Increased COX-2 expression in epithelial and stromal cells of high mammographic density tissues and in a xenograft model of mammographic density

G. L. Chew, C. W. Huo, D. Huang, P. Hill, J. Cawson, H. Frazer, J. L. Hopper, I. Haviv, M. A. Henderson, K. Britt, E. W. Thompson

Research output: Contribution to journalArticlepeer-review

16 Scopus citations

Abstract

Mammographic density (MD) adjusted for age and body mass index is one of the strongest known risk factors for breast cancer. Given the high attributable risk of MD for breast cancer, chemoprevention with a safe and available agent that reduces MD and breast cancer risk would be beneficial. Cox-2 has been implicated in MD-related breast cancer risk, and was increased in stromal cells in high MD tissues in one study. Our study assessed differential Cox-2 expression in epithelial and stromal cells in paired samples of high and low MD human breast tissue, and in a validated xenograft biochamber model of MD. We also examined the effects of endocrine treatment upon Cox-2 expression in high and low MD tissues in the MD xenograft model. Paired high and low MD human breast tissue samples were immunostained for Cox-2, then assessed for differential expression and staining intensity in epithelial and stromal cells. High and low MD human breast tissues were separately maintained in biochambers in mice treated with Tamoxifen, oestrogen or placebo implants, then assessed for percentage Cox-2 staining in epithelial and stromal cells. Percentage Cox-2 staining was greater for both epithelial (p = 0.01) and stromal cells (p < 0.0001) of high compared with low MD breast tissues. In high MD biochamber tissues, percentage Cox-2 staining was greater in stromal cells of oestrogen-treated versus placebo-treated tissues (p = 0.05).

Original languageEnglish
Pages (from-to)89-99
Number of pages11
JournalBreast Cancer Research and Treatment
Volume153
Issue number1
DOIs
StatePublished - 18 Aug 2015

Bibliographical note

Publisher Copyright:
© 2015, Springer Science+Business Media New York.

Funding

This work was supported by the Victorian Breast Cancer Research Consortium (EWT, JH), the St Vincent’s Hospital Research Endowment Fund (EWT, GLC), the National Health and Medical Research Council (GLC, JH) and the University of Melbourne Research Grant Support Scheme (EWT, IH, GLC). This study benefited from support by the Victorian Government’s Operational Infrastructure Support Program to St. Vincent’s Institute.

FundersFunder number
EWT
GLC
St Vincent’s Hospital Research Endowment Fund
Victorian Breast Cancer Research Consortium
National Health and Medical Research Council
University of Melbourne
State Government of Victoria

    Keywords

    • Breast cancer
    • Breast density
    • Cox-2
    • Epithelial cells
    • Mammographic density
    • Stroma

    Fingerprint

    Dive into the research topics of 'Increased COX-2 expression in epithelial and stromal cells of high mammographic density tissues and in a xenograft model of mammographic density'. Together they form a unique fingerprint.

    Cite this