Recent studies suggest that fibroblasts from breast cancer patients differ in culture from fibroblasts of normal individuals and patients with benign breast disease. These differences can be seen in peritumor fibroblasts as well as fibroblasts obtained from sites far removed from the malignancy. Among these differences are the changes in phenotype often seen with fibroblast transformation, changes in motility, morphology, growth patterns, and serum dependency. These observations imply that cancer of the breast is not a focal disease but a systemic disorder, and that abnormal stromal-epithelial interactions are involved in the genesis and the maintenance of breast cancer. There are indications that these fibroblast abnormalities may even precede the appearance of frank malignancy and thus could provide important diagnostic markers for women at high risk for developing breast cancer. Because of the important diagnostic and mechanistic implications of finding such stromal abnormalities associated with breast cancer, we propose to expand on these observations by developing new assays which distinguish tumor-associated fibroblasts from those of normal individuals. We also propose to explore some basic biochemical mechanisms that might be responsible for the observed differences. A systematic examination of the components of the extracellular matrix will be made, including measurement of collagens, elastin, and proteoglycans, with particular emphasis on hyaluronic acid deposition and removal. Modulation of the deposition of these matrix components in cocultivation experiments will be examined, as well as the ability of various growth factors and tumor-derived transformation factors to emulate changes in fibroblast expression. These experiments will increase our understanding of the basic biology of breast cancer and the role of the host stroma in supporting the tumor process.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Program Projects (P01)
Project #
7P01CA044768-03
Application #
3817113
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
3
Fiscal Year
1989
Total Cost
Indirect Cost
Name
Medical Research Institute of San Fran
Department
Type
DUNS #
City
San Francisco
State
CA
Country
United States
Zip Code
94115
Hwang, E Shelley; DeVries, Sandy; Chew, Karen L et al. (2004) Patterns of chromosomal alterations in breast ductal carcinoma in situ. Clin Cancer Res 10:5160-7
Shelley Hwang, E; Nyante, Sarah J; Yi Chen, Yunn et al. (2004) Clonality of lobular carcinoma in situ and synchronous invasive lobular carcinoma. Cancer 100:2562-72
Gupta, Anu; Yang, Li Xi; Chen, Ling chun (2002) Study of the G2/M cell cycle checkpoint in irradiated mammary epithelial cells overexpressing Cul-4A gene. Int J Radiat Oncol Biol Phys 52:822-30
Neve, Richard M; Ylstra, Bauke; Chang, Chuan-Hsiung et al. (2002) ErbB2 activation of ESX gene expression. Oncogene 21:3934-8
Thor, Ann D; Eng, Clarence; Devries, Sandy et al. (2002) Invasive micropapillary carcinoma of the breast is associated with chromosome 8 abnormalities detected by comparative genomic hybridization. Hum Pathol 33:628-31
Eppenberger-Castori, S; Kueng, W; Benz, C et al. (2001) Prognostic and predictive significance of ErbB-2 breast tumor levels measured by enzyme immunoassay. J Clin Oncol 19:645-56
Gong, G; DeVries, S; Chew, K L et al. (2001) Genetic changes in paired atypical and usual ductal hyperplasia of the breast by comparative genomic hybridization. Clin Cancer Res 7:2410-4
Etzell, J E; Devries, S; Chew, K et al. (2001) Loss of chromosome 16q in lobular carcinoma in situ. Hum Pathol 32:292-6
Liu, S; Edgerton, S M; Moore 2nd, D H et al. (2001) Measures of cell turnover (proliferation and apoptosis) and their association with survival in breast cancer. Clin Cancer Res 7:1716-23
Waldman, F M; Hwang, E S; Etzell, J et al. (2001) Genomic alterations in tubular breast carcinomas. Hum Pathol 32:222-6

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