International Journal of Molecular Medicine and Advance Sciences

Year: 2010
Volume: 6
Issue: 2
Page No. 14 - 18

Stromal Infiltration and Microvascular Density Pathogenically Promote Integral Breast Carcinogenesis

Authors : Lawrence M.Agius

References

Al Murri, A.M., M. Hilmy, J. Bell, C. Wilson and A.M. McNicol et al., 2008. The relationship between the systemic inflammatory response, tumor proliferative activity, T-lymphocytic and macrophage infiltration, microvessel density and survival in patients with primary operable breast cancer. Br. J. Cancer, 99: 1013-1019.
CrossRef  |  

Ali, S. and G. Lazennec, 2007. Chemokines: Novel targets for breast cancer metastasis. Cancer Metastasis Rev., 26: 401-420.
CrossRef  |  

Andarawewa, K.L., E.R. Motrescu, M.P. Chenard, A. Gansmuller, I. Stoel, C. Tomasetto and M.C. Rio, 2005. Stromelysin-3 is a potent negative regulator of adipogenesis participating to cancer cell-adiopocyte interaction/crosstalk at the tumor invasive front. Cancer Res., 65: 10862-10871.
PubMed  |  

Bouma-ter Steige, J.C., C.I. Baeten, V.L. Thyssen, S.A. Satijn and I.C. Verhoeven et al., 2004. Angiogenic profile of breast carcinoma determines leukocyte infiltration. Clin. Cancer Res., 10: 7171-7178.
PubMed  |  

De Nardo, D.G. and L.M. Coussens, 2007. Inflammation and breast cancer. Balancing immune response: Crosstalk between adaptive and innate immune cells during breast cancer progression. Breast Cancer Res., 9: 212-212.
PubMed  |  

Hatter, R., O. Maller, S. McDaniel, K.C. Hansen and K.J. Hedman et al., 2009. Tamoxifen induces pleiotrophic changes in mammary stroma resultingin extracellular matrix that suppresses transformed phenotypes. Breast Cancer Res., 11: R5-R5.
PubMed  |  

Hermsen, B.B., S. von Mensdorff-Pouilly, H.F. Fabry, H.A. Winters, P. Kenemans, R.H. Verheijen and P.J. van Diest, 2005. Lobulitis is a frequent finding in prophylactically removed breast tissue from women at hereditary high risk of breast cancer. J. Pathol., 206: 220-223.
PubMed  |  

Knowles, H., R. Leek and A.L. Harris, 2004. Macrophage infiltration and angiogenesis in human malignancy. Novartis Found Symp., 256: 189-200.
PubMed  |  

Koyama, H., T. Hibi, Z. Isogai, M. Yoneda, M. Fujimori and J. Amano et al., 2007. Hyperproduction of hyaluronan in neu-induced mammary tumor accelerates angiogenesis through stromal cell recruitment: Possible involvement of versican/PG-M. Am. J. Pathol., 170: 1086-1099.
CrossRef  |  

Lin, E.Y., J.F. Li, L. Gnatovskiy, Y. Deng, L. Zhu and D.A. Grzesik et al., 2006. Macrophages regulate the angiogenic switch in a mouse model of breast cancer. Cancer Res., 66: 11238-11246.
PubMed  |  

Man, Y.G. and Q.X. Sang, 2004. The significance of focal myoepithelial cell layer disruptionsin human breast tumor invasion: A paradigm shift from the protease-centered hypothesis. Exp. Cell Res., 301: 103-118.
PubMed  |  

Martin, D.N., B.J. Boersma, M. Yi, M. Reimers and T.M. Howe et al., 2009. Differences in the tumor microenvironment between African-American and European-American breast cancer patients. PLoS ONE, 4: e4531-e4531.
PubMed  |  

McSherry, E.A., S. Donatello, A.M. Hopkins and S. McDonnell, 2007. Molecular basis of invasion in breast cancer. Cell. Mol. Life Sci., 64: 3201-3218.

Mestdagt, M., M. Polette, G. Buttice, A. Noel, A. Ueda, J.M. Foidart and C. Gilles, 2006. Transactivation of MCP-1/CCL2 by beta-catenin/TCF-4 in human breast cancer cells. Int. J. Cancer, 118: 35-42.
PubMed  |  

Petrocca, S., M. La Torre, G. Cosenza, T. Bocchetti and M. Cavallini et al., 2005. Male breast cancer: A case report and review of the literature. Chir Ital., 57: 365-371.
PubMed  |  

Renz, D.M., P.A.T. Baltzer, J. Bottcher, F. Thaker and M. Gajda et al., 2008. Inflammatory breast carcinoma in magnetic resonance imaging: A comparison with locally advanced breast cancer. Acad. Radiol., 15: 209-221.
CrossRef  |  

Sadlonova, A., S. Mukherjee, D.B. Bowe, S.R. Gault and N.A. Dumas et al., 2007. Human breast fibroblasts inhibit growth of the MCF10AT xenograft model of proliferative breast disease. Am. J. Pathol., 170: 1064-1076.
CrossRef  |  

Schmidt, M., J.G. Hengstler, C. Von Torne, H. Koelbl and M.C. Gehrmann, 2009. Coordinates in the universe of node-negative breast cancer revisited. Cancer Res., 69: 2695-2698.
PubMed  |  

Szabo, K.A. and G. Singh, 2005. Modulation of monocyte matrix metalloproteinase-2 by breast adenocarcinoma cells. Breast Cancer Res., 7: R661-R668.
PubMed  |  

Tsutsui, S., K. Yasuda, K. Suzuki, K. Tahara, H. Higashi and S. Era, 2005. Macrophage infiltration and its prognostic implications in breast cancer: The relationship with VEGF expression and microvessel density. Oncol. Rep., 14: 425-431.
PubMed  |  

Zhang, B., X. Cao, Y. Liu, W. Cao and F. Zhang et al., 2008. Tumor-derived matrix metalloproteinase-13 (MMP-13) correlates with poor prognoses of invasive breast cancer. BMC Cancer, 8: 83-83.
PubMed  |  

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