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Published in: Breast Cancer Research and Treatment 1/2009

01-03-2009 | Preclinical Study

Mammary tumor development from T47-D human breast cancer cells in obese ovariectomized mice with and without estradiol supplements

Authors: Katai J. Nkhata, Amitabha Ray, Soner Dogan, Joseph P. Grande, Margot P. Cleary

Published in: Breast Cancer Research and Treatment | Issue 1/2009

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Abstract

Obesity is a risk factor for postmenopausal breast cancer, particularly for development of estrogen-receptor (ER)-positive tumors. Additionally, obesity is implicated in breast cancer progression. However, few studies address mechanisms of action of how obesity mediates these responses. Our goal was to address how obesity and/or elevated serum leptin affects tumor formation from ER-positive T47-D cells. In Study 1 ovariectomized CD-1 nude female mice were injected with goldthioglucose (GTG) at 0.5 mg/g body weight in saline or the vehicle at 6 weeks of age. At 10 weeks of age mice were inoculated with T47-D cells and implanted with estrogen pellets. In Study 2 mice were injected with 0.3 mg/g GTG or the vehicle. At 10 weeks of age cells were inoculated and mice were implanted with estrogen or placebo pellets. Mice were followed until 30 weeks of age. Some GTG mice became obese and others were non-responders. In Study 1 no mice developed tumors. In Study 2 mice with placebo pellets developed more tumors than mice with estrogen pellets, 50% vs. 13%. GTG-obese mice with placebo pellets had a 100% tumor incidence compared to 50% and 20% for GTG-lean and controls without estrogen. Serum leptin was higher in obese compared to lean mice and adiponectin was not affected by body weight. Adiponectin:leptin ratio was significantly reduced in obese compared to lean mice. Leptin, leptin receptor and signaling protein expression were determined in mammary and tumor tissue. Leptin and STAT3 were most abundant in tumors. These findings suggest that in vivo estrogen suppressed proliferation of T47-D cells but without supplemental estrogen obesity enhanced tumor development. The exact reason for this is not presently clear.
Literature
1.
go back to reference Tehard B, Lahmann PH, Riboli E et al (2004) Anthropometry, breast cancer and menopausal status: use of repeated measurements over 10 years of follow-up-results of the French E3N women’s cohort study. Int J Cancer 111:264–269PubMedCrossRef Tehard B, Lahmann PH, Riboli E et al (2004) Anthropometry, breast cancer and menopausal status: use of repeated measurements over 10 years of follow-up-results of the French E3N women’s cohort study. Int J Cancer 111:264–269PubMedCrossRef
2.
go back to reference Sweeney C, Blair CK, Anderson KE et al (2004) Risk factors for breast cancer in elderly women. Am J Epidemiol 160:868–875PubMedCrossRef Sweeney C, Blair CK, Anderson KE et al (2004) Risk factors for breast cancer in elderly women. Am J Epidemiol 160:868–875PubMedCrossRef
3.
go back to reference Cleary MP, Maihle NJ (1997) The role of body mass index in the relative risk of developing premenopausal versus postmenopausal breast cancer. Proc Soc Exp Biol Med 216:28–43PubMed Cleary MP, Maihle NJ (1997) The role of body mass index in the relative risk of developing premenopausal versus postmenopausal breast cancer. Proc Soc Exp Biol Med 216:28–43PubMed
5.
go back to reference Adami HO, Rimsten A, Stenkvist B et al (1977) Influence of height, weight and obesity on risk of breast cancer in an unselected Swedish population. Br J Cancer 36:787–792PubMed Adami HO, Rimsten A, Stenkvist B et al (1977) Influence of height, weight and obesity on risk of breast cancer in an unselected Swedish population. Br J Cancer 36:787–792PubMed
6.
go back to reference Toti A, Agugiaro S, Amadori D et al (1986) Breast cancer risk factors in Italian women: a multicentric case-control study. Tumori 72:241–249PubMed Toti A, Agugiaro S, Amadori D et al (1986) Breast cancer risk factors in Italian women: a multicentric case-control study. Tumori 72:241–249PubMed
7.
go back to reference Velie EM, Nechuta S, Osuch JR (2005) Lifetime reproductive and anthropometric risk factors for breast cancer in postmenopausal women. Breast Dis 24:17–35PubMed Velie EM, Nechuta S, Osuch JR (2005) Lifetime reproductive and anthropometric risk factors for breast cancer in postmenopausal women. Breast Dis 24:17–35PubMed
8.
go back to reference Harvie M, Howell A, Vierkant RA et al (2005) Association of gain and loss of weight before and after menopause with risk of postmenopausal breast cancer in the Iowa women’s health study. Cancer Epidemiol Biomarkers Prev 14:656–661PubMedCrossRef Harvie M, Howell A, Vierkant RA et al (2005) Association of gain and loss of weight before and after menopause with risk of postmenopausal breast cancer in the Iowa women’s health study. Cancer Epidemiol Biomarkers Prev 14:656–661PubMedCrossRef
9.
go back to reference Lahmann PH, Hoffmann K, Allen N et al (2004) Body size and breast cancer risk: findings from the European Prospective Investigation into Cancer And Nutrition (EPIC). Int J Cancer 111:762–771PubMedCrossRef Lahmann PH, Hoffmann K, Allen N et al (2004) Body size and breast cancer risk: findings from the European Prospective Investigation into Cancer And Nutrition (EPIC). Int J Cancer 111:762–771PubMedCrossRef
10.
go back to reference Zhu K, Caulfield J, Hunter S et al (2005) Body mass index and breast cancer risk in African American women. Ann Epidemiol 15:123–128PubMedCrossRef Zhu K, Caulfield J, Hunter S et al (2005) Body mass index and breast cancer risk in African American women. Ann Epidemiol 15:123–128PubMedCrossRef
11.
