Y.L.Y and W.N.Y are employees of Davos Life Science Pvt., Ltd, who is the manufacturer of gamma-tocotrienols
Cancer Therapy
Gamma-tocotrienol as an effective agent in targeting prostate cancer stem cell-like population
Article first published online: 8 JUL 2010
DOI: 10.1002/ijc.25546
Copyright © 2010 UICC
Additional Information
How to Cite
Luk, S. U., Yap, W. N., Chiu, Y.-T., Lee, D. T., Ma, S., Lee, T. K. W., Vasireddy, R. S., Wong, Y.-C., Ching, Y. P., Nelson, C., Yap, Y. L. and Ling, M.-T. (2011), Gamma-tocotrienol as an effective agent in targeting prostate cancer stem cell-like population. Int. J. Cancer, 128: 2182–2191. doi: 10.1002/ijc.25546
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Y.L.Y and W.N.Y are employees of Davos Life Science Pvt., Ltd, who is the manufacturer of gamma-tocotrienols
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Fax: +[61 7 3138 6039]
Publication History
- Issue published online: 8 MAR 2011
- Article first published online: 8 JUL 2010
- Accepted manuscript online: 4 AUG 2010 11:57AM EST
- Manuscript Accepted: 17 JUN 2010
- Manuscript Received: 18 APR 2010
Funded by
- HKU Seed funding for applied research, M.T.L is supported by QUT Vice Chancellor Research Fellowship.
Keywords:
- Tocotrienol;
- prostate cancer;
- stem cell;
- vitamin E
Abstract
Emerging evidence supports that prostate cancer originates from a rare subpopulation of cells, namely prostate cancer stem cells (CSCs). Conventional therapies for prostate cancer are believed to mainly target the majority of differentiated tumor cells but spare CSCs, which may account for the subsequent disease relapse after treatment. Therefore, successful elimination of CSCs may be an effective strategy to achieve complete remission from this disease. Gamma-tocotrienols (γ-T3) is one of the vitamin-E constituents, which have been shown to have anticancer effects against a wide range of human cancers. Recently, we have reported that γ-T3 treatment not only inhibits prostate cancer cell invasion but also sensitizes the cells to docetaxel-induced apoptosis, suggesting that γ-T3 may be an effective therapeutic agent against advanced stage prostate cancer. Here, we demonstrate for the first time that γ-T3 can downregulate the expression of prostate CSC markers (CD133/CD44) in androgen-independent prostate cancer cell lines (PC-3 and DU145), as evident from Western blotting analysis. Meanwhile, the spheroid formation ability of the prostate cancer cells was significantly hampered by γ-T3 treatment. In addition, pretreatment of PC-3 cells with γ-T3 was found to suppress tumor initiation ability of the cells. More importantly, although CD133-enriched PC-3 cells were highly resistant to docetaxel treatment, these cells were as sensitive to γ-T3 treatment as the CD133-depleted population. Our data suggest that γ-T3 may be an effective agent in targeting prostate CSCs, which may account for its anticancer and chemosensitizing effects reported in previous studies.

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