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一种新型槲皮素合成衍生物,8-三氟甲基-3,5,7,3',4'-五甲基槲皮素,通过靶向AMPK/mTOR信号通路抑制膀胱癌生长。

A novel synthetic derivative of quercetin, 8-trifluoromethyl-3,5,7,3',4'--pentamethyl-quercetin, inhibits bladder cancer growth by targeting the AMPK/mTOR signaling pathway.

作者信息

Tao Ting, He Caimei, Deng Jun, Huang Yanjun, Su Qiongli, Peng Mei, Yi Meiling, Darko Kwame Oteng, Zou Hui, Yang Xiaoping

机构信息

Key Laboratory of Small Targeted Molecules' Discovery, Hunan Normal University, Changsha, Hunan, 410013 China.

Department of Pharmacy, School of Medicine, Hunan Normal University, Changsha, Hunan, 410013 China.

出版信息

Oncotarget. 2017 May 11;8(42):71657-71671. doi: 10.18632/oncotarget.17799. eCollection 2017 Sep 22.

Abstract

Quercetin is a naturally existing compound and shows attractive anticancer properties for a variety of solid tumors including glioma, bladder cancer, hepatocellular carcinoma, breast cancer, hematological malignancies and prostate carcinoma. However, these anticancer properties have not been clinically approved due to unclear mechanistic information and its low bioactivity. In our previous study, we elucidated that quercetin activates AMPK pathway which is the major mechanism for its unique anticancer effect in bladder cancer. In the present study, we are trying to enhance its bioactivity by chemical modification using fluorination approach to prepare novel chemical entities, based on the principle of intermediate derivative method (IDM). The compound we obtained is named 8-trifluoromethyl-3,5,7,3',4'-O-pentamethyl- quercetin (TFQ), characterized by NMR spectra and mass spectrum (MS). The results from MTT and cologenic assay in two human and one murine bladder cancer cell lines showed that TFQ exhibits more potent inhibition on the three bladder cancer cell lines than quercetin (Que) although this enhanced effects is not very dramatic. Furthermore, we found that the survival of normal bladder cells PEBC was not significantly suppressed by TFQ compared with Que. Western blot analysis showed that TFQ possess more potent AMPK activation than Que. The downstream of AMPK was further examined by western blot. TFQ treatment is able to inactivate mTOR signaling pathway with the regulation of mTOR, 4EBP1 and P70S6K. These results demonstrated that the fluorinated quercetin derivative TFQ inhibits bladder cancer cell growth through the AMPK/mTOR pathway. Altogether, our findings suggest that TFQ could serve as a new potential therapeutic agent for bladder cancer more effective than Que.

摘要

槲皮素是一种天然存在的化合物,对包括神经胶质瘤、膀胱癌、肝细胞癌、乳腺癌、血液系统恶性肿瘤和前列腺癌在内的多种实体瘤具有诱人的抗癌特性。然而,由于作用机制尚不明确且生物活性较低,这些抗癌特性尚未得到临床认可。在我们之前的研究中,我们阐明了槲皮素激活AMPK通路,这是其在膀胱癌中独特抗癌作用的主要机制。在本研究中,我们基于中间体衍生法(IDM)的原理,尝试通过氟化方法进行化学修饰来提高其生物活性,以制备新型化学实体。我们获得的化合物名为8-三氟甲基-3,5,7,3',4'-O-五甲基槲皮素(TFQ),通过核磁共振光谱和质谱(MS)进行了表征。在两个人类和一个小鼠膀胱癌细胞系中进行的MTT和集落形成试验结果表明,TFQ对这三种膀胱癌细胞系的抑制作用比槲皮素(Que)更强,尽管这种增强效果并不十分显著。此外,我们发现与Que相比,TFQ对正常膀胱细胞PEBC的存活没有显著抑制作用。蛋白质免疫印迹分析表明,TFQ比Que具有更强的AMPK激活能力。通过蛋白质免疫印迹进一步检测了AMPK的下游。TFQ处理能够通过调节mTOR、4EBP1和P70S6K来使mTOR信号通路失活。这些结果表明,氟化槲皮素衍生物TFQ通过AMPK/mTOR通路抑制膀胱癌细胞生长。总之,我们的研究结果表明,TFQ可能作为一种比Que更有效的新型潜在膀胱癌治疗药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1cc/5641079/0d73cdd792da/oncotarget-08-71657-g001.jpg

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