
Cloning of a novel receptor expressed in rat prostate and ovary.Proceedings of the National Academy of Sciences of the United States of America, 93 12
D. Kiino, P. Dannies (1981)
Insulin and 17 beta-estradiol increase the intracellular prolactin content of GH4C1 cells.Endocrinology, 109 4
M. Laudon, Daniel Grossman, N. Ben-Jonathan (1990)
Prolactin-releasing factor: cellular origin in the intermediate lobe of the pituitary.Endocrinology, 126 6
N. Lazear (1995)
Polycarbonate: high-performance resinAdvanced Materials & Processes, 147
J. Moy, D. Lawson (1992)
Temporal Effects of Estradiol and Diethylstilbestrol on Pituitary and Plasma Prolactin Levels in Ovariectomized Fischer 344 and Holtzman Rats: A Comparison of Radioimmunoassay and Nb2 Lymphoma Cell BioassayProceedings of the Society for Experimental Biology and Medicine, 200
(1996)
Novel tumor-specific expression of estrogen receptor mRNA spliced variants in human pituitary adenomas
Julie Wiklund, N. Wertz, J. Gorski (1981)
A comparison of estrogen effects on uterine and pituitary growth and prolactin synthesis in F344 and Holtzman rats.Endocrinology, 109 5
K. Korach (1993)
Surprising places of estrogenic activity.Endocrinology, 132 6
Barbara Nowakowski, R. Maurer (1994)
Multiple Pit-1-binding sites facilitate estrogen responsiveness of the prolactin gene.Molecular endocrinology, 8 12
M. GEORGEG.J., Kuiper, Eva, Enmark, Markku, PELTO-HUIKKOt, Stefan, NILSSONt, JAN-AKE Gustafsson
Cloning of a novel estrogen receptor expressed in rat prostate and ovary
J. Arita, F. Kimura (1987)
Direct inhibitory effect of long term estradiol treatment on dopamine synthesis in tuberoinfundibular dopaminergic neurons: in vitro studies using hypothalamic slices.Endocrinology, 121 2
A. Krishnan, P. Stathis, S. Permuth, L. Tőkés, David Feldman (1993)
Bisphenol-A: an estrogenic substance is released from polycarbonate flasks during autoclaving.Endocrinology, 132 6
S. Arnold, D. Klotz, Bridgette Collins, P. Vonier, L. Guillette, J. Mclachlan (1996)
Synergistic Activation of Estrogen Receptor with Combinations of Environmental ChemicalsScience, 272
K. Friend, Le Ang, M. Shupnik (1995)
Estrogen regulates the expression of several different estrogen receptor mRNA isoforms in rat pituitary.Proceedings of the National Academy of Sciences of the United States of America, 92 10
N. Ben-Jonathan (1990)
Prolactin Releasing and Inhibiting Factors in the Posterior Pituitary
R. Stone (1994)
Environmental estrogens stir debate.Science, 265 5170
L. Arbogast, N. Ben-Jonathan (1990)
The preovulatory prolactin surge is prolonged by a progesterone-dependent dopaminergic mechanism.Endocrinology, 126 1
J. Brotons, M. Olea-Serrano, M. Villalobos, V. Pedraza, N. Olea (1995)
Xenoestrogens released from lacquer coatings in food cans.Environmental Health Perspectives, 103
K. Cullen, M. Kladde, M. Seyfred (1993)
Interaction between transcription regulatory regions of prolactin chromatin.Science, 261 5118
K. Shy, A. McTiernan, J. Daling, N. Weiss (1983)
Oral contraceptive use and the occurrence of pituitary prolactinoma.JAMA, 249 16
V. Jordan, C. Murphy (1990)
Endocrine pharmacology of antiestrogens as antitumor agents.Endocrine reviews, 11 4
E. Ellerkmann, G. Nagy, L. Frawley (1992)
Alpha-melanocyte-stimulating hormone is a mammotrophic factor released by neurointermediate lobe cells after estrogen treatment.Endocrinology, 130 1
I. Murai, S. Reichlin, N. Ben-Jonathan (1989)
The peak phase of the proestrous prolactin surge is blocked by either posterior pituitary lobectomy or antisera to vasoactive intestinal peptide.Endocrinology, 124 2
J. Reyniak, M. Wenof, J. Aubert, J. Stangel (1980)
Incidence of Hyperprolactinemia During Oral Contraceptive TherapyObstetrics & Gynecology, 55
D. Allen, M. Low, R. Allen, N. Ben-Jonathan (1995)
Identification of two classes of prolactin-releasing factors in intermediate lobe tumors from transgenic mice.Endocrinology, 136 7
A. Atkinson, Deodutta Roy (1995)
In vitro conversion of environmental estrogenic chemical bisphenol A to DNA binding metabolite(s).Biochemical and biophysical research communications, 210 2
D. Allen, N. Mitchner, T. Uveges, K. Nephew, Sohaib Khan, N. Jonathan (1997)
Cell-Specific Induction of c-fos Expression in the Pituitary Gland by Estrogen.Endocrinology, 138 5
P. Rhode, J. Gorski (1991)
Growth and cell cycle regulation of mRNA levels in GH3 cellsMolecular and Cellular Endocrinology, 82
