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Soy isoflavone extracts stimulate the growth of nude mouse xenografts bearing estrogen-dependent human breast cancer cells(MCF-7) 被引量:2

Soy isoflavone extracts stimulate the growth of nude mouse xenografts bearing estrogen-dependent human breast cancer cells(MCF-7)
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摘要 We explored the effects of different lifetime exposures to soy isoflavone extracts on the growth of estrogen- dependent human breast cancer cells (MCF-7) implanted into athymic mice of different ovarian statuses. The athymic mice, ovariectomized or not, were implanted with MCF-7 cells. Mice were fed with low, moderate and high doses of soy isoflavone extract, at dietary concentrations of 6.25, 12.5 and 25 g/kg, in different reproductive models, respectively. The expression of ki-67 was detected by immunohistochemistry, pS2 expression in tumors was analyzed by real-time PCR. Estrogen level in the serum was measured by chemiluminescence enzyme im- munoassay. Total genistein and daidzein levels in serum and urine were determined by liquid chromatography- electrospray tandem mass spectrometry (LC-ES/MS/MS). In Group A, on week 4, nude mice were exposed to different doses of soy iosflavone extracts. In Group B, the experimental diets were given to the nude mice follow- ing ovariectomy and tumor implantation. In both groups, 6.25 and 12.5 g/kg soy isoflavone extracts stimulated the growth of MCF-7 xenografts, increased pS2 expression, proliferation and estrogen level in serum. In both Group B (postmenopausal mouse model) and Group C (premenopausal mouse model), soy isoflavone extracts at doses of 6.25 and 12.5 g/kg showed stimulatory effects on the growth of MCF-7 tumors. In conclusion, administration of soy isoflavone extracts at doses of 6.25 and 12.5 g/kg during adolescence or later in life stimulated tumor growth in both menopausal and postmenopausal mouse models. We explored the effects of different lifetime exposures to soy isoflavone extracts on the growth of estrogen- dependent human breast cancer cells (MCF-7) implanted into athymic mice of different ovarian statuses. The athymic mice, ovariectomized or not, were implanted with MCF-7 cells. Mice were fed with low, moderate and high doses of soy isoflavone extract, at dietary concentrations of 6.25, 12.5 and 25 g/kg, in different reproductive models, respectively. The expression of ki-67 was detected by immunohistochemistry, pS2 expression in tumors was analyzed by real-time PCR. Estrogen level in the serum was measured by chemiluminescence enzyme im- munoassay. Total genistein and daidzein levels in serum and urine were determined by liquid chromatography- electrospray tandem mass spectrometry (LC-ES/MS/MS). In Group A, on week 4, nude mice were exposed to different doses of soy iosflavone extracts. In Group B, the experimental diets were given to the nude mice follow- ing ovariectomy and tumor implantation. In both groups, 6.25 and 12.5 g/kg soy isoflavone extracts stimulated the growth of MCF-7 xenografts, increased pS2 expression, proliferation and estrogen level in serum. In both Group B (postmenopausal mouse model) and Group C (premenopausal mouse model), soy isoflavone extracts at doses of 6.25 and 12.5 g/kg showed stimulatory effects on the growth of MCF-7 tumors. In conclusion, administration of soy isoflavone extracts at doses of 6.25 and 12.5 g/kg during adolescence or later in life stimulated tumor growth in both menopausal and postmenopausal mouse models.
出处 《The Journal of Biomedical Research》 CAS 2012年第1期44-52,共9页 生物医学研究杂志(英文版)
基金 supported by National Natural Science Foundation of China (No.30572133) the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)
关键词 soy isoflavone extracts breast cancer nude mice MCF-7 ESTROGEN ki-67 PS2 soy isoflavone extracts, breast cancer, nude mice, MCF-7, estrogen, ki-67, pS2
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  • 1袁建平,王江海,刘昕.大豆异黄酮的重要代谢产物——马雌酚[J].中国药学杂志,2006,41(7):484-490. 被引量:13
  • 2吴健全,郭长江,顾景范.大豆素代谢产物——雌马酚研究进展[J].生理科学进展,2006,37(4):359-361. 被引量:5
  • 3杨震玲,栗海峰,常彦忠.大豆异黄酮与疾病防治研究进展[J].中国老年学杂志,2007,27(1):85-87. 被引量:4
  • 4Shin Y, Po- Sheng W, Emi H,et al. Simultaneous determination of isoflavones and bisphenol A in rat serum by high - performance liquid chromatography coupled with coulometric array detection [ J ]. Biosci Biotechnol Biochem, 2004 , (68) : 51 -58.
  • 5Philip B, Nayan S, Megan H, et al. High throughput quantification of phytoestrogens in human urine and serum using LC - MS/MS [ J ]. Chromatogr B, 2007, (853) : 138 -146.
  • 6Wu Q,,Jin N Z,Yu J, et al.Establishment of human breast carcinoma model in ovariectomized nude mice[].Acta Univ Med Nanjing.2008
  • 7Ueda M,Niho N,Imai T, et al.Lack of signifi cant effects of gen- istein on the progression of 7,12-dimethylbenz(a)anthracene-in- duced mammary tumors in ovariectomized Sprague-Dawley rats[].Nutrition and Cancer.2003
  • 8Hewitt A L,Singletary K W.Soy extract inhibits mammary adeno- carcinoma growth in a syngeneic mouse model[].Cancer Letters.2003
  • 9Collins BM,McLachlan JA,Arnold SF.The estrogenic and antiestrogenic activities of phytochemicals with the human estrogen receptor expressed in yeast[].Steroids.1997
  • 10Parkin DM,Muir CS,Whelan SL.Cancer incidence in five continents[]..1992