go back to reference Mehta RR, Hart G, Das Gupta TK (1992) Steroid receptors in breast cancer patients. Influence of obesity and age at diagnosis. Anticancer Res 12:1311–1314PubMed Mehta RR, Hart G, Das Gupta TK (1992) Steroid receptors in breast cancer patients. Influence of obesity and age at diagnosis. Anticancer Res 12:1311–1314PubMed
12.
go back to reference Nomura Y, Tashiro H, Hamada Y et al (1984) Relationship between estrogen receptors and risk factors of breast cancer in Japanese pre- and postmenopausal patients. Breast Cancer Res Treat 4:37–43PubMedCrossRef Nomura Y, Tashiro H, Hamada Y et al (1984) Relationship between estrogen receptors and risk factors of breast cancer in Japanese pre- and postmenopausal patients. Breast Cancer Res Treat 4:37–43PubMedCrossRef
14.
go back to reference Vona-Davis L, Howard-McNatt M, Rose DP (2007) Adiposity, type 2 diabetes and the metabolic syndrome in breast cancer. Obes Rev 8:395–408PubMedCrossRef Vona-Davis L, Howard-McNatt M, Rose DP (2007) Adiposity, type 2 diabetes and the metabolic syndrome in breast cancer. Obes Rev 8:395–408PubMedCrossRef
15.
go back to reference Greenberg JA, Boozer CN (1999) The leptin-fat ratio is constant, and leptin may be part of two feedback mechanisms for maintaining the body fat set point in non-obese male Fischer 344 rats. Horm Metab Res 31:525–532PubMedCrossRef Greenberg JA, Boozer CN (1999) The leptin-fat ratio is constant, and leptin may be part of two feedback mechanisms for maintaining the body fat set point in non-obese male Fischer 344 rats. Horm Metab Res 31:525–532PubMedCrossRef
16.
go back to reference Shimizu H, Shimomura Y, Hayashi R et al (1997) Serum leptin concentration is associated with total body fat mass, but not abdominal fat distribution. Int J Obes Relat Metab Disord 21:536–541PubMedCrossRef Shimizu H, Shimomura Y, Hayashi R et al (1997) Serum leptin concentration is associated with total body fat mass, but not abdominal fat distribution. Int J Obes Relat Metab Disord 21:536–541PubMedCrossRef
17.
go back to reference Havel PJ, Kasim-Karakas S, Mueller W et al (1996) Relationship of plasma leptin to plasma insulin and adiposity in normal weight and overweight women: effects of dietary fat content and sustained weight loss. J Clin Endocrinol Metab 81:4406–4413PubMedCrossRef Havel PJ, Kasim-Karakas S, Mueller W et al (1996) Relationship of plasma leptin to plasma insulin and adiposity in normal weight and overweight women: effects of dietary fat content and sustained weight loss. J Clin Endocrinol Metab 81:4406–4413PubMedCrossRef
18.
go back to reference Ostlund RE, Jr., Yang JW, Klein S et al (1996) Relation between plasma leptin concentration and body fat, gender, diet, age, and metabolic covariates. J Clin Endocrinol Metab 81:3909–3913PubMedCrossRef Ostlund RE, Jr., Yang JW, Klein S et al (1996) Relation between plasma leptin concentration and body fat, gender, diet, age, and metabolic covariates. J Clin Endocrinol Metab 81:3909–3913PubMedCrossRef
19.
go back to reference Hu X, Juneja SC, Maihle NJ et al (2002) Leptin-a growth factor in normal and malignant breast cells and for normal mammary gland development. J Natl Cancer Inst 94:1704–1711PubMed Hu X, Juneja SC, Maihle NJ et al (2002) Leptin-a growth factor in normal and malignant breast cells and for normal mammary gland development. J Natl Cancer Inst 94:1704–1711PubMed
20.
go back to reference Laud K, Gourdou I, Pessemesse L et al (2002) Identification of leptin receptors in human breast cancer: functional activity in the T47-D breast cancer cell line. Mol Cell Endocrinol 188:219–226PubMedCrossRef Laud K, Gourdou I, Pessemesse L et al (2002) Identification of leptin receptors in human breast cancer: functional activity in the T47-D breast cancer cell line. Mol Cell Endocrinol 188:219–226PubMedCrossRef
21.
go back to reference Dieudonne MN, Machinal-Quelin F, Serazin-Leroy V et al (2002) Leptin mediates a proliferative response in human MCF7 breast cancer cells. Biochem Biophys Res Commun 293:622–628PubMedCrossRef Dieudonne MN, Machinal-Quelin F, Serazin-Leroy V et al (2002) Leptin mediates a proliferative response in human MCF7 breast cancer cells. Biochem Biophys Res Commun 293:622–628PubMedCrossRef
22.
go back to reference Yin N, Wang D, Zhang H et al (2004) Molecular mechanisms involved in the growth stimulation of breast cancer cells by leptin. Cancer Res 64:5870–5875PubMedCrossRef Yin N, Wang D, Zhang H et al (2004) Molecular mechanisms involved in the growth stimulation of breast cancer cells by leptin. Cancer Res 64:5870–5875PubMedCrossRef
23.
go back to reference Chen C, Chang YC, Liu CL et al (2006) Leptin-induced growth of human ZR-75-1 breast cancer cells is associated with up-regulation of cyclin D1 and c-Myc and down-regulation of tumor suppressor p53 and p21WAF1/CIP1. Breast Cancer Res Treat 98:121–132PubMedCrossRef Chen C, Chang YC, Liu CL et al (2006) Leptin-induced growth of human ZR-75-1 breast cancer cells is associated with up-regulation of cyclin D1 and c-Myc and down-regulation of tumor suppressor p53 and p21WAF1/CIP1. Breast Cancer Res Treat 98:121–132PubMedCrossRef
24.
go back to reference Ray A, Nkhata KJ, Cleary MP (2007) Effects of leptin on human breast cancer cell lines in relationship to estrogen receptor and HER2 status. Int J Oncol 30:1499–1509PubMed Ray A, Nkhata KJ, Cleary MP (2007) Effects of leptin on human breast cancer cell lines in relationship to estrogen receptor and HER2 status. Int J Oncol 30:1499–1509PubMed
25.
