Home LiteratureArticle Details
PMID: 19308679 Published · ppublish English Journal Article

Identification of molecular distinctions between normal breast-associated fibroblasts and breast cancer-associated fibroblasts.

Cancer microenvironment : official journal of the International Cancer Microenvironment Society ·Vol. 2 ·No. 1 ·2009-12-00 ·Pages 9-21

Sadlonova A, Bowe DB, Novak Z, Mukherjee S, Duncan VE, Page GP, Frost AR

Abstract

Stromal fibroblasts influence the behavior of breast epithelial cells. Fibroblasts derived from normal breast (NAF) inhibit epithelial growth, whereas fibroblasts from breast carcinomas (CAF) have less growth inhibitory capacity and can promote epithelial growth. We sought to identify molecules that are differentially expressed in NAF versus CAF and potentially responsible for their different growth regulatory abilities. To determine the contribution of soluble molecules to fibroblast-epithelial interactions, NAF were grown in 3D, transwell or direct contact co-cultures with MCF10AT epithelial cells. NAF suppressed proliferation of MCF10AT in both direct contact and transwell co-cultures, but this suppression was significantly greater in direct co-cultures, indicating involvement of both soluble and contact factors. Gene expression profiling of early passage fibroblast cultures identified 420 genes that were differentially expressed in NAF versus CAF. Of the eight genes selected for validation by real-time PCR, FIBULIN 1, was overexpressed in NAF, and DICKKOPF 1, NEUREGULIN 1, PLASMINOGEN ACTIVATOR INHIBITOR 2, and TISSUE PLASMINOGEN ACTIVATOR were overexpressed in CAF. A higher expression of FIBULIN 1 in normal- than cancer-associated fibroblastic stroma was confirmed by immunohistochemistry of breast tissues. Among breast cancers, stromal expression of Fibulin 1 protein was higher in estrogen receptor alpha-positive cancers and low stromal expression of Fibulin 1 correlated with a higher proliferation of cancer epithelial cells. In conclusion, expression profiling of NAF and CAF cultures identified many genes with potential relevance to fibroblast-epithelial interactions in breast cancer. Furthermore, these early passage fibroblast cultures can be representative of gene expression in stromal fibroblasts in vivo.

Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Sadlonova Andrea
Department of Pathology, Wallace Tumor Institute, University of Alabama at Birmingham, Room 420, Birmingham, AL 35294, USA. [email protected]
Bowe Damon B
Novak Zdenek
Mukherjee Shibani
Duncan Virginia E
Page Grier P
Frost Andra R
References (46)
46 references, click to expand
  1. Tumor stroma and regulation of cancer development.
    Annu Rev Pathol. 2006;1:119-50 PMID: 18039110
  2. Wnt signaling pathway in mammary gland development and carcinogenesis.
    Pathobiology. 2006;73(5):213-23 PMID: 17314492
  3. Human bone marrow stromal cells enhance breast cancer cell growth rates in a cell line-dependent manner when evaluated in 3D tumor environments.
    Cancer Lett. 2007 Sep 8;254(2):255-64 PMID: 17467167
  4. Hormone receptors and proliferation in breast carcinomas of equivalent histologic grades in pre- and postmenopausal women.
    Int J Cancer. 2002 Mar 1;98(1):118-27 PMID: 11857395
  5. Concurrent and independent genetic alterations in the stromal and epithelial cells of mammary carcinoma: implications for tumorigenesis.
    Cancer Res. 2000 May 1;60(9):2562-6 PMID: 10811140
  6. Significance of tumor-associated stroma in promotion of intratumoral lymphangiogenesis: pivotal role of a hyaluronan-rich tumor microenvironment.
    Am J Pathol. 2008 Jan;172(1):179-93 PMID: 18079437
  7. Identification of NTN4, TRA1, and STC2 as prognostic markers in breast cancer in a screen for signal sequence encoding proteins.
    Clin Cancer Res. 2007 Jun 1;13(11):3164-73 PMID: 17545519
  8. Estradiol and fibulin-1 inhibit motility of human ovarian- and breast-cancer cells induced by fibronectin.
    Int J Cancer. 1998 Feb 9;75(4):654-8 PMID: 9466671
  9. Increased Dickkopf-1 expression in breast cancer bone metastases.
    Br J Cancer. 2007 Oct 8;97(7):964-70 PMID: 17876334
  10. Human breast fibroblasts inhibit growth of the MCF10AT xenograft model of proliferative breast disease.
    Am J Pathol. 2007 Mar;170(3):1064-76 PMID: 17322389
  11. ADAMTS1 interacts with, cleaves, and modifies the extracellular location of the matrix inhibitor tissue factor pathway inhibitor-2.
    J Biol Chem. 2006 Jun 30;281(26):17827-37 PMID: 16641089
  12. Breast fibroblasts modulate epithelial cell proliferation in three-dimensional in vitro co-culture.
    Breast Cancer Res. 2005;7(1):R46-59 PMID: 15642169
  13. Stromal fibroblasts present in invasive human breast carcinomas promote tumor growth and angiogenesis through elevated SDF-1/CXCL12 secretion.
    Cell. 2005 May 6;121(3):335-48 PMID: 15882617
  14. Genetic model of multi-step breast carcinogenesis involving the epithelium and stroma: clues to tumour-microenvironment interactions.
    Hum Mol Genet. 2001 Sep 1;10(18):1907-13 PMID: 11555627
  15. The expression of oestrogen receptor (ER)-beta and its variants, but not ERalpha, in adult human mammary fibroblasts.
    J Mol Endocrinol. 2004 Aug;33(1):35-50 PMID: 15291741
  16. Microvessel density and vascular endothelial growth factor expression in infiltrating lobular mammary carcinoma.
    Breast J. 2003 May-Jun;9(3):200-7 PMID: 12752628
  17. Tumor-associated fibroblasts (part I): Active stromal participants in tumor development and progression?
    Histol Histopathol. 2002 Apr;17(2):599-621 PMID: 11962761
  18. Preclinical studies of targeted alpha therapy for breast cancer using 213Bi-labelled-plasminogen activator inhibitor type 2.
    Br J Cancer. 2003 Mar 24;88(6):944-50 PMID: 12644835
  19. Cancer and the chemokine network.
    Nat Rev Cancer. 2004 Jul;4(7):540-50 PMID: 15229479
  20. Transcriptional and posttranscriptional regulation of fibulin-1 by estrogens leads to differential induction of messenger ribonucleic acid variants in ovarian and breast cancer cells.
    Endocrinology. 2005 Feb;146(2):760-8 PMID: 15528301
  21. Stromal induction of breast cancer: inflammation and invasion.
    Rev Endocr Metab Disord. 2007 Sep;8(3):279-87 PMID: 17447144
  22. Suppression of anchorage-independent growth and matrigel invasion and delayed tumor formation by elevated expression of fibulin-1D in human fibrosarcoma-derived cell lines.
    Oncogene. 1997 Oct;15(18):2159-68 PMID: 9393974
  23. Fibulin-1 suppression of fibronectin-regulated cell adhesion and motility.
