Invasion in breast lesions: the role of the epithelial–stroma barrier
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Kylie L. Gorringe | I. Ellis | P. Tan | S. Fox | S. Lakhani | J. Reis-Filho | A. Green | S. Pinder | A. Vincent-Salomon | E. Rakha | S. Badve | D. Dabbs | T. Decker | F. Schmitt | G. Tse | M. Toss | I. Miligy | K. Gorringe | F. Geyer | M. Foschini | F. Moreno | Yan Wentao | A. Green
[1] Kylie L. Gorringe,et al. Breast ductal carcinoma in situ carry mutational driver events representative of invasive breast cancer , 2017, Modern Pathology.
[2] I. Ellis,et al. Genetic Analysis of Microglandular Adenosis and Acinic Cell Carcinomas of the Breast Provides Evidence for the Existence of a Low-grade Triple-Negative Breast Neoplasia Family , 2016, Modern Pathology.
[3] Imran Nazir,et al. Encapsulated papillary carcinoma (EPC) of breast: A clinical, pathological and immunohistochemical analysis of eight cases. , 2016, JPMA. The Journal of the Pakistan Medical Association.
[4] I. Ellis,et al. Clinicopathologic Characteristics of Solid Papillary Carcinoma of the Breast , 2016, The American journal of surgical pathology.
[5] H. Kini,et al. Diagnostic Pitfalls in Papillary Lesions of the Breast: Experience from a Single Tertiary Care Center. , 2016, Journal of clinical and diagnostic research : JCDR.
[6] I. Ellis,et al. Infiltrating epitheliosis of the breast: characterization of histological features, immunophenotype and genomic profile , 2016, Histopathology.
[7] Navid Sadri,et al. Acinic cell carcinoma of breast: morphologic and immunohistochemical review of a rare breast cancer subtype. , 2016, Human pathology.
[8] Anatália Labilloy,et al. New concepts in basement membrane biology , 2015, The FEBS journal.
[9] A. Bal,et al. Phenotypic and Functional Characterization of Ductal Carcinoma In Situ-Associated Myoepithelial Cells. , 2015, Clinical breast cancer.
[10] Mbbs Md FRCPath Donald N. Pritzker Vinay Kumar. Robbins and Cotran pathologic basis of disease , 2015 .
[11] I. Ellis,et al. Papillary and neuroendocrine breast lesions: the WHO stance , 2015, Histopathology.
[12] J. Marshall,et al. αvβ6 Expression in myoepithelial cells: a novel marker for predicting DCIS progression with therapeutic potential. , 2014, Cancer research.
[13] M. Sopel,et al. Nuclear location of tumor suppressor protein maspin inhibits proliferation of breast cancer cells without affecting proliferation of normal epithelial cells , 2014, BMC Cancer.
[14] H. Hayashi,et al. A case of intracystic apocrine papillary tumor: diagnostic pitfalls for malignancy. , 2013, Pathology, research and practice.
[15] J. Reis-Filho,et al. Microglandular adenosis: a non-obligate precursor of triple-negative breast cancer? , 2013, Histology and histopathology.
[16] S. Lester,et al. Paget disease of the breast with invasion from nipple skin into the dermis. , 2013, Archives of pathology & laboratory medicine.
[17] M. Rosa,et al. Solid papillary carcinoma of the breast: a pathologically and clinically distinct breast tumor. , 2012, Archives of pathology & laboratory medicine.
[18] I. Ellis,et al. Infiltrative epitheliosis of the breast , 2012, Journal of Clinical Pathology.
[19] G. Cserni. Benign apocrine papillary lesions of the breast lacking or virtually lacking myoepithelial cells—potential pitfalls in diagnosing malignancy , 2012, APMIS : acta pathologica, microbiologica, et immunologica Scandinavica.
[20] P. Dey. Epigenetic changes in tumor microenvironment. , 2011, Indian journal of cancer.
[21] Mohamed Abdelkarim,et al. Invading Basement Membrane Matrix Is Sufficient for MDA-MB-231 Breast Cancer Cells to Develop a Stable In Vivo Metastatic Phenotype , 2011, PloS one.
[22] F. Climent,et al. Encapsulated Papillary Carcinoma of the Breast: An Invasive Tumor With Excellent Prognosis , 2011, The American journal of surgical pathology.
[23] R. Shui,et al. [Invasive carcinoma arising in breast microglandular adenosis: a clinicopathologic study of three cases and review of the literature]. , 2011, Zhonghua bing li xue za zhi = Chinese journal of pathology.
[24] L. Norton,et al. Intracystic Papillary Carcinoma of the Breast: An In Situ or Invasive Tumor? Results of Immunohistochemical Analysis and Clinical Follow-up , 2011, The American journal of surgical pathology.
[25] J. Reis-Filho,et al. Breast cancer precursors revisited: molecular features and progression pathways , 2010, Histopathology.
[26] G. Tseng,et al. Characterization of High-grade Ductal Carcinoma In Situ With and Without Regressive Changes: Diagnostic and Biologic Implications , 2009, Applied immunohistochemistry & molecular morphology : AIMM.
[27] S. Chia,et al. Encapsulated apocrine papillary carcinoma of the breast—a tumour of uncertain malignant potential: report of five cases , 2009, Virchows Archiv.
