The genomic response of a human uterine endometrial adenocarcinoma cell line to 17alpha-ethynyl estradiol.
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George P Daston | Gregory J Carr | Jorge M Naciff | G. Daston | D. Singleton | Sohaib A. Khan | G. Carr | Jay P Tiesman | J. Tiesman | Zubin S Khambatta | Ryan G Thomason | David W Singleton | Sohaib A Khan | J. Naciff | R. Thomason | Z. Khambatta | R. G. Thomason
[1] M. Nishida,et al. [Establishment of a new human endometrial adenocarcinoma cell line, Ishikawa cells, containing estrogen and progesterone receptors]. , 1985, Nihon Sanka Fujinka Gakkai zasshi.
[2] G. Rho,et al. Effects of confluent, roscovitine treatment and serum starvation on the cell-cycle synchronization of bovine foetal fibroblasts. , 2005, Reproduction in domestic animals = Zuchthygiene.
[3] P. Satyaswaroop,et al. Characterization of the functional progesterone receptor in an endometrial adenocarcinoma cell line (Ishikawa): Progesterone-induced expression of the α1 integrin , 1996, The Journal of Steroid Biochemistry and Molecular Biology.
[4] G. Daston,et al. Evaluation of the gene expression changes induced by 17-alpha-ethynyl estradiol in the immature uterus/ovaries of the rat using high density oligonucleotide arrays. , 2005, Birth defects research. Part B, Developmental and reproductive toxicology.
[5] R. Hochberg,et al. A simple and sensitive microtiter plate estrogen bioassay based on stimulation of alkaline phosphatase in Ishikawa cells: estrogenic action of delta 5 adrenal steroids. , 1990, Endocrinology.
[6] H. Kuramoto,et al. Effects of estradiol on proliferation of endometrial adenocarcinoma cells (Ishikawa line). , 1986, Journal of steroid biochemistry.
[7] T. Speed,et al. GOstat: find statistically overrepresented Gene Ontologies within a group of genes. , 2004, Bioinformatics.
[8] J. Westendorf,et al. Comparison of an array of in vitro assays for the assessment of the estrogenic potential of natural and synthetic estrogens, phytoestrogens and xenoestrogens. , 2001, Toxicology.
[9] J. Croxtall,et al. Hormonal control of proliferation in the Ishikawa endometrial adenocarcinoma cell line. , 1990, Journal of steroid biochemistry.
[10] R. Kamps,et al. Oestrogen-modulated gene expression in the human endometrium , 2004, Cellular and Molecular Life Sciences CMLS.
[11] B. Lessey,et al. Characterization of androgen receptors in a well-differentiated endometrial adenocarcinoma cell line (Ishikawa) , 2000, The Journal of Steroid Biochemistry and Molecular Biology.
[12] K. Korach,et al. Estrogen receptors and human disease. , 2006, The Journal of clinical investigation.
[13] S. Bulun,et al. Aromatase inhibitors: the next generation of therapeutics for endometriosis? , 2006, Fertility and sterility.
[14] G. Daston,et al. Uterine temporal response to acute exposure to 17alpha-ethinyl estradiol in the immature rat. , 2007, Toxicological sciences : an official journal of the Society of Toxicology.
[15] L. Tentori,et al. Valproic acid increases the stimulatory effect of estrogens on proliferation of human endometrial adenocarcinoma cells. , 2003, Endocrinology.
[16] Suzanne M Johnson,et al. Ishikawa cells exhibit differential gene expression profiles in response to oestradiol or 4-hydroxytamoxifen. , 2007, Endocrine-related cancer.
[17] I. Christensen,et al. Cell cycle analysis of estrogen stimulation and antiestrogen inhibition of growth of the human breast cancer cell line MCF-7. , 1986, Breast cancer research and treatment.
[18] S. Andò,et al. The G protein-coupled receptor GPR30 mediates the proliferative effects induced by 17beta-estradiol and hydroxytamoxifen in endometrial cancer cells. , 2006, Molecular endocrinology.
[19] T. Yamori,et al. Comparative profiling of the gene expression for estrogen responsiveness in cultured human cell lines. , 2007, Toxicology in vitro : an international journal published in association with BIBRA.
[20] M. Denison,et al. Relationship between Estrogen Receptor-Binding and Estrogenic Activities of Environmental Estrogens and Suppression by Flavonoids , 2002, Bioscience, biotechnology, and biochemistry.
[21] G. Firestone,et al. Potent ligand-independent estrogen receptor activation by 3,3'-diindolylmethane is mediated by cross talk between the protein kinase A and mitogen-activated protein kinase signaling pathways. , 2004, Molecular endocrinology.
[22] H. Niemann,et al. Cell Cycle Synchronization of Porcine Fetal Fibroblasts: Effects of Serum Deprivation and Reversible Cell Cycle Inhibitors1 , 2000, Biology of reproduction.
[23] George P Daston,et al. Gene expression profile induced by 17 alpha-ethynyl estradiol in the prepubertal female reproductive system of the rat. , 2003, Toxicological sciences : an official journal of the Society of Toxicology.
[24] K. Bramlett,et al. Target specificity of selective estrogen receptor modulators within human endometrial cancer cells , 2003, The Journal of Steroid Biochemistry and Molecular Biology.
[25] Cliff Joslyn,et al. The Gene Ontology Categorizer , 2004, ISMB/ECCB.
[26] George P Daston,et al. Gene expression changes induced in the testis by transplacental exposure to high and low doses of 17{alpha}-ethynyl estradiol, genistein, or bisphenol A. , 2005, Toxicological sciences : an official journal of the Society of Toxicology.
[27] J. Pollard,et al. Cell growth and cell proliferation may be dissociated in the mouse uterine luminal epithelium treated with female sex steroids. , 1985, Experimental cell research.
[28] George P Daston,et al. Gene expression profile induced by 17alpha-ethynyl estradiol, bisphenol A, and genistein in the developing female reproductive system of the rat. , 2002, Toxicological sciences : an official journal of the Society of Toxicology.
[29] M. Nishida. The Ishikawa cells from birth to the present , 2002, Human Cell.
[30] Hilary O D Critchley,et al. Endocrine regulation of menstruation. , 2006, Endocrine reviews.