Back to Search Start Over

Sulforaphane enhances the anticancer activity of taxanes against triple negative breast cancer by killing cancer stem cells.

Authors :
Burnett, Joseph P.
Gi Lim
Yanyan Li
Shah, Ronak B.
Rebekah Lim
Paholak, Hayley J.
McDermott, Sean P.
Lichao Sun
Yasuhiro Tsume
Shuhua Bai
Wicha, Max S.
Duxin Sun
Tao Zhang
Lim, Gi
Li, Yanyan
Lim, Rebekah
Sun, Lichao
Tsume, Yasuhiro
Bai, Shuhua
Sun, Duxin
Source :
Cancer Letters. May2017, Vol. 394, p52-64. 13p.
Publication Year :
2017

Abstract

Triple negative breast cancer (TNBC) typically exhibits rapid progression, high mortality and faster relapse rates relative to other breast cancer subtypes. In this report we examine the combination of taxanes (paclitaxel or docetaxel) with a breast cancer stem cell (CSC)-targeting agent sulforaphane for use against TNBC. We demonstrate that paclitaxel or docetaxel treatment induces IL-6 secretion and results in expansion of CSCs in TNBC cell lines. Conversely, sulforaphane is capable of preferentially eliminating CSCs, by inhibiting NF-κB p65 subunit translocation, downregulating p52 and consequent downstream transcriptional activity. Sulforaphane also reverses taxane-induced aldehyde dehydrogenase-positive (ALDH+) cell enrichment, and dramatically reduces the size and number of primary and secondary mammospheres formed. In vivo in an advanced treatment orthotopic mouse xenograft model together with extreme limiting dilution analysis (ELDA), the combination of docetaxel and sulforaphane exhibits a greater reduction in primary tumor volume and significantly reduces secondary tumor formation relative to either treatment alone. These results suggest that treatment of TNBCs with cytotoxic chemotherapy would be greatly benefited by the addition of sulforaphane to prevent expansion of and eliminate breast CSCs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03043835
Volume :
394
Database :
Academic Search Index
Journal :
Cancer Letters
Publication Type :
Academic Journal
Accession number :
122084960
Full Text :
https://doi.org/10.1016/j.canlet.2017.02.023