[28] Philip Q. Xiao,et al. Infiltrating syringomatous adenoma of the nipple: clinical presentation and literature review. , 2009, Archives of pathology & laboratory medicine.
[29] S. Lakhani,et al. Molecular Evidence for Progression of Microglandular Adenosis (MGA) to Invasive Carcinoma , 2009, The American journal of surgical pathology.
[30] S. Schnitt,et al. Phenotypic Alterations in Ductal Carcinoma In Situ-associated Myoepithelial Cells: Biologic and Diagnostic Implications , 2009, The American journal of surgical pathology.
[31] Jun Yao,et al. Regulation of in situ to invasive breast carcinoma transition. , 2008, Cancer cell.
[32] Charles M. Perou,et al. Ductal Carcinoma In situ and the Emergence of Diversity during Breast Cancer Evolution , 2008, Clinical Cancer Research.
[33] G. Cserni. Lack of myoepithelium in apocrine glands of the breast does not necessarily imply malignancy , 2007, Histopathology.
[34] Raghu Kalluri,et al. Structure and Function of Basement Membranes , 2007, Experimental biology and medicine.
[35] C. Quinn,et al. Epithelial displacement during breast needle core biopsy causes diagnostic difficulties in subsequent surgical excision specimens , 2006, Journal of Clinical Pathology.
[36] D. Visscher,et al. Clinicopathologic Analysis of Solid Papillary Carcinoma of the Breast and Associated Invasive Carcinomas , 2006, The American journal of surgical pathology.
[37] R. Millis,et al. Problems in Breast Pathology , 2006, Virchows Archiv.
[38] Jun Yao,et al. Distinct epigenetic changes in the stromal cells of breast cancers , 2005, Nature Genetics.
[39] Mina J Bissell,et al. Myoepithelial cells: good fences make good neighbors , 2005, Breast Cancer Research.
[40] Mina J. Bissell,et al. Myoepithelial Cells: Their Origin and Function in Breast Morphogenesis and Neoplasia , 2005, Journal of Mammary Gland Biology and Neoplasia.
[41] Kornelia Polyak,et al. Do Myoepithelial Cells Hold the Key for Breast Tumor Progression? , 2005, Journal of Mammary Gland Biology and Neoplasia.
[42] S. Barsky,et al. Myoepithelial Cells: Autocrine and Paracrine Suppressors of Breast Cancer Progression , 2005, Journal of Mammary Gland Biology and Neoplasia.
[43] J. Mulshine,et al. A subset of in situ breast tumor cell clusters lacks expression of proliferation and progression related markers but shows signs of stromal and vascular invasion. , 2005, Cancer detection and prevention.
[44] Q. Sang,et al. The significance of focal myoepithelial cell layer disruptions in human breast tumor invasion: a paradigm shift from the "protease-centered" hypothesis. , 2004, Experimental cell research.
[45] Rameen Beroukhim,et al. Molecular characterization of the tumor microenvironment in breast cancer. , 2004, Cancer cell.
[46] Russell Vang,et al. Cell clusters overlying focally disrupted mammary myoepithelial cell layers and adjacent cells within the same duct display different immunohistochemical and genetic features: implications for tumor progression and invasion , 2003, Breast Cancer Research.
[47] Mina J Bissell,et al. Normal and tumor-derived myoepithelial cells differ in their ability to interact with luminal breast epithelial cells for polarity and basement membrane deposition. , 2010, Journal of cell science.
[48] Sushanta K Banerjee,et al. Neuropilin‐1 is differentially expressed in myoepithelial cells and vascular smooth muscle cells in preneoplastic and neoplastic human breast: A possible marker for the progression of breast cancer , 2002, International journal of cancer.
[49] B. Fingleton,et al. Matrix Metalloproteinase Inhibitors and Cancer—Trials and Tribulations , 2002, Science.
[50] Z. Shao,et al. The human myoepithelial cell is a natural tumor suppressor. , 1997, Clinical cancer research : an official journal of the American Association for Cancer Research.
[51] S. Love,et al. ‘Revertant’ DCIS in human axillary breast carcinoma metastases , 1997, The Journal of pathology.
[52] P. Sommer,et al. Lysyl oxidase gene expression in the stromal reaction to in situ and invasive ductal breast carcinoma. , 1997, The American journal of pathology.
[53] F. Sarkar,et al. Immunohistologic analysis of invasive phenotype in breast carcinoma. A clinicopathologic study. , 1993, Pathology, research and practice.
[54] J. Silverman,et al. Collagenous spherulosis. Report of a case with diagnosis by fine needle aspiration biopsy with immunocytochemical and ultrastructural observations. , 1993, Acta cytologica.
[55] V. Quaranta,et al. Immunohistochemical localization of integrins in the normal, hyperplastic, and neoplastic breast. Correlations with their functions as receptors and cell adhesion molecules. , 1991, The American journal of pathology.
[56] B. Gusterson,et al. Invading squamous cell carcinoma can retain a basal lamina. An immunohistochemical study using a monoclonal antibody to type IV collagen. , 1984, Laboratory investigation; a journal of technical methods and pathology.
[57] E. Engvall,et al. Basement membrane changes in breast cancer detected by immunohistochemical staining for laminin. , 1981, Cancer research.
[58] M. Harris. Problems in Breast Pathology 11, Major Problems in Pathology , 1980, British Journal of Cancer.