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NF KAPPA B MEDIATED CHEMORESISTANCE IN HUMAN LUNG CANCER

NF KAPPA B MEDIATED CHEMORESISTANCE IN HUMAN LUNG CANCER
NF KAPPA B 介导的人类肺癌化疗耐药
批准号:
6710074
负责人:
David R Jones
金额:
$13.32万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-08-05 至 2005-07-31

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中文摘要
翻译
肺癌是男性和女性癌症死亡的最常见原因。在所有新诊断的肺癌中,80%是非小细胞肺癌(NSCLC),超过75%为晚期肺癌。由于这个原因以及完全切除后远处复发的倾向,大多数患者单独化疗或联合其他方式治疗。不幸的是,尽管采用第二代或第三代化疗药物治疗,大多数非小细胞肺癌仍具有化疗耐药性。肿瘤化疗耐药归因于细胞克服程序性细胞死亡(凋亡)的能力。最近,已经确定化疗上调NF-kappaB转录因子,这与细胞对化疗诱导的细胞凋亡的耐药性有关。在此基础上,研究人员进行了实验,以确定在添加吉西他滨和顺铂(两种通常用于治疗非小细胞肺癌的遗传毒性药物)后,NF-kappaB是否在非小细胞肺癌细胞系中提供类似的细胞存活信号。初步数据表明,这些化疗药物可诱导NF-kappaB转录活性。更重要的是,NF- kappaB的缺失使NSCLC细胞系对化疗诱导的细胞凋亡敏感。虽然化疗诱导的细胞死亡涉及某些细胞类型的死亡受体通路,但化疗诱导的非小细胞肺癌细胞凋亡不涉及Fas-或caspase-8依赖性死亡受体通路。相反,NF- kappaB是克服化疗后线粒体介导的细胞凋亡所必需的。此外,神经酰胺最近被证明可以抑制抗凋亡的P13K/Akt通路,并激活NFkappaB。由于NF- kappaB活性的丧失使NSCLC细胞对化疗诱导的凋亡敏感,本研究的主要目的是研究化疗后细胞凋亡和化疗耐药的细胞信号传导机制。为了实现这一目标,我们将使用(由P.I.建立的)缺乏NF-kappaB活性的细胞系,并将其与对照进行比较。这些细胞将暴露于化疗药物中,并在体外检测凋亡和抗凋亡信号通路。该提案的具体目的是:1)确定化疗是否通过线粒体依赖机制杀死NSCLC细胞,2)确定细胞的氧化还原状态是否负责调节nf - kappab依赖性细胞在化疗反应中的存活,以及3)确定神经酰胺作为化疗后促和抗凋亡介质的作用。这些研究将为化疗如何激活凋亡通路以及肿瘤通过NF-kappaB上调而产生化疗耐药的机制提供重要的见解。本研究的最终目的是为启动旨在治疗晚期肺癌患者的新型治疗策略提供必要的背景。
英文摘要
Lung cancer is the most common cause of cancer death in both men and women. Eighty percent of all newly diagnosed lung cancers are non-small cell lung cancers (NSCLC), and over 75 percent present with advanced stage disease. For this reason as well as the predilection for distant recurrence after complete resection, most patients are treated with chemotherapy alone or in combination with other modalities. Unfortunately, the majority of NSCLC are chemoresistant despite treatment regimens with second or third generation of chemotherapeutic agents. Tumor chemoresistance has been attributed to the ability of cells to overcome programmed cell death (apoptosis). Recently, it has been established that chemotherapy upregulates the NF-kappaB transcription factor and this is associated with cellular resistance to chemotherapy-induced apoptosis. With this understanding, experiments were performed to determine whether NF-kappaB provided a similar cell survival signal in NSCLC cell lines following the addition of gemcitabine and cisplatin, two genotoxic agents commonly used to treat NSCLC. Preliminary data demonstrates that these chemotherapeutic agent induce NF-kappaB transcriptional activity. More importantly, the loss of NF- kappaB sensitizes NSCLC cell lines to chemotherapy-induced apoptosis. Although cell death induced by chemotherapy involves death receptor pathways in certain cell types, chemotherapy- induced apoptosis in NSCLC cells did not involve either Fas- or caspase-8-dependent death receptor pathways. In contrast, NF- kappaB was required to overcome mitochondrial-mediated apoptosis following chemotherapy addition. In addition, ceramide has recently been shown to inhibit the anti-apoptotic P13K/Akt pathway as well as activate NFkappaB. Since the loss of NF- kappaB activity sensitizes NSCLC cells to chemotherapy-induced apoptosis, the major goal of this proposal is to examine the cell signaling mechanisms governing apoptosis and chemoresistance following the addition of chemotherapy. To achieve this objective, we will use established (by the P.I.) cell lines which lack NF-kappaB activity and compare them to controls. These cells will be exposed to chemotherapeutic agents and apoptotic and anti-apoptotic signaling pathways will be examined in vitro. The specific aims of the proposal are to: 1) establish whether chemotherapy kills NSCLC cells through mitochondrial-dependent mechanisms, 2) determine whether the redox status of the cell is responsible for modulating NF-kappaB-dependent cell survival in response to chemotherapy, and 3) determine the role of ceramide as both a pro- and anti-apoptotic mediator following chemotherapy. These studies will provide important insight into how chemotherapy activates apoptotic pathways, as well as mechanisms by which tumors become chemoresistant through upregulation of NF-kappaB. The ultimate goal of this study is to provide the necessary background for the initiation of novel treatment strategies designed to treat patients with advanced lung cancer.
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