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  • 2Li-Juan Wang,Su-Xia Han,E Bai,Xia Zhou,Meng Li,Gui-Hua Jing,Jing Zhao,An-Gang Yang,Qing Zhu.Dose-dependent effect of tamoxifen in tamoxifen-resistant breast cancercells via stimulation by the ERK1/2 and AKT signaling pathways[J]. Oncology Reports . 2013 (4)
  • 3Pamela J. Magee,Ian Rowland.Soy products in the management of breast cancer[J]. Current Opinion in Clinical Nutrition and Metabolic Care . 2012 (6)
  • 4V. B. Gencel,M. M. Benjamin,S. N. Bahou,R. A. Khalil.Vascular Effects of Phytoestrogens and Alternative Menopausal Hormone Therapy in Cardiovascular Disease[J]. Mini-Reviews in Medicinal Chemistry . 2012 (2)
  • 5Qing-Shan Li,Cui-Yun Li,Zi-Lin Li,Hai-Liang Zhu.Genistein and its Synthetic Analogs as Anticancer Agents[J]. Anti-Cancer Agents in Medicinal Chemistry (Formerly Current Medicinal Chemistry - Anti-Cancer Agents) . 2012 (3)
  • 6Susanne Andres,Klaus Abraham,Klaus Erich Appel,Alfonso Lampen.Risks and benefits of dietary isoflavones for cancer[J]. Critical Reviews in Toxicology . 2011 (6)
  • 7M.B.M. van Duursen,S.M. Nijmeijer,E.S. de Morree,P. Chr. de Jong,M. van den Berg.Genistein induces breast cancer-associated aromatase and stimulates estrogen-dependent tumor cell growth in in vitro breast cancer model[J]. Toxicology . 2011 (2)
  • 8Anne Katchy,Karin Edvardsson,Eylem Aydogdu,Cecilia Williams.Estradiol-activated estrogen receptor α does not regulate mature microRNAs in T47D breast cancer cells[J]. Journal of Steroid Biochemistry and Molecular Biology . 2011 (3)
  • 9Lawrence N. Shulman,Walter Willett,Amy Sievers,Felicia M. Knaul,Wah Yun Low.Breast Cancer in Developing Countries: Opportunities for Improved Survival[J]. Journal of Oncology . 2010
  • 10Lukilaningsih E.The exploration of whitening and sun screening compounds in bengkoang roots(Pachyrhizus erosus). . 2009

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