Literature DB >> 21187493

Aromatase expression in leptin-pretreated human breast pre-adipocytes is enhanced by zeranol and suppressed by (-)-gossypol.

Saiyi Zhong1, Wei-Ping Ye, Ping-Ping Xu, Eric Feng, Hong Li, Shu-Hong Lin, Jie-Yu Liu, Changwei Ma, Young C Lin.   

Abstract

BACKGROUND: Obesity is associated with an increased risk of estrogen-dependent breast cancer. Recently, concerns have been raised regarding the role of zeranol (Z), a non-steroidal anabolic growth promoter with potent estrogenic activity widely used in the U.S.A. beef industry, as a possible contributor to an increased incidence of human breast cancer. This study hypothesized that obese individuals may be at greater risk of developing zeranol-induced breast cancer.
MATERIALS AND METHODS: The aromatase mRNA expression level of three cell types isolated from adipose tissues were assayed by RT-PCR, and the cell proliferation of primary cultured human normal breast pre-adipocytes (HNBPADs) was investigated using the CellTiter96® non-radioactive method. The effects of Z and gossypol on aromatase expression of leptin-pretreated HNBPADs were evaluated by RT-PCR.
RESULTS: HNBPADs expressed higher aromatase than primary cultured human breast epithelial cells and stromal cells. Z enhanced the mitogenic activity of leptin and increased aromatase expression in HNBPADs. Moreover, (-)-gossypol counteracted Z- and leptin-induced cell proliferation and aromatase expression.
CONCLUSION: These results suggested that bioactive Z metabolites contained in meat produced from Z-implanted beef cattle may increase estrogen biosynthesis in obese individuals by increasing aromatase expression and estrogen production, which will promote cell sensitivity and increase breast cancer cell growth.

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Year:  2010        PMID: 21187493

Source DB:  PubMed          Journal:  Anticancer Res        ISSN: 0250-7005            Impact factor:   2.480


  6 in total

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5.  Isolation of Cottonseed Extracts That Affect Human Cancer Cell Growth.

Authors:  Heping Cao; Kandan Sethumadhavan; John M Bland
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6.  Gossypol decreased cell viability and down-regulated the expression of a number of genes in human colon cancer cells.

Authors:  Heping Cao; Kandan Sethumadhavan; Fangping Cao; Thomas T Y Wang
Journal:  Sci Rep       Date:  2021-03-15       Impact factor: 4.996

  6 in total

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