go back to reference Frankenberry KA, Skinner H, Somasundar P et al (2006) Leptin receptor expression and cell signaling in breast cancer. Int J Oncol 28:985–993PubMed Frankenberry KA, Skinner H, Somasundar P et al (2006) Leptin receptor expression and cell signaling in breast cancer. Int J Oncol 28:985–993PubMed
26.
go back to reference Cleary MP, Hu X, Grossmann ME et al (2007) Prevention of mammary tumorigenesis by intermittent caloric restriction: does caloric intake during refeeding modulate the response? Exp Biol Med (Maywood) 232:70–80 Cleary MP, Hu X, Grossmann ME et al (2007) Prevention of mammary tumorigenesis by intermittent caloric restriction: does caloric intake during refeeding modulate the response? Exp Biol Med (Maywood) 232:70–80
27.
go back to reference Ishikawa M, Kitayama J, Nagawa H (2004) Enhanced expression of leptin and leptin receptor (OB-R) in human breast cancer. Clin Cancer Res 10:4325–4331PubMedCrossRef Ishikawa M, Kitayama J, Nagawa H (2004) Enhanced expression of leptin and leptin receptor (OB-R) in human breast cancer. Clin Cancer Res 10:4325–4331PubMedCrossRef
28.
go back to reference Garofalo C, Koda M, Cascio S et al (2006) Increased expression of leptin and the leptin receptor as a marker of breast cancer progression: possible role of obesity-related stimuli. Clin Cancer Res 12:1447–1453PubMedCrossRef Garofalo C, Koda M, Cascio S et al (2006) Increased expression of leptin and the leptin receptor as a marker of breast cancer progression: possible role of obesity-related stimuli. Clin Cancer Res 12:1447–1453PubMedCrossRef
29.
go back to reference Nakayama S, Miyoshi Y, Ishihara H et al Growth-inhibitory effect of adiponectin via adiponectin receptor 1 on human breast cancer cells through inhibition of S-phase entry without inducing apoptosis. Breast Cancer Res Treat [Epub PMID: 18163210] Nakayama S, Miyoshi Y, Ishihara H et al Growth-inhibitory effect of adiponectin via adiponectin receptor 1 on human breast cancer cells through inhibition of S-phase entry without inducing apoptosis. Breast Cancer Res Treat [Epub PMID: 18163210]
30.
go back to reference Arditi JD, Venihaki M, Karalis KP et al (2007) Antiproliferative effect of adiponectin on MCF7 breast cancer cells: a potential hormonal link between obesity and cancer. Horm Metab Res 39:9–13PubMedCrossRef Arditi JD, Venihaki M, Karalis KP et al (2007) Antiproliferative effect of adiponectin on MCF7 breast cancer cells: a potential hormonal link between obesity and cancer. Horm Metab Res 39:9–13PubMedCrossRef
31.
go back to reference Cleary MP, Phillips FC, Getzin SC et al (2003) Genetically obese MMTV-TGF-alpha/Lep(ob)Lep(ob) female mice do not develop mammary tumors. Breast Cancer Res Treat 77:205–215PubMedCrossRef Cleary MP, Phillips FC, Getzin SC et al (2003) Genetically obese MMTV-TGF-alpha/Lep(ob)Lep(ob) female mice do not develop mammary tumors. Breast Cancer Res Treat 77:205–215PubMedCrossRef
32.
go back to reference Cleary MP, Juneja SC, Phillips FC et al (2004) Leptin receptor-deficient MMTV-TGF-alpha/Lepr(db)Lepr(db) female mice do not develop oncogene-induced mammary tumors. Exp Biol Med (Maywood) 229:182–193 Cleary MP, Juneja SC, Phillips FC et al (2004) Leptin receptor-deficient MMTV-TGF-alpha/Lepr(db)Lepr(db) female mice do not develop oncogene-induced mammary tumors. Exp Biol Med (Maywood) 229:182–193
33.
go back to reference Halter SA, Dempsey P, Matsui Y et al (1992) Distinctive patterns of hyperplasia in transgenic mice with mouse mammary tumor virus transforming growth factor-alpha. Characterization of mammary gland and skin proliferations. Am J Pathol 140:1131–1146PubMed Halter SA, Dempsey P, Matsui Y et al (1992) Distinctive patterns of hyperplasia in transgenic mice with mouse mammary tumor virus transforming growth factor-alpha. Characterization of mammary gland and skin proliferations. Am J Pathol 140:1131–1146PubMed
34.
go back to reference Cleary MP, Grande JP, Maihle NJ (2004) Effect of high fat diet on body weight and mammary tumor latency in MMTV-TGF-alpha mice. Int J Obes Relat Metab Disord 28:956–962PubMedCrossRef Cleary MP, Grande JP, Maihle NJ (2004) Effect of high fat diet on body weight and mammary tumor latency in MMTV-TGF-alpha mice. Int J Obes Relat Metab Disord 28:956–962PubMedCrossRef
35.
go back to reference Cleary MP, Grande JP, Juneja SC et al (2004) Diet-induced obesity and mammary tumor development in MMTV-neu female mice. Nutr Cancer 50:174–180PubMedCrossRef Cleary MP, Grande JP, Juneja SC et al (2004) Diet-induced obesity and mammary tumor development in MMTV-neu female mice. Nutr Cancer 50:174–180PubMedCrossRef
36.
go back to reference Ray A, Nkhata KJ, Grande JP et al (2007) Diet-induced obesity and mammary tumor development in relation to estrogen receptor status. Cancer Lett 253:291–300PubMedCrossRef Ray A, Nkhata KJ, Grande JP et al (2007) Diet-induced obesity and mammary tumor development in relation to estrogen receptor status. Cancer Lett 253:291–300PubMedCrossRef
37.
