4.6 Article

Bexarotene inhibits the viability of non-small cell lung cancer cells via slc10a2/PPAR gamma/PTEN/mTOR signaling pathway

期刊

BMC CANCER
卷 18, 期 -, 页码 -

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BIOMED CENTRAL LTD
DOI: 10.1186/s12885-018-4224-x

关键词

Non-small cell lung cancer; A549 cells; H1299 cells; Bexarotene; slc10a2; PPAR gamma

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资金

  1. Major Key Project of Shanghai Chest Hospital Science & Technology foundation [2014YZDC10600]

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Background: Thirty to 40 % of non-small cell lung cancer (NSCLC) patients developed higher hypertriglyceridemia in the process of treatment with bexarotene. And bioinformatics studies discovered that the expression of slc10a2 was increased in high-grade hypertriglyceridemia patients. So, we will explore the mechanism which may involve in this process. Methods: We constructed slc10a2 overexpressed A549 cells and H1299 cells as cell models, normal A549 cells and H1299 cells as control. Then we explored the effects of slc10a2 on A549 cells and H1299 cells behaviors, including proliferation, invasion and apoptosis. The expression of apoptotic related genes and anti-cancer genes also been detected. Results: We found that the proliferation and migration were inhibited and the apoptosis of NSCLC cells was accelerated by bexarotene. In addition, overexpressed slc10a2 in NSCLC cells can further suppress the proliferation and migration, and promote apoptosis under the treatment of bexarotene. On the contrary, the opposite results were obtained after slc10a2 gene was silenced in NSCLC cells treated with bexarotene. Moreover, the expression of caspase 3, caspase 7, PTEN, P21, P53, LKB1, TSC2 were increased and the expression of Bcl-2, cyclin D1, c-FLIP were declined in NSCLC cells and slc10a2 overexpressed NSCLC cells with the treatment of bexarotene, and the opposite situations were seen after slc10a2 gene was silenced in NSCLC cells. The further studies revealed the increased expression of slc10a2 activated the expression of peroxisome proliferator-activated receptor. (PPAR gamma), then up-regulated PTEN expression and down-regulated mTOR expression. Conclusion: These results suggest that bexarotene inhibits the viability of lung cancer cells via slc10a2/PPAR gamma/PTEN/mTOR signaling pathway.

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