4.7 Article

Radiation-Induced Reprogramming of Breast Cancer Cells

Journal

STEM CELLS
Volume 30, Issue 5, Pages 833-844

Publisher

WILEY-BLACKWELL
DOI: 10.1002/stem.1058

Keywords

Breast cancer stem cells; Radiation; Notch; Proteasome; Dedifferentiation

Funding

  1. California Breast Cancer Research Program [15NB-0153]
  2. Department of Defense [W81XWH-07-1-0065]
  3. National Cancer Institute [5RO1CA137110]
  4. Ward Family Foundation

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Breast cancers are thought to be organized hierarchically with a small number of breast cancer stem cells (BCSCs) able to regrow a tumor while their progeny lack this ability. Recently, several groups reported enrichment for BCSCs when breast cancers were subjected to classic anticancer treatment. However, the underlying mechanisms leading to this enrichment are incompletely understood. Using non-BCSCs sorted from patient samples, we found that ionizing radiation reprogrammed differentiated breast cancer cells into induced BCSCs (iBCSCs). iBCSCs showed increased mammosphere formation, increased tumorigenicity, and expressed the same stemness-related genes as BCSCs from nonirradiated samples. Reprogramming occurred in a polyploid subpopulation of cells, coincided with re-expression of the transcription factors Oct4, sex determining region Y-box 2, Nanog, and Klf4, and could be partially prevented by Notch inhibition. We conclude that radiation may induce a BCSC phenotype in differentiated breast cancer cells and that this mechanism contributes to increased BCSC numbers seen after classic anticancer treatment. STEM CELLS 2012;30:833844

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