go back to reference Bergen HT, Mizuno TM, Taylor J et al (1998) Hyperphagia and weight gain after gold-thioglucose: relation to hypothalamic neuropeptide Y and proopiomelanocortin. Endocrinology 139:4483–4488PubMedCrossRef Bergen HT, Mizuno TM, Taylor J et al (1998) Hyperphagia and weight gain after gold-thioglucose: relation to hypothalamic neuropeptide Y and proopiomelanocortin. Endocrinology 139:4483–4488PubMedCrossRef
38.
go back to reference Waxler SH, Brecher G (1950) Obesity and food requirements in albino mice following administration of goldthioglucose. Am J Physiol 162:428–433PubMed Waxler SH, Brecher G (1950) Obesity and food requirements in albino mice following administration of goldthioglucose. Am J Physiol 162:428–433PubMed
39.
go back to reference Walker CG, Bryson JM, Phuyal JL et al (2002) Dietary modulation of circulating leptin levels: site-specific changes in fat deposition and ob mRNA expression. Horm Metab Res 34:176–181PubMedCrossRef Walker CG, Bryson JM, Phuyal JL et al (2002) Dietary modulation of circulating leptin levels: site-specific changes in fat deposition and ob mRNA expression. Horm Metab Res 34:176–181PubMedCrossRef
40.
go back to reference Jansen GR (1999) Effect of delta22-5beta-taurocholenic acid on hepatic cholesterol and fatty acid in gold thioglucose obese mice fed low- or high-fat diets. J Nutr Biochem 10:638–643PubMedCrossRef Jansen GR (1999) Effect of delta22-5beta-taurocholenic acid on hepatic cholesterol and fatty acid in gold thioglucose obese mice fed low- or high-fat diets. J Nutr Biochem 10:638–643PubMedCrossRef
41.
go back to reference Roberts JL, Whittington FM, Enser M (1988) Effects of litter size and subsequent gold-thioglucose-induced obesity on adipose tissue weight, distribution and cellularity in male and female mice: an age study. Br J Nutr 59:519–533PubMedCrossRef Roberts JL, Whittington FM, Enser M (1988) Effects of litter size and subsequent gold-thioglucose-induced obesity on adipose tissue weight, distribution and cellularity in male and female mice: an age study. Br J Nutr 59:519–533PubMedCrossRef
42.
go back to reference Morris JS, Carter NP, Ferguson-Smith MA et al (1997) Cytogenetic analysis of three breast carcinoma cell lines using reverse chromosome painting. Genes Chromosomes Cancer 20:120–139PubMedCrossRef Morris JS, Carter NP, Ferguson-Smith MA et al (1997) Cytogenetic analysis of three breast carcinoma cell lines using reverse chromosome painting. Genes Chromosomes Cancer 20:120–139PubMedCrossRef
43.
go back to reference Kytola S, Rummukainen J, Nordgren A et al (2000) Chromosomal alterations in 15 breast cancer cell lines by comparative genomic hybridization and spectral karyotyping. Genes Chromosomes Cancer 28:308–317PubMedCrossRef Kytola S, Rummukainen J, Nordgren A et al (2000) Chromosomal alterations in 15 breast cancer cell lines by comparative genomic hybridization and spectral karyotyping. Genes Chromosomes Cancer 28:308–317PubMedCrossRef
44.
go back to reference Oliveira AM, Ross JS, Fletcher JA (2005) Tumor suppressor genes in breast cancer: the gatekeepers and the caretakers. Am J Clin Path 124:S16–28PubMed Oliveira AM, Ross JS, Fletcher JA (2005) Tumor suppressor genes in breast cancer: the gatekeepers and the caretakers. Am J Clin Path 124:S16–28PubMed
45.
go back to reference Casey G, Lo-Hsueh M, Lopez ME et al (1991) Growth suppression of human breast cancer cells by the introduction of a wild-type p53 gene. Oncogene 6:1791–1797PubMed Casey G, Lo-Hsueh M, Lopez ME et al (1991) Growth suppression of human breast cancer cells by the introduction of a wild-type p53 gene. Oncogene 6:1791–1797PubMed
46.
go back to reference Liang Y, Wu J, Stancel GM et al (2005) p53-dependent inhibition of progestin-induced VEGF expression in human breast cancer cells. J Steroid Biochem Mol Biol 93:173–182PubMedCrossRef Liang Y, Wu J, Stancel GM et al (2005) p53-dependent inhibition of progestin-induced VEGF expression in human breast cancer cells. J Steroid Biochem Mol Biol 93:173–182PubMedCrossRef
47.
go back to reference Bryson JM, Wensley VR, Phuyal JL et al (1999) Chronic administration of BRL 26830A for 9 weeks improves insulin sensitivity but does not prevent weight gain in gold-thioglucose obese mice. Horm Metab Res 31:317–322PubMedCrossRef Bryson JM, Wensley VR, Phuyal JL et al (1999) Chronic administration of BRL 26830A for 9 weeks improves insulin sensitivity but does not prevent weight gain in gold-thioglucose obese mice. Horm Metab Res 31:317–322PubMedCrossRef
48.
go back to reference Johnson PR, Hirsch J (1972) Cellularity of adipose depots in six strains of genetically obese mice. J Lipid Res 13:2–11PubMed Johnson PR, Hirsch J (1972) Cellularity of adipose depots in six strains of genetically obese mice. J Lipid Res 13:2–11PubMed
49.
go back to reference Siegmund B, Lear-Kaul KC, Faggioni R et al (2002) Leptin deficiency, not obesity, protects mice from Con A-induced hepatitis. Eur J Immunol 32:552–560PubMedCrossRef Siegmund B, Lear-Kaul KC, Faggioni R et al (2002) Leptin deficiency, not obesity, protects mice from Con A-induced hepatitis. Eur J Immunol 32:552–560PubMedCrossRef
50.
