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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >BMI1 silencing enhances docetaxel activity and impairs antioxidant response in prostate cancer.
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BMI1 silencing enhances docetaxel activity and impairs antioxidant response in prostate cancer.

机译:BMI1沉默增强多西他赛活性并削弱前列腺癌的抗氧化反应。

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The BMI1 oncogene promotes prostate cancer (PC) progression. High B-cell-specific Moloney murine leukemia virus integration site 1 (BMI1) expression predicts poor prognosis in PC patients. Recent evidence suggests that BMI1 may also play a role in docetaxel chemoresistance. However, mechanisms and clinical significance of BMI1-related chemoresistance have not been investigated. For this purpose, BMI1 was silenced in 2 PC cell lines (LNCaP and DU 145). Cell proliferation and apoptosis after docetaxel treatment were measured. Guanine oxidation was assessed by in-cell western. Global gene expression analysis was performed on BMI1 silenced cells. Oncomine database was used to compare in vitro data with gene expression in PC samples. BMI1 silencing had no effect on cell proliferation but significantly enhanced docetaxel-induced antitumor activity. Gene expression analysis demonstrated that BMI1 silencing downregulates a set of antioxidant genes. Docetaxel treatment increased guanine oxidation, whereas the antioxidant N-acetyl cysteine rescued docetaxel-induced cell death. Examination of clinical datasets revealed a positive correlation of BMI1 and antioxidant gene expression. BMI1-controlled antioxidant genes were predictive of poor prognosis in PC patients. In conclusion, BMI1 enhances antioxidant response, thereby allowing PC survival after docetaxel-based chemotherapy. BMI1-controlled antioxidant genes are overexpressed in aggressive PC and should be tested as predictors of chemotherapy failure.
机译:BMI1癌基因促进前列腺癌(PC)的进展。高B细胞特异性莫洛尼氏鼠白血病病毒整合位点1(BMI1)表达预测PC患者的预后不良。最近的证据表明,BMI1也可能在多西他赛化学耐药中起作用。但是,尚未研究与BMI1相关的化学抗性的机制和临床意义。为此,在2个PC细胞系(LNCaP和DU 145)中使BMI1沉默。测定多西他赛处理后的细胞增殖和凋亡。鸟嘌呤氧化通过细胞内Western评估。在BMI1沉默的细胞上进行了全局基因表达分析。使用Oncomine数据库将体外数据与PC样品中的基因表达进行比较。 BMI1沉默对细胞增殖没有影响,但显着增强了多西他赛诱导的抗肿瘤活性。基因表达分析表明,BMI1沉默下调了一组抗氧化剂基因。多西紫杉醇治疗增加鸟嘌呤氧化,而抗氧化剂N-乙酰基半胱氨酸挽救了多西紫杉醇诱导的细胞死亡。临床数据集检查显示BMI1与抗氧化剂基因表达呈正相关。 BMI1控制的抗氧化剂基因可预测PC患者的不良预后。总之,BMI1增强抗氧化反应,从而使多西他赛为基础的化疗后PC存活。 BMI1控制的抗氧化剂基因在侵略性PC中过表达,应该作为化疗失败的预测指标进行测试。

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