Melatonin synergizes the chemotherapeutic effect of 5‐fluorouracil in colon cancer by suppressing <scp>PI</scp>3K/<scp>AKT</scp> and <scp>NF</scp>‐κB/<scp>iNOS</scp> signaling pathways

Yue Gao(Sun Yat-sen University), Xiangsheng Xiao(Sun Yat-sen University), Changlin Zhang(Sun Yat-sen University), Wendan Yu(Dalian Medical University), Wei Guo(Dalian Medical University), Zhifeng Zhang(Dalian Medical University), Zhenglin Li(Dalian Medical University), Xu Feng(Dalian Medical University), Jiaojiao Hao(Dalian Medical University), Kefang Zhang(Care International), Bingyi Xiao(Sun Yat-sen University), Miao Chen(Sun Yat-sen University), Wenlin Huang(Sun Yat-sen University), Shunbin Xiong(The University of Texas MD Anderson Cancer Center), Xiaojun Wu(Sun Yat-sen University), Wuguo Deng(Sun Yat-sen University)
Journal of Pineal Research
November 19, 2016
Cited by 186

Abstract

Abstract 5‐Fluorouracil (5‐ FU ) is one of the most commonly used chemotherapeutic agents in colon cancer treatment, but has a narrow therapeutic index limited by its toxicity. Melatonin exerts antitumor activity in various cancers, but it has never been combined with 5‐ FU as an anticolon cancer treatment to improve the chemotherapeutic effect of 5‐ FU . In this study, we assessed such combinational use in colon cancer and investigated whether melatonin could synergize the antitumor effect of 5‐ FU . We found that melatonin significantly enhanced the 5‐ FU ‐mediated inhibition of cell proliferation, colony formation, cell migration and invasion in colon cancer cells. We also found that melatonin synergized with 5‐ FU to promote the activation of the caspase/ PARP ‐dependent apoptosis pathway and induce cell cycle arrest. Further mechanism study demonstrated that melatonin synergized the antitumor effect of 5‐ FU by targeting the PI 3K/ AKT and NF ‐κB/inducible nitric oxide synthase ( iNOS ) signaling. Melatonin in combination with 5‐ FU markedly suppressed the phosphorylation of PI 3K, AKT , IKK α, IκBα, and p65 proteins, promoted the translocation of NF ‐κB p50/p65 from the nuclei to cytoplasm, abrogated their binding to the iNOS promoter, and thereby enhanced the inhibition of iNOS signaling. In addition, pretreatment with a PI 3K‐ or iNOS ‐specific inhibitor synergized the antitumor effects of 5‐ FU and melatonin. Finally, we verified in a xenograft mouse model that melatonin and 5‐ FU exerted synergistic antitumor effect by inhibiting the AKT and iNOS signaling pathways. Collectively, our study demonstrated that melatonin synergized the chemotherapeutic effect of 5‐ FU in colon cancer through simultaneous suppression of multiple signaling pathways.


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