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Silencing of Bmi-1 gene by RNA interference enhances sensitivity to doxorubicin in breast cancer cells

机译:RNA干扰沉默Bmi-1基因可增强对乳腺癌细胞对阿霉素的敏感性

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摘要

The oncogene Bmi-1 is highly up-regulated. in breast carcinoma and is found to be efficient in preventing apoptosis of the cancer cells. Doxorubicin is an important chemotherapeutic agent against breast carcinoma. However, the effective therapeutic response to doxorubicin is often associated with severe toxicity. The present study is targetted at developing a strategy to increase doxorubicin sensitivity to lower doses without compromising its efficacy. A stable cell line with a persistent silencing of Bmi-1 was established. MTT assay was performed to evaluate 50% inhibitory concentration (IC50) values of doxorubicin. Apoptosis was detected by FCM and the expression of related genes [phosphor-Akt (pAkt), totle-Akt (tAkt), Bcl-2 and Bax] was studied by Western blot. In vivo, the sensitivity of the tumor tissues against doxorubicin was evaluated by transplanted MCF-7 nude mice model and the apoptosis of tissue cells was detected by TUNEL assay. The expression of pAkt and Bcl-2 was down-regulated, whereas Bax was up-regulated in Bmi-1 silencing cells. The results obtained indicated that silencing of Bmi-1 can render MCF-7 cells more sensitive to doxorubicin which induced a significantly higher percentage of apoptosis cells in vitro and in vivo. All together these results clearly demonstrate that Bmi-1 siliencing combined treatment of doxorubicin might be a new strategy for biological treatment on breast cancer.
机译:癌基因Bmi-1高度上调。在乳腺癌中被发现有效,并且在预防癌细胞凋亡方面是有效的。阿霉素是抗乳腺癌的重要化学治疗剂。然而,对阿霉素的有效治疗反应通常与严重毒性有关。本研究的目标是开发一种在不影响其功效的情况下提高阿霉素敏感性至较低剂量的策略。建立了具有持续沉默的Bmi-1的稳定细胞系。进行MTT测定以评估阿霉素的50%抑制浓度(IC50)值。通过FCM检测细胞凋亡,并通过Western印迹研究相关基因[磷酸-Akt(pAkt),totle-Akt(tAkt),Bcl-2和Bax]的表达。在体内,通过移植的MCF-7裸鼠模型评估肿瘤组织对阿霉素的敏感性,并通过TUNEL法检测组织细胞的凋亡。在Bmi-1沉默细胞中,pAkt和Bcl-2的表达下调,而Bax的表达上调。获得的结果表明,沉默Bmi-1可使MCF-7细胞对阿霉素更加敏感,从而在体内外诱导更高百分比的凋亡细胞。所有这些结果清楚地表明,Bmi-1沉默阿霉素的联合治疗可能是乳腺癌生物学治疗的新策略。

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