miR-216b-5p促进曲妥珠单抗耐药SK-BR-3细胞的晚期凋亡/坏死。

İştar Burcu Dolapçi, Senem Noyan, Ayşegül Yücel Polat, Hakan Gürdal, Bala Gür Dedeoğlu
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引用次数: 0

摘要

乳腺癌是女性中最常见的癌症。人表皮生长因子受体2 (HER2)过表达亚型与预后不良相关,具有侵袭性表型,是最常见的亚型之一。曲妥珠单抗被广泛用作HER2阳性乳腺癌的治疗方法,然而,治疗后经常发生对药物的耐药性。MicroRNAs (miRNAs)是一种长19-23个核苷酸的小rna,在转录后水平调控基因表达,研究表明,在药敏组和耐药组之间存在差异表达的miRNAs,表明它们可能在药物有效性中起关键作用。本研究旨在发现miR-216b-5p在曲妥珠单抗耐药中的作用。在增加药物浓度连续治疗6个月后,SK-BR-3细胞对曲妥珠单抗产生耐药性。为了研究miR-216b-5p对耐药状态下癌细胞行为的影响,我们使用xCELLigence实时细胞分析仪分析这些耐药细胞的增殖、运动和侵袭能力。为了进一步了解miR-216b-5p调控抗性SK-BR-3细胞的分子机制,我们进行了微阵列分析。由于途径富集分析指出了细胞死亡的相关途径,因此也进行了凋亡分析。与敏感细胞相比,转染miR-216b-5p的耐药细胞的增殖、活力和侵袭能力减弱。我们通过微阵列和途径富集分析确定了坏死下垂信号通路。STAT1、IRF9和PKR被证实是该通路的重要元件,它们也是miR-216b-5p的假定靶点。我们的细胞凋亡分析显示,miR-216b-5p过表达后,大量曲妥珠单抗耐药的SK-BR-3细胞进入晚期凋亡/坏死阶段,可以得出结论,在乳腺癌中,miR-216b-5p的再表达通过坏死坏死使曲妥珠单抗耐药增敏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

miR-216b-5p promotes late apoptosis/necroptosis in trastuzumab-resistant SK-BR-3 cells.

miR-216b-5p promotes late apoptosis/necroptosis in trastuzumab-resistant SK-BR-3 cells.

miR-216b-5p promotes late apoptosis/necroptosis in trastuzumab-resistant SK-BR-3 cells.

miR-216b-5p promotes late apoptosis/necroptosis in trastuzumab-resistant SK-BR-3 cells.

Breast cancer is the most common cancer in women. The human epidermal growth factor receptor 2 (HER2) overexpressing subtype is related to poor prognosis with an aggressive phenotype and is reported as one of the most commonly seen subtypes. Trastuzumab is prevalently used as a treatment method for HER2+ breast cancer however, resistance to the drug frequently occurs following the treatment. MicroRNAs (miRNAs) are 19-23 nucleotide long small RNAs, which regulate gene expression at post-transcriptional level and studies show that there are differentially expressed miRNAs between drug sensitive and resistant groups, indicating that they might have some key roles in drug effectiveness. In this study, the aim is to find out the role of miR-216b-5p in trastuzumab resistance. SK-BR-3 cells developed resistance to trastuzumab after continuous treatment with increasing concentrations of the drug for 6 months. To investigate the effect of miR-216b-5p on cancer cell behavior in resistance state, proliferation, motility, and invasion capacities of these resistant cells were analyzed by xCELLigence real-time cell analyzer. To further understand the molecular mechanisms underlying the regulation of resistant SK-BR-3 cells by miR-216b-5p, microarray analysis was performed. Apoptosis analysis was also performed since the pathway enrichment analysis pointed out cell death related pathways. The proliferation, motility, and invasion capacities of the miR-216b-5p transfected resistant cells were diminished compared to sensitive cells. We identified the necroptosis signaling pathway as the result of microarray and pathway enrichment analyses. STAT1, IRF9, and PKR were validated as the significant elements of the pathway, which are also the putative targets of miR-216b-5p. Our apoptosis analysis showed that a significant amount of trastuzumab resistant SK-BR-3 cells entered to late apoptosis/necrosis stage upon miR-216b-5p overexpression, it could be concluded that reexpression of miR-216b-5p sensitizes trastuzumab resistance through necroptosis in breast cancer.

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