4.3 Article

Neoplastic human embryonic stem cells as a model of radiation resistance of human cancer stem cells

期刊

ONCOTARGET
卷 6, 期 26, 页码 22258-22269

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.4165

关键词

radiation resistance; cancer stem cells; human stem cells

资金

  1. Canadian Institute of Health Research, Canadian Cancer Society Research Institute (CCSRI)
  2. Ontario Ministry of Economic Development and Innovation's Ontario Consortium for Regeneration inducing Therapeutics
  3. Canadian Chair Program
  4. Canada Research Chair in human stein cell biology

向作者/读者索取更多资源

Studies have implicated that a small sub-population of cells within a tumour, termed cancer stem cells (CSCs), have an enhanced capacity for tumour formation in multiple cancers and may be responsible for recurrence of the disease after treatment, including radiation. Although comparisons have been made between CSCs and bulk-tumour, the more important comparison with respect to therapy is between tumour-sustaining CSC versus normal stem cells that maintain the healthy tissue. However, the absence of normal known counterparts for many CSCs has made it difficult to compare the radiation responses of CSCs with the normal stem cells required for post-radiotherapy tissue regeneration and the maintenance of tissue homeostasis. Here we demonstrate that transformed human embryonic stem cells (t-hESCs), showing features of neoplastic progression produce tumours resistant to radiation relative to their normal counterpart upon injection into immune compromised mice. We reveal that t-hESCs have a reduced capacity for radiation induced cell death via apoptosis and exhibit altered cell cycle arrest relative to hESCs in vitro. t-hESCs have an increased expression of BclXL in comparison to their normal counterparts and re-sensitization of t-hESCs to radiation upon addition of BH3-only mimetic ABT737, suggesting that overexpression of BclXL underpins t-hESC radiation insensitivity. Using this novel discovery platform to investigate radiation resistance in human CSCs, our study indicates that chemotherapy targeting Bcl2-family members may prove to be an adjuvant to radiotherapy capable of targeting CSCs.

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