    J Cell Sci. 2001 Dec;114(Pt 24):4587-98 PMID: 11792823
  24. The neuregulin-I/ErbB signaling system in development and disease.
    Adv Anat Embryol Cell Biol. 2007;190:1-65 PMID: 17432114
  25. Tumor-associated fibroblasts (part II): Functional impact on tumor tissue.
    Histol Histopathol. 2002 Apr;17(2):623-37 PMID: 11962762
  26. Dickkopf-1 is a member of a new family of secreted proteins and functions in head induction.
    Nature. 1998 Jan 22;391(6665):357-62 PMID: 9450748
  27. Relative abundance of thrombospondin 2 and thrombospondin 3 mRNAs in human tissues.
    Biochem Biophys Res Commun. 1999 May 19;258(3):792-6 PMID: 10329465
  28. Humoral immunity, inflammation and cancer.
    Curr Opin Immunol. 2007 Apr;19(2):209-16 PMID: 17276050
  29. Frequent somatic mutations in PTEN and TP53 are mutually exclusive in the stroma of breast carcinomas.
    Nat Genet. 2002 Nov;32(3):355-7 PMID: 12379854
  30. Immunolocalization of matrix metallo-proteinases and their tissue inhibitor in human mammary pathology.
    Bull Cancer. 1992;79(3):261-70 PMID: 1392165
  31. Breast stroma plays a dominant regulatory role in breast epithelial growth and differentiation: implications for tumor development and progression.
    Cancer Res. 2001 Feb 15;61(4):1320-6 PMID: 11245428
  32. Tumor-derived Cyr61(CCN1) promotes stromal matrix metalloproteinase-1 production and protease-activated receptor 1-dependent migration of breast cancer cells.
    Cancer Res. 2006 Mar 1;66(5):2658-65 PMID: 16510585
  33. Breast carcinoma-associated fibroblasts and their counterparts display neoplastic-specific changes.
    Cancer Res. 2008 Apr 15;68(8):2717-25 PMID: 18413739
  34. Elevated expression and altered processing of fibulin-1 protein in human breast cancer.
    Br J Cancer. 2003 Mar 24;88(6):871-8 PMID: 12644824
  35. Housekeeping gene variability in normal and carcinomatous colorectal and liver tissues: applications in pharmacogenomic gene expression studies.
    Anal Biochem. 2002 Apr 15;303(2):209-14 PMID: 11950223
  36. Plasminogen activator inhibitor type 2: a regulator of monocyte proliferation and differentiation.
    Blood. 2002 Apr 15;99(8):2810-8 PMID: 11929770
  37. Immunological and pathobiological roles of fibulin-1 in breast cancer.
    Oncogene. 2004 Mar 18;23(12):2153-60 PMID: 14691454
  38. Reconstruction of functionally normal and malignant human breast tissues in mice.
    Proc Natl Acad Sci U S A. 2004 Apr 6;101(14):4966-71 PMID: 15051869
  39. Messenger ribonucleic acid in situ hybridization analysis of estrogen receptors alpha and beta in human breast carcinoma.
    J Clin Endocrinol Metab. 1999 Feb;84(2):781-5 PMID: 10022453
  40. HDBStat!: a platform-independent software suite for statistical analysis of high dimensional biology data.
    BMC Bioinformatics. 2005 Apr 06;6:86 PMID: 15813968
  41. Estrogen induction and overexpression of fibulin-1C mRNA in ovarian cancer cells.
    Oncogene. 2002 Feb 7;21(7):1097-107 PMID: 11850827
  42. Tissue plasminogen activator is a potent activator of PDGF-CC.
    EMBO J. 2004 Oct 1;23(19):3793-802 PMID: 15372073
  43. Methods of antigen recovery vary in their usefulness in unmasking specific antigens in immunohistochemistry.
    Appl Immunohistochem Mol Morphol. 2000 Sep;8(3):236-43 PMID: 10981877
  44. Differential effects of fibroblast growth factors on expression of genes of the plasminogen activator and insulin-like growth factor systems by human breast fibroblasts.
    Thromb Haemost. 2002 Apr;87(4):674-83 PMID: 12008951
  45. In vitro cytotoxicity of bismuth-213 (213Bi)-labeled-plasminogen activator inhibitor type 2 (alpha-PAI-2) on human breast cancer cells.
    Breast Cancer Res Treat. 2002 Jan;71(2):149-59 PMID: 11881911
  46. NDF/heregulin induces persistence of terminal end buds and adenocarcinomas in the mammary glands of transgenic mice.
    Oncogene. 1996 Apr 18;12(8):1781-8 PMID: 8622899
Article Info
Journal
Cancer microenvironment : official journal of the International Cancer Microenvironment Society
Abbr.
Cancer Microenviron
ISSN
1875-2284
Published
2009-12-00
Epub
2009-00-18
Pages
9-21
Language
English
Region
Netherlands
NLM ID
101322634
PMCID
PMC2787925
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]