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首页> 外文期刊>The Journal of biological chemistry >Rhamnetin and Cirsiliol Induce Radiosensitization and Inhibition of Epithelial-Mesenchymal Transition (EMT) by miR-34a-mediated Suppression of Notch-1 Expression in Non-small Cell Lung Cancer Cell Lines
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Rhamnetin and Cirsiliol Induce Radiosensitization and Inhibition of Epithelial-Mesenchymal Transition (EMT) by miR-34a-mediated Suppression of Notch-1 Expression in Non-small Cell Lung Cancer Cell Lines

机译:rhamnetin和Cirsiliol诱导辐射敏感性和抑制上皮 - 间充质转换(EMT)的MIR-34A介导的非小细胞肺癌细胞系中Notch-1表达的抑制作用

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摘要

Radioresistance is a major cause of decreasing the efficiency of radiotherapy for non-small cell lung cancer (NSCLC). To understand the radioresistance mechanisms in NSCLC, we focused on the radiation-induced Notch-1 signaling pathway involved in critical cell fate decisions by modulating cell proliferation. In this study, we investigated the use of Notch-1-regulating flavonoid compounds as novel therapeutic drugs to regulate radiosensitivity in NSCLC cells, NCI-H1299 and NCI-H460, with different levels of radioresistance. Rhamnetin and cirsiliol were selected as candidate Notch-1-regulating radiosensitizers based on the results of assay screening for activity and pharmacological properties. Treatment with rhamnetin or cirsiliol reduced the proliferation of NSCLC cells through the suppression of radiation-induced Notch-1 expression. Indeed, rhamnetin and cirsiliol increased the expression of tumor-suppressive microRNA, miR-34a, in a p53-dependent manner, leading to inhibition of Notch-1 expression. Consequently, reduced Notch-1 expression promoted apoptosis through significant down-regulation of the nuclear factor-κB pathway, resulting in a radiosensitizing effect on NSCLC cells. Irradiation-induced epithelial-mesenchymal transition was also notably attenuated in the presence of rhamnetin and cirsiliol. Moreover, an in vivo xenograft mouse model confirmed the radiosensitizing and epithelial-mesenchymal transition inhibition effects of rhamnetin and cirsiliol we observed in vitro. In these mice, tumor volume was significantly reduced by combinational treatment with irradiation and rhamnetin or cirsiliol compared with irradiation alone. Taken together, our findings provided evidence that rhamnetin and cirsiliol can act as promising radiosensitizers that enhance the radiotherapeutic efficacy by inhibiting radiation-induced Notch-1 signaling associated with radioresistance possibly via miR-34a-mediated pathways.
机译:辐射频率是降低非小细胞肺癌放射疗效(NSCLC)的主要原因。为了了解NSCLC中的辐射敏感机制,我们专注于通过调节细胞增殖的辐射诱导的Notch-1信号通路参与临界细胞命运决策。在这项研究中,我们研究了Notch-1调节的黄酮化合物作为新的治疗药物,以调节NSCLC细胞中NCI-H1299和NCI-H460中的辐射敏感性,具有不同水平的放射群。基于测定筛选的活性和药理学性质的结果,选择rhamnetin和柳硅酸钠作为候选Notch-1调节辐射敏调子剂。用rhamnetin或Cirsiliol治疗通过抑制辐射诱导的Notch-1表达来降低NSClC细胞的增殖。实际上,rhamnetin和Cirsiliol以p53依赖性方式提高肿瘤抑制microRNA,miR-34a的表达,导致抑制Notch-1表达。因此,通过核因子-κB途径的显着下调,降低了Notch-1表达促进了凋亡,导致对NSCLC细胞的放射敏化作用。在耳鼻蛋白和硅硅内的存在下,照射诱导的上皮 - 间充质转变也显着衰减。此外,体内异种移植小鼠模型证实了在体外观察到的rhamnetin和柳醇的放射敏化和上皮 - 间充质转变抑制效应。在这些小鼠中,通过用单独的照射与辐射和耳虫或菱形或丝硅酸可以显着降低肿瘤体积。我们的研究结果一起提供了证据表明rhamnetin和Cirsiliol可以作为有前途的放射腺度,其通过抑制辐射诱导的Notch-1信号通过miR-34a介导的途径来增强放射诱导的Notch-1信号传导。

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