I. Murai, N. Ben-Jonathan (1990)
Acute stimulation of prolactin release by estradiol: mediation by the posterior pituitary.Endocrinology, 126 6
J. Schechter, Nazir Ahmad, Kathleen Elias, R. Weiner (1987)
Estrogen-induced tumors: changes in the vasculature in two strains of rat.The American journal of anatomy, 179 4
(1993)
Posterior pituitary cells: Isolation of sub-populations producing prolactin releasing factor
J. Schechter, R. Weiner (1991)
Changes in basic fibroblast growth factor coincident with estradiol-induced hyperplasia of the anterior pituitaries of Fischer 344 and Sprague-Dawley rats.Endocrinology, 129 5
K. Shy, A. McTiernan, J. Daling, N. Weiss (1984)
Oral Contraceptive Use and the Occurrence of Pituitary ProlactinomaObstetrical & Gynecological Survey, 39
N. Olea, R. Pulgar, P. Perez, F. Olea-Serrano, A. Rivas, A. Novillo-Fertrell, V. Pedraza, Ana Soto, C. Sonnenschein (1996)
Estrogenicity of resin-based composites and sealants used in dentistry.Environmental Health Perspectives, 104
Rosemary Steinmetz, Arthur Gutierrez-Hartmann, R. Bigsby, N. Ben-Jonathan (1994)
Activation of the prolactin promoter in transfected GH3 cells by posterior pituitary cells.Endocrinology, 135 6
J. Dymshitz, N. Ben-Jonathan (1991)
Coculture of anterior and posterior pituitary cells: selective stimulation of lactotrophs.Endocrinology, 128 5
G. Pelletier, N. Liao, N. Folléa, M. Govindan (1988)
Distribution of estrogen receptors in the rat pituitary as studied by in situ hybridizationMolecular and Cellular Endocrinology, 56
A. Corcia, R. Steinmetz, J. Liu, N. Ben-Jonathan (1993)
Coculturing posterior pituitary and GH3 cells: dramatic stimulation of prolactin gene expression.Endocrinology, 132 1
R. Burgett, P. Garris, N. Ben-Jonathan (1990)
Estradiol-induced prolactinomas: differential effects on dopamine in posterior pituitary and median eminenceBrain Research, 531
J. Hyde, N. Ben-Jonathan (1988)
Characterization of prolactin-releasing factor in the rat posterior pituitary.Endocrinology, 122 6
D. Feldman, L. Tökes, P. Stathis, S. Miller, W. Kurz, D. Harvey (1984)
Identification of 17 beta-estradiol as the estrogenic substance in Saccharomyces cerevisiae.Proceedings of the National Academy of Sciences of the United States of America, 81 15
AbstractEnvironmental estrogens (xenoestrogens) are a diverse group of chemicals that mimic estrogenic actions. Bisphenol A (BPA), a monomer of plastics used in many consumer products, has estrogenic activity in vitro. The pituitary lactotroph is a well established estrogen-responsive cell. The overall objective was to examine the effects of BPA on PRL release and explore its mechanism of action. The specific aims were to: 1) compare the potency of estradiol and BPA in stimulating PRL gene expression and release in vitro; 2) determine whether BPA increases PRL release in vivo; 3) examine if the in vivo estrogenic effects are mediated by PRL regulating factor from the posterior pituitary; and 4) examine if BPA regulates transcription through the estrogen response element (ERE).BPA increased PRL gene expression, release, and cell proliferation in anterior pituitary cells albeit at a 1000- to 5000-fold lower potency than estradiol. On the other hand, BPA had similar efficacy to estradiol in inducing hyperprolactinemia in estrogen-sensitive Fischer 344 (F344) rats; Sprague Dawley (SD) rats did not respond to BPA. Posterior pituitary cells from estradiol- or BPA-treated F344 rats strongly increased PRL gene expression upon coculture with GH3 cells stably transfected with a reporter gene. Similar to estradiol, BPA induced ERE activation in transiently transfected anterior and posterior pituitary cells.We conclude that: a) BPA mimics estradiol in inducing hyperprolactinemia in genetically predisposed rats; b) the in vivo action of estradiol and BPA in F344 rats is mediated, at least in part, by increasing PRL regulating factor activity in the posterior pituitary; c) BPA appears to regulate transcription through an ERE, suggesting that it binds to estrogen receptors in both the anterior and posterior pituitaries. The possibility that BPA and other xenoestrogens have adverse effects on the neuroendocrine axis in susceptible human subpopulations is discussed.
Endocrinology – Oxford University Press
Published: May 1, 1997
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