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Molecular evolution of breast cancer

The Journal of Pathology · 2005 · Vol. 205(2) · pp. 248–254
Peter T. SimpsonJorge S. Reis‐FilhoTheodora GaleSunil R. Lakhani

Abstract

Molecular analysis of invasive breast cancer and its precursors has furthered our understanding of breast cancer progression. In the past few years, new multi-step pathways of breast cancer progression have been delineated through genotypic-phenotypic correlations. Nuclear grade, more than any other pathological feature, is strongly associated with the number and pattern of molecular genetic abnormalities in breast cancer cells. Thus, there are two distinct major pathways to the evolution of low- and high-grade invasive carcinomas: whilst the former consistently show oestrogen receptor (ER) and progesterone receptor (PgR) positivity and 16q loss, the latter are usually ER/PgR-negative and show Her-2 overexpression/amplification and complex karyotypes. The boundaries between the evolutionary pathways of well-differentiated/low-grade ductal and lobular carcinomas have been blurred, with changes in E-cadherin expression being one of the few distinguishing features between the two. In addition, lesions long thought to be precursors of breast carcinomas, such as hyperplasia of usual type, are currently considered mere risk indicators, whilst columnar cell lesions are now implicated as non-obligate precursors of atypical ductal hyperplasia (ADH) and well-differentiated ductal carcinoma in situ (DCIS). However, only through the combination of comprehensive morphological analysis and cutting-edge molecular tools can this knowledge be translated into clinical practice and patient management.

Gene expression and cancer classificationBreast Cancer Treatment StudiesBreast Lesions and CarcinomasBreast cancerHyperplasiaDuctal carcinomaBiologyProgesterone receptorCancerPathologyCancer researchEstrogen receptorPathological

MeSH terms

Breast NeoplasmsCarcinoma, Intraductal, NoninfiltratingFemaleHumansNeoplasm InvasivenessPrecancerous ConditionsDisease Progression
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