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Journal ArticleDOI

Detection and analysis of mammary gland stem cells.

John Stingl
- 01 Jan 2009 - 
- Vol. 217, Iss: 2, pp 229-241
TLDR
Assays used to detect mammary stem and progenitor cells, some of the properties of these cells and their progeny and how they relate to the cancer stem cells that drive breast tumour growth are focused on.
Abstract
Emerging evidence from a variety of tissue types, including the mammary gland, suggests that normal stem and progenitor cells are the likely targets for malignant transformation, and that these transformed cells can function as cancer stem cells that drive tumour growth. In order to develop therapies that target these cancer stem cells, it is essential to determine the molecular mechanisms that regulate the growth and differentiation of these cells and their normal counterparts. To this end, a number of quantitative robust clonal assays have been developed that can detect the presence of human and mouse mammary stem and progenitor cells. These assays, when used in conjunction with cell-sorting strategies, have permitted the prospective isolation and characterization of a variety of cell types, including stem cells. Evidence to date indicates that these stem cells exhibit properties of basal mammary cells, possess extensive self-renewal properties, and are capable of generating a large number of phenotypically-distinct progenitor cells, many of which display characteristics of luminal cells. This review article will focus on the assays used to detect mammary stem and progenitor cells, some of the properties of these cells and their progeny and how they relate to the cancer stem cells that drive breast tumour growth.

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Citations
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Journal ArticleDOI

Menopausal estrogen deprivation activates steroid sensitive stem cells (3SC) and local estrogen biosynthesis: A model for breast cancer development

TL;DR: It is suggested that estrogen therapy could be protective against BC and a combination of AIs and estrogen might augment the preventative merits of both drugs and maintain a good tolerability profile for long-term prevention protocols.
Journal ArticleDOI

Mammary epithelial and breast cancer stem cells.

TL;DR: The characterisation of the signalling pathways which provide self renewal properties to CSCs and the targeted interference with limiting signal transduction components offer a promising new therapeutic approach for the treatment of cancer.
Journal ArticleDOI

Triple-negative breast cancers and the human mammary epithelial cell hierarchy.

TL;DR: Recent data regarding characterization of a human mammary stem cell hierarchy and its relationship to the pathogenesis of subsets of triple-negative breast cancers will be reviewed.
Journal ArticleDOI

Surgical resection of breast cancers: Molecular analysis of cancer stem cells in residual disease

TL;DR: It is demonstrated that neoadjuvant chemotherapy does not completely eradicate PIK3CA‐defective breast cancer cells with stemlike properties, and these findings may help explain the poor clinical outcomes in patients with residual disease.
Book ChapterDOI

Application of Stem Cell Assays for the Characterization of Cancer Stem Cells

TL;DR: In this article, the authors discuss the current methodologies that are widely used to identify and characterize cancer stem cells (CSCs) with an emphasis on recent developments in the breast cancer field.
References
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Journal ArticleDOI

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Journal ArticleDOI

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Journal ArticleDOI

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TL;DR: Stem cell biology has come of age: Unequivocal proof that stem cells exist in the haematopoietic system has given way to the prospective isolation of several tissue-specific stem and progenitor cells, the initial delineation of their properties and expressed genetic programmes, and the beginnings of their utility in regenerative medicine.
Journal ArticleDOI

Human acute myeloid leukemia is organized as a hierarchy that originates from a primitive hematopoietic cell

TL;DR: It is demonstrated that the cell capable of initiating human AML in non-obese diabetic mice with severe combined immunodeficiency disease (NOD/SCID mice) — termed the SCID leukemia-initiating cell, or SL-IC — possesses the differentiate and proliferative capacities and the potential for self-renewal expected of a leukemic stem cell.
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