首页> 美国卫生研究院文献>Aging (Albany NY) >Transcriptional evidence for the Reverse Warburg Effect in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress inflammation Alzheimers disease and Neuron-Glia Metabolic Coupling
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Transcriptional evidence for the Reverse Warburg Effect in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress inflammation Alzheimers disease and Neuron-Glia Metabolic Coupling

机译:人类逆华伯格效应的转录证据 乳腺癌肿瘤基质和转移:与氧化应激相似 炎症阿尔茨海默氏病和神经元胶质代谢耦合

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摘要

Caveolin-1 (-/-) null stromal cells are a novel genetic model for cancer-associated fibroblasts and myofibroblasts. Here, we used an unbiased informatics analysis of transcriptional gene profiling to show that Cav-1 (-/-) bone-marrow derived stromal cells bear a striking resemblance to the activated tumor stroma of human breast cancers. More specifically, the transcriptional profiles of Cav-1 (-/-) stromal cells were most closely related to the primary tumor stroma of breast cancer patients that had undergone lymph-node (LN) metastasis. This is consistent with previous morphological data demonstrating that a loss of stromal Cav-1 protein (by immuno-histochemical staining in the fibroblast compartment) is significantly associated with increased LN-metastasis. We also provide evidence that the tumor stroma of human breast cancers shows a transcriptional shift towards oxidative stress, DNA damage/repair, inflammation, hypoxia, and aerobic glycolysis, consistent with the "Reverse Warburg Effect". Finally, the tumor stroma of "metastasis-prone" breast cancer patients was most closely related to the transcriptional profiles derived from the brains of patients with Alzheimer's disease. This suggests that certain fundamental biological processes are common to both an activated tumor stroma and neuro-degenerative stress. These processes may include oxidative stress, NO over-production (peroxynitrite formation), inflammation, hypoxia, and mitochondrial dysfunction, which are thought to occur in Alzheimer's disease pathology. Thus, a loss of Cav-1 expression in cancer-associated myofibroblasts may be a protein biomarker for oxidative stress, aerobic glycolysis, and inflammation, driving the "Reverse Warburg Effect" in the tumor micro-environment and cancer cell metastasis.
机译:Caveolin-1(-/-)空基质细胞是癌症相关的成纤维细胞和成肌纤维细胞的新型遗传模型。在这里,我们使用了转录基因谱分析的无偏信息学分析,以显示Cav-1(-/-)骨髓来源的基质细胞与人类乳腺癌的活化肿瘤基质有着惊人的相似之处。更具体地说,Cav-1(-/-)基质细胞的转录谱与经历了淋巴结转移的乳腺癌患者的原发肿瘤基质最为相关。这与先前的形态学数据一致,后者表明基质Cav-1蛋白的丢失(通过成纤维细胞区室的免疫组织化学染色)与LN转移增加显着相关。我们还提供证据表明,人类乳腺癌的肿瘤基质显示出向氧化应激,DNA损伤/修复,炎症,缺氧和有氧糖酵解的转录转变,这与“逆向Warburg效应”一致。最后,“易转移”乳腺的肿瘤基质 癌症患者与转录谱最密切相关 源自阿尔茨海默氏病患者的大脑。这表明 某些基本的生物过程对于被激活的生物是共有的 肿瘤基质和神经退行性应激。这些过程可能包括氧化 压力,NO过量产生(过氧亚硝酸盐形成),炎症,缺氧和 线粒体功能障碍,据认为发生在阿尔茨海默氏病中 病理。因此,癌症相关的成肌纤维细胞中Cav-1表达的丧失 可能是氧化应激,有氧糖酵解和 炎症,驱动“逆转 Warburg效应”在肿瘤微环境中的作用 和癌细胞转移。

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