go back to reference Toth MJ, Poehlman ET, Matthews DE et al (2001) Effects of estradiol and progesterone on body composition, protein synthesis, and lipoprotein lipase in rats. Am J Physiol Endocrinol Metab 280:E496–E501PubMed Toth MJ, Poehlman ET, Matthews DE et al (2001) Effects of estradiol and progesterone on body composition, protein synthesis, and lipoprotein lipase in rats. Am J Physiol Endocrinol Metab 280:E496–E501PubMed
51.
go back to reference D’Eon TM, Souza SC, Aronovitz M et al (2005) Estrogen regulation of adiposity and fuel partitioning. Evidence of genomic and non-genomic regulation of lipogenic and oxidative pathways. J Biol Chem 280:35983–35991PubMedCrossRef D’Eon TM, Souza SC, Aronovitz M et al (2005) Estrogen regulation of adiposity and fuel partitioning. Evidence of genomic and non-genomic regulation of lipogenic and oxidative pathways. J Biol Chem 280:35983–35991PubMedCrossRef
52.
go back to reference Keydar I, Chen L, Karby S et al (1979) Establishment and characterization of a cell line of human breast carcinoma origin. Eur J Cancer 15:659–670PubMed Keydar I, Chen L, Karby S et al (1979) Establishment and characterization of a cell line of human breast carcinoma origin. Eur J Cancer 15:659–670PubMed
53.
go back to reference Lacroix M, Leclercq G (2004) Relevance of breast cancer cell lines as models for breast tumours: an update. Breast Cancer Res Treat 83:249–289PubMedCrossRef Lacroix M, Leclercq G (2004) Relevance of breast cancer cell lines as models for breast tumours: an update. Breast Cancer Res Treat 83:249–289PubMedCrossRef
54.
go back to reference Chen NY, Holle L, Li W et al (2002) In vivo studies of the anti-tumor effects of a human prolactin antagonist, hPRL-G129R. Int J Oncol 20:813–818PubMed Chen NY, Holle L, Li W et al (2002) In vivo studies of the anti-tumor effects of a human prolactin antagonist, hPRL-G129R. Int J Oncol 20:813–818PubMed
55.
go back to reference Leung CK, Shiu RP (1981) Required presence of both estrogen and pituitary factors for the growth of human breast cancer cells in athymic nude mice. Cancer Res 41:546–551PubMed Leung CK, Shiu RP (1981) Required presence of both estrogen and pituitary factors for the growth of human breast cancer cells in athymic nude mice. Cancer Res 41:546–551PubMed
56.
go back to reference Schafer JM, Lee ES, O’Regan RM et al (2000) Rapid development of tamoxifen-stimulated mutant p53 breast tumors (T47D) in athymic mice. Clin Cancer Res 6:4373–4380PubMed Schafer JM, Lee ES, O’Regan RM et al (2000) Rapid development of tamoxifen-stimulated mutant p53 breast tumors (T47D) in athymic mice. Clin Cancer Res 6:4373–4380PubMed
57.
go back to reference Chisamore MJ, Ahmed Y, Bentrem DJ et al (2001) Novel antitumor effect of estradiol in athymic mice injected with a T47D breast cancer cell line overexpressing protein kinase Calpha. Clin Cancer Res 7:3156–3165PubMed Chisamore MJ, Ahmed Y, Bentrem DJ et al (2001) Novel antitumor effect of estradiol in athymic mice injected with a T47D breast cancer cell line overexpressing protein kinase Calpha. Clin Cancer Res 7:3156–3165PubMed
58.
go back to reference Tonetti DA, Chisamore MJ, Grdina W et al (2000) Stable transfection of protein kinase C alpha cDNA in hormone-dependent breast cancer cell lines. Br J Cancer 83:782–791PubMedCrossRef Tonetti DA, Chisamore MJ, Grdina W et al (2000) Stable transfection of protein kinase C alpha cDNA in hormone-dependent breast cancer cell lines. Br J Cancer 83:782–791PubMedCrossRef
59.
go back to reference Parente JE, Walsh MP, Girard PR et al (1989) Effects of gold coordination complexes on neutrophil function are mediated via inhibition of protein kinase C. Mol Pharmacol 35:26–33PubMed Parente JE, Walsh MP, Girard PR et al (1989) Effects of gold coordination complexes on neutrophil function are mediated via inhibition of protein kinase C. Mol Pharmacol 35:26–33PubMed
60.
go back to reference Hashimoto K, Whitehurst CE, Matsubara T et al (1992) Immunomodulatory effects of therapeutic gold compounds. Gold sodium thiomalate inhibits the activity of T cell protein kinase C. J Clin Invest 89:1839–1848PubMedCrossRef Hashimoto K, Whitehurst CE, Matsubara T et al (1992) Immunomodulatory effects of therapeutic gold compounds. Gold sodium thiomalate inhibits the activity of T cell protein kinase C. J Clin Invest 89:1839–1848PubMedCrossRef
61.
go back to reference Burmester GR (2001) Molecular mechanisms of action of gold in treatment of rheumatoid arthritis—an update. Z Rheumatol 60:167–173PubMedCrossRef Burmester GR (2001) Molecular mechanisms of action of gold in treatment of rheumatoid arthritis—an update. Z Rheumatol 60:167–173PubMedCrossRef
62.
go back to reference Meldrum DR, Meng X, Sheridan BC et al (1998) Tissue-specific protein kinase C isoforms differentially mediate macrophage TNFalpha and IL-1beta production. Shock 9:256–260PubMedCrossRef Meldrum DR, Meng X, Sheridan BC et al (1998) Tissue-specific protein kinase C isoforms differentially mediate macrophage TNFalpha and IL-1beta production. Shock 9:256–260PubMedCrossRef
63.
go back to reference St-Denis A, Chano F, Tremblay P et al (1998) Protein kinase C-alpha modulates lipopolysaccharide-induced functions in a murine macrophage cell line. J Biol Chem 273:32787–32792PubMedCrossRef St-Denis A, Chano F, Tremblay P et al (1998) Protein kinase C-alpha modulates lipopolysaccharide-induced functions in a murine macrophage cell line. J Biol Chem 273:32787–32792PubMedCrossRef
64.
