Role of HGF in epithelial-stromal cell interactions during progression from benign breast disease to ductal carcinoma in situ.

Breast cancer research : BCR 2013 Vol.15(5) p. R82

Casbas-Hernandez P, D'Arcy M, Roman-Perez E, Brauer HA, McNaughton K, Miller SM, Chhetri RK, Oldenburg AL, Fleming JM, Amos KD, Makowski L, Troester MA

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Abstract

[INTRODUCTION] Basal-like and luminal breast cancers have distinct stromal-epithelial interactions, which play a role in progression to invasive cancer. However, little is known about how stromal-epithelial interactions evolve in benign and pre-invasive lesions.

[METHODS] To study epithelial-stromal interactions in basal-like breast cancer progression, we cocultured reduction mammoplasty fibroblasts with the isogenic MCF10 series of cell lines (representing benign/normal, atypical hyperplasia, and ductal carcinoma in situ). We used gene expression microarrays to identify pathways induced by coculture in premalignant cells (MCF10DCIS) compared with normal and benign cells (MCF10A and MCF10AT1). Relevant pathways were then evaluated in vivo for associations with basal-like subtype and were targeted in vitro to evaluate effects on morphogenesis.

[RESULTS] Our results show that premalignant MCF10DCIS cells express characteristic gene expression patterns of invasive basal-like microenvironments. Furthermore, while hepatocyte growth factor (HGF) secretion is upregulated (relative to normal, MCF10A levels) when fibroblasts are cocultured with either atypical (MCF10AT1) or premalignant (MCF10DCIS) cells, only MCF10DCIS cells upregulated the HGF receptor MET. In three-dimensional cultures, upregulation of HGF/MET in MCF10DCIS cells induced morphological changes suggestive of invasive potential, and these changes were reversed by antibody-based blocking of HGF signaling. These results are relevant to in vivo progression because high expression of a novel MCF10DCIS-derived HGF signature was correlated with the basallike subtype, with approximately 86% of basal-like cancers highly expressing the HGF signature, and because high expression of HGF signature was associated with poor survival.

[CONCLUSIONS] Coordinated and complementary changes in HGF/MET expression occur in epithelium and stroma during progression of pre-invasive basal-like lesions. These results suggest that targeting stroma-derived HGF signaling in early carcinogenesis may block progression of basal-like precursor lesions.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
해부 breast 유방 dict 3
시술 reduction mammoplasty 유방성형술 dict 1
해부 epithelial-stromal cell scispacy 1
해부 stromal-epithelial scispacy 1
해부 epithelial-stromal scispacy 1
해부 fibroblasts scispacy 1
해부 cell lines scispacy 1
해부 premalignant cells scispacy 1
해부 MCF10DCIS scispacy 1
해부 benign cells scispacy 1
해부 MCF10A scispacy 1
해부 MCF10AT1 scispacy 1
해부 premalignant MCF10DCIS cells scispacy 1
해부 MCF10DCIS cells scispacy 1
해부 epithelium scispacy 1
해부 stroma scispacy 1
약물 [INTRODUCTION] Basal-like scispacy 1
약물 [CONCLUSIONS] Coordinated scispacy 1
질환 breast disease C0006145
Breast Diseases
scispacy 1
질환 ductal carcinoma C1176475
Ductal Carcinoma
scispacy 1
질환 cancers C0006826
Malignant Neoplasms
scispacy 1
질환 cancer C0006826
Malignant Neoplasms
scispacy 1
질환 breast cancer C0006142
Malignant neoplasm of breast
scispacy 1
질환 carcinogenesis C0596263
Carcinogenesis
scispacy 1
질환 benign breast disease scispacy 1
질환 luminal breast cancers scispacy 1
질환 benign scispacy 1
질환 pre-invasive lesions scispacy 1
질환 basal-like breast cancer scispacy 1
질환 MCF10 scispacy 1
질환 benign/normal scispacy 1
질환 hyperplasia scispacy 1
질환 basal-like scispacy 1
질환 MCF10AT1 scispacy 1
질환 basallike subtype scispacy 1
질환 basal-like cancers scispacy 1
질환 pre-invasive basal-like lesions scispacy 1
질환 basal-like precursor lesions scispacy 1
기타 HGF → hepatocyte growth factor scispacy 1
기타 hepatocyte growth factor scispacy 1
기타 MET scispacy 1
기타 HGF/MET scispacy 1

MeSH Terms

Breast Neoplasms; Carcinoma, Intraductal, Noninfiltrating; Cell Communication; Cell Line, Tumor; Cell Transformation, Neoplastic; Cluster Analysis; Coculture Techniques; Cytokines; Epithelial Cells; Female; Fibroblasts; Gene Expression Profiling; Hepatocyte Growth Factor; Humans; Proto-Oncogene Proteins c-met; Signal Transduction; Spheroids, Cellular; Stromal Cells; Tumor Cells, Cultured; Tumor Microenvironment

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