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一种新型吲哚-3-甲醇衍生物可抑制人口腔鳞状细胞癌细胞的体外生长。

A novel indole-3-carbinol derivative inhibits the growth of human oral squamous cell carcinoma in vitro.

机构信息

Department of Biological Science and Technology, China Medical University, Taichung 40402, Taiwan.

出版信息

Oral Oncol. 2010 Oct;46(10):748-54. doi: 10.1016/j.oraloncology.2010.08.005. Epub 2010 Sep 16.

Abstract

Indole-3-carbinol (I3C), a naturally occurring phytochemical found in cruciferous vegetables, has received much attention due to its translational potential in cancer prevention and therapy. In this study, we investigated the antitumor effects of OSU-A9, a structurally optimized I3C derivative, in a panel of oral squamous cell carcinoma cell lines, SCC4, SCC15, and SCC2095. The antiproliferative effect of OSU-A9 was approximately two-orders-of-magnitude higher than that of I3C. Importantly, normal human oral keratinocytes were less sensitive to OSU-A9 than oral cancer cells. This antiproliferative effect of OSU-A9 was attributable to the induction of mitochondrial-dependent apoptosis as evidenced by sub-G1 accumulation of cells, poly ADP-ribose polymerase cleavage, and cytochrome c release from the mitochondria. OSU-A9 down regulates Akt and NF-κB signaling pathways, leading to changes in many downstream effectors involved in regulating cell cycle and apoptosis. Moreover, the observed down regulation of IKKα and IKKβ expression by OSU-A9 is not reported for I3C. OSU-A9 also induces both the production of reactive oxygen species and the endoplasmic reticulum stress. Taken together, these results suggest the translational value of OSU-A9 in oral squamous cell cancer therapy in the future.

摘要

吲哚-3-甲醇(I3C),一种天然存在的植物化学物质,存在于十字花科蔬菜中,由于其在癌症预防和治疗方面的转化潜力而受到广泛关注。在这项研究中,我们研究了结构优化的 I3C 衍生物 OSU-A9 在一系列口腔鳞状细胞癌细胞系 SCC4、SCC15 和 SCC2095 中的抗肿瘤作用。OSU-A9 的抗增殖作用比 I3C 高约两个数量级。重要的是,正常的人口腔角质形成细胞对 OSU-A9 的敏感性低于口腔癌细胞。OSU-A9 的这种抗增殖作用归因于线粒体依赖性细胞凋亡的诱导,这表现在细胞亚 G1 期积累、多聚 ADP-核糖聚合酶的切割以及细胞色素 c 从线粒体释放。OSU-A9 下调 Akt 和 NF-κB 信号通路,导致许多参与调节细胞周期和凋亡的下游效应物发生变化。此外,OSU-A9 对 IKKα 和 IKKβ 表达的下调作用并未在 I3C 中报道。OSU-A9 还诱导活性氧和内质网应激的产生。综上所述,这些结果表明 OSU-A9 在未来口腔鳞状细胞癌治疗中的转化价值。

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