go back to reference Rivadeneira DE, Grobmyer SR, Naama HA et al (2001) Malnutrition-induced macrophage apoptosis. Surgery 129:617–625PubMedCrossRef Rivadeneira DE, Grobmyer SR, Naama HA et al (2001) Malnutrition-induced macrophage apoptosis. Surgery 129:617–625PubMedCrossRef
65.
go back to reference Hide I (2003) Mechanism of production and release of tumor necrosis factor implicated in inflammatory diseases. Nippon Yakurigaku Zasshi 121:163–173PubMed Hide I (2003) Mechanism of production and release of tumor necrosis factor implicated in inflammatory diseases. Nippon Yakurigaku Zasshi 121:163–173PubMed
66.
go back to reference Nadra I, Mason JC, Philippidis P et al (2005) Proinflammatory activation of macrophages by basic calcium phosphate crystals via protein kinase C and MAP kinase pathways: a vicious cycle of inflammation and arterial calcification? Circ Res 96:1248–1256PubMedCrossRef Nadra I, Mason JC, Philippidis P et al (2005) Proinflammatory activation of macrophages by basic calcium phosphate crystals via protein kinase C and MAP kinase pathways: a vicious cycle of inflammation and arterial calcification? Circ Res 96:1248–1256PubMedCrossRef
67.
go back to reference Arnott CH, Scott KA, Moore RJ et al (2002) Tumor necrosis factor-alpha mediates tumor promotion via a PKC alpha- and AP-1-dependent pathway. Oncogene 21:4728–4738PubMedCrossRef Arnott CH, Scott KA, Moore RJ et al (2002) Tumor necrosis factor-alpha mediates tumor promotion via a PKC alpha- and AP-1-dependent pathway. Oncogene 21:4728–4738PubMedCrossRef
68.
go back to reference Pandey M, Loskutoff DJ, Samad F (2005) Molecular mechanisms of tumor necrosis factor-alpha-mediated plasminogen activator inhibitor-1 expression in adipocytes. FASEB J 19:1317–1319PubMed Pandey M, Loskutoff DJ, Samad F (2005) Molecular mechanisms of tumor necrosis factor-alpha-mediated plasminogen activator inhibitor-1 expression in adipocytes. FASEB J 19:1317–1319PubMed
69.
go back to reference Jee SH, Kim HJ, Lee J (2005) Obesity, insulin resistance and cancer risk. Yonsei Med J 46:449–455PubMedCrossRef Jee SH, Kim HJ, Lee J (2005) Obesity, insulin resistance and cancer risk. Yonsei Med J 46:449–455PubMedCrossRef
70.
go back to reference Tilg H, Moschen AR (2006) Adipocytokines: mediators linking adipose tissue, inflammation and immunity. Nat Rev Immunol 6:772–783PubMedCrossRef Tilg H, Moschen AR (2006) Adipocytokines: mediators linking adipose tissue, inflammation and immunity. Nat Rev Immunol 6:772–783PubMedCrossRef
71.
72.
go back to reference Clevenger CV, Furth PA, Hankinson SE et al (2003) The role of prolactin in mammary carcinoma. Endocr Rev 24:1–27PubMedCrossRef Clevenger CV, Furth PA, Hankinson SE et al (2003) The role of prolactin in mammary carcinoma. Endocr Rev 24:1–27PubMedCrossRef
73.
go back to reference Ormandy CJ, Hall RE, Manning DL et al (1997) Coexpression and cross-regulation of the prolactin receptor and sex steroid hormone receptors in breast cancer. J Clin Endocrinol Metab 82:3692–3699PubMedCrossRef Ormandy CJ, Hall RE, Manning DL et al (1997) Coexpression and cross-regulation of the prolactin receptor and sex steroid hormone receptors in breast cancer. J Clin Endocrinol Metab 82:3692–3699PubMedCrossRef
74.
go back to reference Favy DA, Rio P, Maurizis JC et al (1999) Prolactin-dependent up-regulation of BRCA1 expression in human breast cancer cell lines. Biochem Biophys Res Commun 258:284–291PubMedCrossRef Favy DA, Rio P, Maurizis JC et al (1999) Prolactin-dependent up-regulation of BRCA1 expression in human breast cancer cell lines. Biochem Biophys Res Commun 258:284–291PubMedCrossRef
75.
go back to reference Ramamoorthy P, Sticca R, Wagner TE et al (2001) In vitro studies of a prolactin antagonist, hPRL-G129R in human breast cancer cells. Int J Oncol 18:25–32PubMed Ramamoorthy P, Sticca R, Wagner TE et al (2001) In vitro studies of a prolactin antagonist, hPRL-G129R in human breast cancer cells. Int J Oncol 18:25–32PubMed
76.
go back to reference Huang Y, Li X, Jiang J et al (2006) Prolactin modulates phophorylation, signaling and trafficking of epidermal growth factor receptor in human T47D breast cancer cells. Oncogene 25:7565–7576PubMedCrossRef Huang Y, Li X, Jiang J et al (2006) Prolactin modulates phophorylation, signaling and trafficking of epidermal growth factor receptor in human T47D breast cancer cells. Oncogene 25:7565–7576PubMedCrossRef
77.
go back to reference Duan R, Ginsburg E, Vonderhaar BK (2008) Estrogen stimulates transcription from the human prolactin distal promoter through AP1 and estrogen responsive elements in T47D human breast cancer cells. Mol Cell Endocrinol 281:9–18PubMedCrossRef Duan R, Ginsburg E, Vonderhaar BK (2008) Estrogen stimulates transcription from the human prolactin distal promoter through AP1 and estrogen responsive elements in T47D human breast cancer cells. Mol Cell Endocrinol 281:9–18PubMedCrossRef
78.
