MicroRNA-21 regulates stemness in cancer cells
- PMID: 24041029
- PMCID: PMC3856611
- DOI: 10.1186/scrt321
MicroRNA-21 regulates stemness in cancer cells
Abstract
MicroRNA-21 (miR-21) functions have been linked to cancer progression and chemo- or radiotherapy resistance. While an increasing number of studies have reported a potential role of miR-21 expression in promoting growth of a small population of stem/progenitor cells, knowledge on its role as a regulator of stemness in cancers remains limited. In a previous issue of Stem Cell Research & Therapy, Chung and colleagues provide evidence that miR-21 is highly expressed in stem/progenitor populations of ovarian teratocarcinoma cells and has the potential to mediate growth and self-renewal in cancer stem/progenitor cells. Here we summarize current knowledge on miR-21 functions in human cancers and discuss how this finding provides insight into the role of miR-21 as an oncogenic regulator in stem/progenitor cell populations of human cancers.
Comment on
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MicroRNA-21 promotes the ovarian teratocarcinoma PA1 cell line by sustaining cancer stem/progenitor populations in vitro.Stem Cell Res Ther. 2013 Jul 26;4(4):88. doi: 10.1186/scrt247. Stem Cell Res Ther. 2013. PMID: 23890123 Free PMC article.
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References
-
- Medina PP, Nolde M, Slack FJ. OncomiR addiction in an in vivo model of microRNA-21-induced pre-B-cell lymphoma. Nature. 2010;467:86–90. - PubMed
-
- Huang YH, Lin YH, Chi HC, Liao CH, Liao CJ, Wu SM, Chen CY, Tseng YH, Tsai CY, Lin SY, Hung YT, Wang CJ, Lin CD, Lin KH. Thyroid hormone regulation of miR-21 enhances migration and invasion of hepatoma. Cancer Res. 2013;73:2505–2517. - PubMed
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