4.3 Article

Halofuginone inhibits radiotherapy-induced epithelial-mesenchymal transition in lung cancer

期刊

ONCOTARGET
卷 7, 期 44, 页码 71341-71352

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.11217

关键词

epithelial-mesenchymal transition (EMT); halofuginone; transforming growth factor-beta (TGF-beta 1); radiotherapy; lung cancer

资金

  1. National Nature Science Foundation of China [30970864]
  2. Tianjin Key Problem Tackling Project for Cancer Therapy [12ZCDZSY15900]

向作者/读者索取更多资源

Radiotherapy is used to treat many different human tumors. Paradoxically, radiation can activate TGF-beta 1 signaling and induce the epithelial-mesenchymal transition (EMT), which is associated with enhanced tumor progression. This study investigated the inhibitory effects of halofuginone, a plant-derived alkaloid that has been shown to inhibit TGF-beta 1 signaling, on radiation-induced EMT and explored the underlying mechanisms using a Lewis lung carcinoma (LLC) xenograft model. The cells and animals were divided into five treatment groups: Normal Control (NC), Halofuginone alone (HF), Radiotherapy alone (RT), Radiotherapy combined with Halofuginone (RT+HF), and Radiotherapy combined with the TGF-beta 1 inhibitor SB431542 (RT+SB). Radiation induced EMT in lung cancer cells and xenografts, as evidenced by increased expression of the mesenchymal markers N-cadherin and Vimentin, and reduced expression of the epithelial markers E-cadherin and Cytokeratin. Further, radiotherapy treatment increased the migration and invasion of LLC cells. Halofuginone reversed the EMT induced by radiotherapy in vitro and in vivo, and inhibited the migration and invasion of LLC cells. In addition, TGF-beta 1/Smad signaling was activated by radiotherapy and the mRNA expression of Twist and Snail was elevated; this effect was reversed by halofuginone or the TGF-beta 1 inhibitor SB431542. Our results demonstrate that halofuginone inhibits radiation-induced EMT, and suggest that suppression of TGF-beta 1 signaling may be responsible for this effect.

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