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首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >GAS5 knockdown reduces the chemo-sensitivity of non-small cell lung cancer (NSCLC) cell to cisplatin (DDP) through regulating miR-21/PTEN axis
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GAS5 knockdown reduces the chemo-sensitivity of non-small cell lung cancer (NSCLC) cell to cisplatin (DDP) through regulating miR-21/PTEN axis

机译:通过调节miR-21 / Pten轴,Gas5敲低降低了非小细胞肺癌(NSCLC)细胞(DDP)的非小细胞肺癌(NSCLC)细胞的化学敏感性

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Non-small cell lung cancer (NSCLC), known as the most common type of lung cancer, has caused great economic losses and brought the patients with NSCLC great suffering. The NSCLC chemo-resistance to cisplatin (DDP) -based chemotherapy remains a huge challenge. The lncRNA growth arrest-specific 5 (GAS5) has been reported to be related with cancers including NSCLC. Phosphatase and tensin homolog (PTEN) has been frequently reported to affect chemo-sensitivity of cancers, and usually acts as a tumor suppressor. In this paper, we demonstrated a significant low GAS5expression in NSCLC patients was correlated with poorer clinicopathologic features; GAS5 knockdown by si-GAS5 transfection promoted NSCLC cell viability. Additionally, GAS5 was involved in the regulation of chemo-sensitivity of the NSCLC cell to DDP through regulation of PTEN pathway. LncRNAs commonly exerts their functions through the interaction with miRNAs. According to previous studies, miR-21 acts as an oncogenic miRNA through targeting PTEN in many cancers. In the present study, GAS5 could compete with PTEN for miR-21 binding. We further verified that the interaction between GAS5 and miR-21 was required in the regulation of NSCLC chemo-sensitivity to DDP through PTEN pathway. Taken together, the data of the present study demonstrated a novel mechanism by which GAS5/miR-21/PTEN affects the sensitivity of NSCLC to DDPbased therapy. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:非小细胞肺癌(NSCLC),被称为最常见的肺癌类型,引起了巨大的经济损失,并将患者带来了NSCLC的痛苦。基于顺铂(DDP)的化学疗法的NSCLC化学抗性仍然是一个巨大的挑战。据报道,LNCRNA生长逮捕特异性5(GAS5)与包括NSCLC的癌症有关。经常据报道磷酸酶和苔藓素同源物(PTEN)影响癌症的化学敏感性,并且通常用作肿瘤抑制剂。在本文中,我们在NSCLC患者中表现出显着的低气体体积与较差的临床病理特征相关; Gas5通过Si-Gas5转染损伤促进NSCLC细胞活力。另外,通过调节Pten途径,Gas5参与了NSCLC细胞的化学敏感性至DDP。 LNCRNA通常通过与miRNA的互动来施加它们的功能。根据以前的研究,MiR-21通过在许多癌症中靶向PTEN作为致癌物质。在本研究中,Gas5可以与PTEN竞争MIR-21结合。我们进一步验证了通过PTEN通路调节NSCLC化学敏感性对DDP的NSCLC化学敏感性来进行气体5和miR-21之间的相互作用。在一起,本研究的数据证明了一种新的机制,气体5 / miR-21 / PTEN影响NSCLC对DDPBASED治疗的敏感性。 (c)2017年Elsevier Masson SAS。版权所有。

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