4.7 Article

The Hedgehog signalling pathway mediates drug response of MCF-7 mammosphere cells in breast cancer patients

期刊

CLINICAL SCIENCE
卷 129, 期 9, 页码 809-822

出版社

PORTLAND PRESS LTD
DOI: 10.1042/CS20140592

关键词

breast cancer tissues; chemoresistance; Hedgehog signalling pathway; mammosphere

资金

  1. National Natural Science Foundation of China [81373427, 81102472]
  2. Program for Liaoning Innovative Research Team in University (LNIRT), China [LT2014016]
  3. open project of State Key Laboratory of Oncology in South China [HN2014-03]
  4. S&T Projects in Shenyang, China [F12-148-9-00]

向作者/读者索取更多资源

BCSCs (breast cancer stem cells) have been shown to be resistant to chemotherapy. However, the mechanisms underlying BCSC-mediated chemoresistance remain poorly understood. The Hh (Hedgehog) pathway is important in the stemness maintenance of CSCs. Nonetheless, it is unknown whether the Hh pathway is involved in BCSC-mediated chemoresistance. In the present study, we cultured breast cancer MCF-7 cells in suspension in serum-free medium to obtain BCSC-enriched MCF-7 MS (MCF-7 mammosphere) cells. We showed that MCF-7 MS cells are sensitive to salinomycin, but not paclitaxel, distinct from parent MCF-7 cells. The expression of the critical components of Hh pathway, i.e. PTCH (Patched), SMO (Smoothened), Gli1 and Gli2, was significantly up-regulated in MCF-7 MS cells; salinomycin, but not paclitaxel, treatment caused a remarkable decrease in expression of those genes in MCF-7 MS cells, but not in MCF-7 cells. Salinomycin, but not paclitaxel, increased apoptosis, decreased the migration capacity of MCF-7 MS cells, accompanied by a decreased expression of c-Myc, Bcl-2 and Snail, the target genes of the Hh pathway. The salinomycin-induced cytotoxic effect could be blocked by Shh (Sonic Hedgehog)-mediated Hh signalling activation. Inhibition of the Hh pathway by cyclopamine could sensitize MCF-7 MS cells to paclitaxel. In addition, salinomycin, but not paclitaxel, significantly reduced the tumour growth, accompanied by decreased expression of PTCH, SMO, Gli1 and Gli2 in xenograft tumours. Furthermore, the expression of SMO and Gli1 was positively correlated with the expression of CD44(+)/CD24(-), and the expression of SMO and Gli1 in CD44(+)/CD24(-) tissues was associated with a significantly shorter OS (overall survival) and DFS (disease-free survival) in breast cancer patients receiving chemotherapy.

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