go back to reference Utama FE, LeBaron MJ, Neilson LM et al (2006) Human prolactin receptors are insensitive to mouse prolactin: implications for xenotransplant modeling of human breast cancer in mice. J Endocrinol 188:589–601PubMedCrossRef Utama FE, LeBaron MJ, Neilson LM et al (2006) Human prolactin receptors are insensitive to mouse prolactin: implications for xenotransplant modeling of human breast cancer in mice. J Endocrinol 188:589–601PubMedCrossRef
79.
go back to reference Williams C, Edvardsson K, Lewandowski SA et al (2008) A genome-wide study of the repressive effects of estrogen receptor beta on estrogen receptor alpha signaling in breast cancer cells. Oncogene 27:1019–1032PubMedCrossRef Williams C, Edvardsson K, Lewandowski SA et al (2008) A genome-wide study of the repressive effects of estrogen receptor beta on estrogen receptor alpha signaling in breast cancer cells. Oncogene 27:1019–1032PubMedCrossRef
80.
go back to reference Hartman J, Lindberg K, Morani A et al (2006) Estrogen receptor beta inhibits angiogenesis and growth of T47D breast cancer xenografts. Cancer Res 66:11207–11213PubMedCrossRef Hartman J, Lindberg K, Morani A et al (2006) Estrogen receptor beta inhibits angiogenesis and growth of T47D breast cancer xenografts. Cancer Res 66:11207–11213PubMedCrossRef
81.
go back to reference Vladusic EA, Hornby AE, Guerra-Vladusic FK et al (2000) Expression and regulation of estrogen receptor beta in human breast tumors and cell lines. Oncol Rep 7:157–167PubMed Vladusic EA, Hornby AE, Guerra-Vladusic FK et al (2000) Expression and regulation of estrogen receptor beta in human breast tumors and cell lines. Oncol Rep 7:157–167PubMed
82.
go back to reference Power KA, Thompson LU (2003) Ligand-induced regulation of ERalpha and ERbeta is indicative of human breast cancer cell proliferation. Breast Cancer Res Treat 81:209–221PubMedCrossRef Power KA, Thompson LU (2003) Ligand-induced regulation of ERalpha and ERbeta is indicative of human breast cancer cell proliferation. Breast Cancer Res Treat 81:209–221PubMedCrossRef
83.
go back to reference Key T, Appleby P, Barnes I et al (2002) Endogenous sex hormones and breast cancer in postmenopausal women: reanalysis of nine prospective studies. J Natl Cancer Inst 94:606–616PubMed Key T, Appleby P, Barnes I et al (2002) Endogenous sex hormones and breast cancer in postmenopausal women: reanalysis of nine prospective studies. J Natl Cancer Inst 94:606–616PubMed
84.
go back to reference Fortunati N, Catalano MG (2006) Sex hormone-binding globulin (SHBG) and estradiol cross-talk in breast cancer cells. Horm Metab Res 38:236–240PubMedCrossRef Fortunati N, Catalano MG (2006) Sex hormone-binding globulin (SHBG) and estradiol cross-talk in breast cancer cells. Horm Metab Res 38:236–240PubMedCrossRef
85.
go back to reference Germain P, Egloff M, Kiefer H et al (1997) Use of confocal microscopy to localize the SHBG interaction with human breast cancer cell lines—a comparison with serum albumin interaction. Cell Mol Biol 43:501–508PubMed Germain P, Egloff M, Kiefer H et al (1997) Use of confocal microscopy to localize the SHBG interaction with human breast cancer cell lines—a comparison with serum albumin interaction. Cell Mol Biol 43:501–508PubMed
86.
go back to reference Murayama Y, Hammond GL, Sugihara K (1999) The shbg gene and hormone dependence of breast cancer: a novel mechanism of hormone dependence of MCF-7 human breast cancer cells based upon SHBG. Breast Cancer 6:338–343PubMedCrossRef Murayama Y, Hammond GL, Sugihara K (1999) The shbg gene and hormone dependence of breast cancer: a novel mechanism of hormone dependence of MCF-7 human breast cancer cells based upon SHBG. Breast Cancer 6:338–343PubMedCrossRef
87.
go back to reference Hegyi K, Fulop K, Kovacs K et al (2004) Leptin-induced signal transduction pathways. Cell Biol Int 28:159–169PubMedCrossRef Hegyi K, Fulop K, Kovacs K et al (2004) Leptin-induced signal transduction pathways. Cell Biol Int 28:159–169PubMedCrossRef
89.
90.
go back to reference Clevenger CV (2004) Roles and regulation of stat family transcription factors in human breast cancer. Am J Pathol 165:1449–1460PubMed Clevenger CV (2004) Roles and regulation of stat family transcription factors in human breast cancer. Am J Pathol 165:1449–1460PubMed
91.
go back to reference Catalano S, Mauro L, Marsico S et al (2004) Leptin induces, via ERK1/ERK2 signal, functional activation of estrogen receptor α in MCF-7 cells. J Biol Chem 279:19908–19915PubMedCrossRef Catalano S, Mauro L, Marsico S et al (2004) Leptin induces, via ERK1/ERK2 signal, functional activation of estrogen receptor α in MCF-7 cells. J Biol Chem 279:19908–19915PubMedCrossRef
92.
go back to reference Tessitore L, Vizio B, Pesola D et al (2004) adipocyte expression and circulating levels of leptin increase in both gynaecological and breast cancer patients. Int J Oncol 24:1529–1535PubMed Tessitore L, Vizio B, Pesola D et al (2004) adipocyte expression and circulating levels of leptin increase in both gynaecological and breast cancer patients. Int J Oncol 24:1529–1535PubMed
93.
go back to reference Garofalo C, Sisci D, Surmacz E (2004) Leptin interferes with the effects of the antiestrogen ICI182,780 in MCF-7 breast cancer cells. Clin Cancer Res 10:6466–6475PubMedCrossRef Garofalo C, Sisci D, Surmacz E (2004) Leptin interferes with the effects of the antiestrogen ICI182,780 in MCF-7 breast cancer cells. Clin Cancer Res 10:6466–6475PubMedCrossRef
94.
