4.6 Article

An evolutionary explanation for the presence of cancer nonstem cells in neoplasms

期刊

EVOLUTIONARY APPLICATIONS
卷 6, 期 1, 页码 92-101

出版社

WILEY
DOI: 10.1111/eva.12030

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资金

  1. National Institutes of Health [CA149566, CA140657, HG000046, CA18029, CA144331, CA137811, CA91955, CA010815, CA119224]
  2. Natural Sciences and Engineering Research Council of Canada
  3. Pew Charitable Trust
  4. Martha W. Rodgers Charitable Trust
  5. McLean Contributionship
  6. Landon AACR Innovator Award for Cancer Prevention
  7. American Cancer Society Research Scholar Grant [117209-RSG-09-163-01-CNE]

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Contrary to conventional views that assume all cells in a neoplasm can propagate the tumor, the cancer stem cell hypothesis posits that only a fraction of the cells (the cancer stem cells) can act as tumor-propagating cells, while most of the tumor is composed of cells with limited replication potential. Here, we offer an evolutionary approach to this controversy. We used several evolutionary, computational models to investigate cancer cell dynamics and conditions consistent with the stem cell hypothesis. Our models predict that if selection acts at the cell level, neoplasms should be primarily comprised of cancer stem cells, in contrast to experimental data indicating that neoplasms contain large fractions of cancer nonstem cells. We explore several solutions explaining the paradoxical existence of cancer nonstem cells in neoplasms, including the possibility that selection acts at the level of multicellular proliferative units.

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