Molecular Oncology
Volume 4, Issue 5 , Pages 404-419, October 2010

Targeting breast cancer stem cells

Department of Internal Medicine, Division of Hematology and Oncology, University of Michigan Comprehensive Cancer Center, 1500 E Medical Center Dr, 6303 Comprehensive Cancer Center, Ann Arbor, 48109 MI, USA

Received 8 March 2010; received in revised form 9 June 2010; accepted 9 June 2010. published online 24 June 2010.

Abstract 

The cancer stem cell (CSC) hypothesis postulates that tumors are maintained by a self-renewing CSC population that is also capable of differentiating into non-self-renewing cell populations that constitute the bulk of the tumor. Although, the CSC hypothesis does not directly address the cell of origin of cancer, it is postulated that tissue-resident stem or progenitor cells are the most common targets of transformation. Clinically, CSCs are predicted to mediate tumor recurrence after chemo- and radiation-therapy due to the relative inability of these modalities to effectively target CSCs. If this is the case, then CSC must be efficiently targeted to achieve a true cure. Similarities between normal and malignant stem cells, at the levels of cell-surface proteins, molecular pathways, cell cycle quiescence, and microRNA signaling present challenges in developing CSC-specific therapeutics. Approaches to targeting CSCs include the development of agents targeting known stem cell regulatory pathways as well as unbiased high-throughput siRNA or small molecule screening. Based on studies of pathways present in normal stem cells, recent work has identified potential “Achilles heals” of CSC, whereas unbiased screening provides opportunities to identify new pathways utilized by CSC as well as develop potential therapeutic agents. Here, we review both approaches and their potential to effectively target breast CSC.

Keywords: Cancer stem cell (CSC), Breast cancer, Novel therapeutics

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PII: S1574-7891(10)00051-7

doi:10.1016/j.molonc.2010.06.005

Molecular Oncology
Volume 4, Issue 5 , Pages 404-419, October 2010