go back to reference Korner A, Wabitsch M, Seidel B et al (2005) Adiponectin expression in humans is dependent on differentiation of adipocytes and down-regulated by humoral serum components of high molecular weight. Biochem Biophys Res Commun 337:540–550PubMedCrossRef Korner A, Wabitsch M, Seidel B et al (2005) Adiponectin expression in humans is dependent on differentiation of adipocytes and down-regulated by humoral serum components of high molecular weight. Biochem Biophys Res Commun 337:540–550PubMedCrossRef
95.
go back to reference Dieudonne MN, Bussiere M, Dos Santos E et al (2006) Adiponectin mediates antiproliferative and apoptotic responses in human MCF7 breast cancer cells. Biochem Biophys Res Commun 345:271–279PubMedCrossRef Dieudonne MN, Bussiere M, Dos Santos E et al (2006) Adiponectin mediates antiproliferative and apoptotic responses in human MCF7 breast cancer cells. Biochem Biophys Res Commun 345:271–279PubMedCrossRef
96.
go back to reference Wang Y, Lam JB, Lam KS et al (2006) Adiponectin modulates the glycogen synthase kinase-3 beta/beta-catenin signaling pathway and attenuates mammary tumorigenesis of MDA-MB-231 cells in nude mice. Cancer Res 66:11462–11470PubMedCrossRef Wang Y, Lam JB, Lam KS et al (2006) Adiponectin modulates the glycogen synthase kinase-3 beta/beta-catenin signaling pathway and attenuates mammary tumorigenesis of MDA-MB-231 cells in nude mice. Cancer Res 66:11462–11470PubMedCrossRef
97.
go back to reference Grossmann ME, Nkhata KJ, Mizuno NK et al (2008) Effects of adiponectin on breast cancer cell growth and signaling. Br J Cancer 98:370–379PubMedCrossRef Grossmann ME, Nkhata KJ, Mizuno NK et al (2008) Effects of adiponectin on breast cancer cell growth and signaling. Br J Cancer 98:370–379PubMedCrossRef
98.
go back to reference Huypens P, Quartier E (2006) Adiponectin expression is paradoxically increased in gold-thioglucose-induced obesity. Horm Metab Res 38:486–490PubMedCrossRef Huypens P, Quartier E (2006) Adiponectin expression is paradoxically increased in gold-thioglucose-induced obesity. Horm Metab Res 38:486–490PubMedCrossRef
99.
go back to reference Boucher J, Castan-Laurell I, Daviaud D et al (2005) Adipokine expression profile in adipocytes of different mouse models of obesity. Horm Metab Res 37:761–767PubMedCrossRef Boucher J, Castan-Laurell I, Daviaud D et al (2005) Adipokine expression profile in adipocytes of different mouse models of obesity. Horm Metab Res 37:761–767PubMedCrossRef
100.
go back to reference Inoue M, Yano M, Yamakado M et al (2006) Relationship between the adiponectin-leptin ratio and parameters of insulin resistance in subjects without hyperglycemia. Metabolism 55:1248–1254PubMedCrossRef Inoue M, Yano M, Yamakado M et al (2006) Relationship between the adiponectin-leptin ratio and parameters of insulin resistance in subjects without hyperglycemia. Metabolism 55:1248–1254PubMedCrossRef
101.
go back to reference Kaaks R (2004) Nutrition, insulin, IGF-1 metabolism and cancer risk: a summary of epidemiological evidence. Novartis Found Symp 262:247–260PubMedCrossRef Kaaks R (2004) Nutrition, insulin, IGF-1 metabolism and cancer risk: a summary of epidemiological evidence. Novartis Found Symp 262:247–260PubMedCrossRef
102.
go back to reference Lorincz AM, Sukumar S (2006) Molecular links between obesity and breast cancer. Endocr Relat Cancer 13:279–292PubMedCrossRef Lorincz AM, Sukumar S (2006) Molecular links between obesity and breast cancer. Endocr Relat Cancer 13:279–292PubMedCrossRef
103.
go back to reference Hankinson SE, Schernhammer ES (2003) Insulin-like growth factor and breast cancer risk: evidence from observational studies. Breast Dis 17:27–40PubMed Hankinson SE, Schernhammer ES (2003) Insulin-like growth factor and breast cancer risk: evidence from observational studies. Breast Dis 17:27–40PubMed
104.
go back to reference Lukanova A, Lundin E, Zeleniuch-Jacquotte A et al (2004) Body mass index, circulating levels of sex-steroid hormones, IGF-I and IGF-binding protein-3: a cross-sectional study in healthy women. Eur J Endocrinol 150:161–171PubMedCrossRef Lukanova A, Lundin E, Zeleniuch-Jacquotte A et al (2004) Body mass index, circulating levels of sex-steroid hormones, IGF-I and IGF-binding protein-3: a cross-sectional study in healthy women. Eur J Endocrinol 150:161–171PubMedCrossRef
105.
go back to reference Holmes MD, Pollak MN, Hankinson SE (2002) Lifestyle correlates of plasma insulin-like growth factor I and insulin-like growth factor binding protein 3 concentrations. Cancer Epidemiol Biomarkers Prev 11:862–867PubMed Holmes MD, Pollak MN, Hankinson SE (2002) Lifestyle correlates of plasma insulin-like growth factor I and insulin-like growth factor binding protein 3 concentrations. Cancer Epidemiol Biomarkers Prev 11:862–867PubMed
Metadata
Title
Mammary tumor development from T47-D human breast cancer cells in obese ovariectomized mice with and without estradiol supplements
Authors
Katai J. Nkhata
Amitabha Ray
Soner Dogan
Joseph P. Grande
Margot P. Cleary
Publication date
01-03-2009
Publisher
Springer US
Published in
Breast Cancer Research and Treatment / Issue 1/2009
Print ISSN: 0167-6806
Electronic ISSN: 1573-7217
DOI
https://doi.org/10.1007/s10549-008-9991-7

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