Literature DB >> 12189189

Genistein action in the prepubertal mammary gland in a chemoprevention model.

Michelle S Cotroneo1, Jun Wang, Wayne A Fritz, Isam-Eldin Eltoum, Coral A Lamartiniere.   

Abstract

A diet high in soy is associated with many health benefits, including reduced incidence of breast cancer. The soy phytoestrogen, genistein, is hypothesized to contribute to mammary chemoprevention via interaction with estrogen receptors (ERs) alpha and/or beta. These steroid signaling pathways are believed to exert control over proliferation and differentiation of the mammary gland by a complex bidirectional interaction with the epidermal growth factor (EGF) signaling pathway. The current work was designed to study the role of these two pathways in prepubertal mammary gland growth. Female Sprague-Dawley CD rats were injected with genistein (500 micro g/g body wt) or estradiol benzoate (EB) (500 ng/g body wt) on days 16, 18 and 20. Whole mount analysis of mammary glands from 21-day-old rats showed that both treatments resulted in significantly increased terminal end buds (TEBs), and increased ductal branching, compared with animals given the vehicle, dimethylsulfoxide (DMSO). Both effects were inhibited by blockage of ER function by pre-treating with 2 mg ICI 182,780/kg body wt, a steroidal anti-estrogen. Immunoblotting analyis of mammary gland extracts demonstrated increased epidermal growth factor receptor (EGFR) and progesterone receptor (PR) expression following treatment with EB or genistein. Tyrosine-phosphorylated EGFR, as measured by immunoprecipitation/immunoblotting was also increased, but when normalized to total receptors, there was no net effect. The expression and phosphorylation of downstream targets of the EGFR, mitogen activating kinase kinase (MEK 1 and 2) and extracellular signal regulated kinases 1 and 2 (ERK 1 and 2) were not significantly affected. Anti-estrogen pre-treatment prevented the increase in EGFR, phospho-EGFR and PR. The data indicate an ER-based mechanism of action for genistein in mammary gland proliferation and differentiation, which can lead to protection against mammary cancer.

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Year:  2002        PMID: 12189189     DOI: 10.1093/carcin/23.9.1467

Source DB:  PubMed          Journal:  Carcinogenesis        ISSN: 0143-3334            Impact factor:   4.944


  19 in total

Review 1.  NTP-CERHR expert panel report on the reproductive and developmental toxicity of genistein.

Authors:  Karl K Rozman; Jatinder Bhatia; Antonia M Calafat; Christina Chambers; Martine Culty; Ruth A Etzel; Jodi A Flaws; Deborah K Hansen; Patricia B Hoyer; Elizabeth H Jeffery; James S Kesner; Sue Marty; John A Thomas; David Umbach
Journal:  Birth Defects Res B Dev Reprod Toxicol       Date:  2006-12

2.  Genistein stimulates MCF-7 breast cancer cell growth by inducing acid ceramidase (ASAH1) gene expression.

Authors:  Natasha C Lucki; Marion B Sewer
Journal:  J Biol Chem       Date:  2011-04-14       Impact factor: 5.157

3.  Prepubertal exposure to elevated manganese results in estradiol regulated mammary gland ductal differentiation and hyperplasia in female rats.

Authors:  Robert K Dearth; Jill K Hiney; Vinod K Srivastava; Alina M Hamilton; William L Dees
Journal:  Exp Biol Med (Maywood)       Date:  2014-05-20

Review 4.  Phytoestrogenic isoflavonoids in epidemiologic and clinical research.

Authors:  Adrian A Franke; Brunhild M Halm; Kerry Kakazu; Xingnan Li; Laurie J Custer
Journal:  Drug Test Anal       Date:  2009-01       Impact factor: 3.345

5.  Soy phytochemicals synergistically enhance the preventive effect of tamoxifen on the growth of estrogen-dependent human breast carcinoma in mice.

Authors:  Zhiming Mai; George L Blackburn; Jin-Rong Zhou
Journal:  Carcinogenesis       Date:  2007-01-18       Impact factor: 4.944

6.  The soya isoflavone content of rat diet can increase anxiety and stress hormone release in the male rat.

Authors:  David E Hartley; Jessica E Edwards; Claire E Spiller; Nazmul Alom; Sonia Tucci; Pallab Seth; Mary L Forsling; Sandra E File
Journal:  Psychopharmacology (Berl)       Date:  2003-03-05       Impact factor: 4.530

7.  Equine estrogen-induced mammary tumors in rats.

Authors:  Yoshinori Okamoto; Xiaoping Liu; Naomi Suzuki; Kanako Okamoto; Hyo Jeong Kim; Y R Santosh Laxmi; Kazutoshi Sayama; Shinya Shibutani
Journal:  Toxicol Lett       Date:  2010-01-22       Impact factor: 4.372

8.  Mammary Gland Evaluation in Juvenile Toxicity Studies: Temporal Developmental Patterns in the Male and Female Harlan Sprague-Dawley Rat.

Authors:  Adam J Filgo; Julie F Foley; Samantha Puvanesarajah; Aditi R Borde; Bentley R Midkiff; Casey E Reed; Vesna A Chappell; Lydia B Alexander; Pretish R Borde; Melissa A Troester; Schantel A Hayes Bouknight; Suzanne E Fenton
Journal:  Toxicol Pathol       Date:  2016-09-09       Impact factor: 1.902

Review 9.  Absorption, distribution, metabolism, and excretion of isoflavonoids after soy intake.

Authors:  Adrian A Franke; Jennifer F Lai; Brunhild M Halm
Journal:  Arch Biochem Biophys       Date:  2014-06-16       Impact factor: 4.013

10.  Modulation of CXCR4, CXCL12, and Tumor Cell Invasion Potential In Vitro by Phytochemicals.

Authors:  Erin L Hsu; Natalie Chen; Aya Westbrook; Feng Wang; Ruixue Zhang; Robert T Taylor; Oliver Hankinson
Journal:  J Oncol       Date:  2009-03-24       Impact factor: 4.375

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