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首页> 外文期刊>BMC Urology >Inhibition of COX-2 expression by topical diclofenac enhanced radiation sensitivity via enhancement of TRAIL in human prostate adenocarcinoma xenograft model
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Inhibition of COX-2 expression by topical diclofenac enhanced radiation sensitivity via enhancement of TRAIL in human prostate adenocarcinoma xenograft model

机译:在人前列腺腺癌异种移植模型中,局部双氯芬酸抑制COX-2表达可通过TRAIL增强来增强放射敏感性

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Background COX-2 inhibitors have an antitumor potential and have been verified by many researchers. Treatment of cancer cells with external stressors such as irradiation can stimulate the over-expression of COX-2 and possibly confer radiation resistance. In this study, we tested if topical diclofenac, which inhibits both COX-1 and COX-2, administration rendered prostate tumor cells sensitize to the effects of radiation. Methods LNCaP-COX-2 and LNCaP-Neo cells were treated with 0 to 1000 μM diclofenac. Next, a clonogenic assay was performed in which cells were subjected to irradiation (0 to 4 Gy) with or without diclofenac. COX-2 expression and other relevant molecules were measured by real-time PCR and immunohistochemistry after irradiation and diclofenac treatment. In addition, we assessed the tumor volumes of xenograft LNCaP-COX-2 cells treated with topical diclofenac with or without radiation therapy (RT). Results LNCaP-COX-2 and LNCaP-Neo cell lines experienced cytotoxic effects of diclofenac in a dose related manner. Clonogenic assays demonstrated that LNCaP-COX-2 cells were significantly more resistant to RT than LNCaP-Neo cells. Furthermore, the addition of diclofenac sensitized LNCaP-COX-2 not but LNCaP-Neo cells to the cytocidal effects of radiation. In LNCaP-COX-2 cells, diclofenac enhanced radiation-induced apoptosis compared with RT alone. This phenomenon might be attributed to enhancement of RT-induced TRAIL expression as demonstrated by real-time PCR analysis. Lastly, tumor volumes of LNCaP-COX-2 cells xenograft treated with diclofenac or RT alone was >4-fold higher than in mice treated with combined diclofenac and radiation (p Conclusions These in vitro and in vivo findings suggest that conventional COX inhibitor, diclofenac enhances the effect of RT on prostate cancer cells that express COX-2. Thus, diclofenac may have potential as radiosensitizer for treatment of prostate cancer.
机译:背景技术COX-2抑制剂具有抗肿瘤潜力,并已被许多研究人员证实。用外部刺激物(例如辐射)处理癌细胞可以刺激COX-2的过度表达,并可能赋予抗辐射性。在这项研究中,我们测试了同时抑制COX-1和COX-2的局部双氯芬酸给药是否使前列腺肿瘤细胞对放射线敏感。方法用0至1000μM双氯芬酸处理LNCaP-COX-2和LNCaP-Neo细胞。接下来,进行克隆形成测定,其中在有或没有双氯芬酸的情况下对细胞进行照射(0至4Gy)。辐射和双氯芬酸处理后,通过实时PCR和免疫组织化学测量COX-2表达和其他相关分子。此外,我们评估了用局部双氯芬酸联合或不联合放射治疗(RT)治疗的异种移植LNCaP-COX-2细胞的肿瘤体积。结果LNCaP-COX-2和LNCaP-Neo细胞系以剂量相关的方式经历了双氯芬酸的细胞毒性作用。克隆分析表明,LNCaP-COX-2细胞比LNCaP-Neo细胞对RT的抵抗力强得多。此外,添加双氯芬酸致敏的LNCaP-COX-2不是LNCaP-Neo细胞,而是对辐射具有杀伤作用。在LNCaP-COX-2细胞中,与单独的RT相比,双氯芬酸增强了辐射诱导的细胞凋亡。如实时PCR分析所证实的,该现象可能归因于RT诱导的TRAIL表达的增强。最后,与双氯芬酸和放疗联合治疗的小鼠相比,单独用双氯芬酸或RT治疗的LNCaP-COX-2细胞异种移植的肿瘤体积高4倍以上(p结论)这些体内和体外研究结果表明,常规的COX抑制剂双氯芬酸增强RT对表达COX-2的前列腺癌细胞的作用,因此,双氯芬酸可能具有作为放射增敏剂治疗前列腺癌的潜力。

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