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Time- and cell-resolved dynamics of redox-sensitive Nrf2 HIF and NF-κB activities in 3D spheroids enriched for cancer stem cells

机译:在富含癌症干细胞的3D球体中氧化还原敏感Nrf2HIF和NF-κB活性的时间和细胞分辨动力学

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摘要

Cancer cells have an altered redox status, with changes in intracellular signaling pathways. The knowledge of how such processes are regulated in 3D spheroids, being well-established tumor models, is limited. To approach this question we stably transfected HCT116 cells with a pTRAF reporter that enabled time- and cell-resolved activity monitoring of three redox-regulated transcription factors Nrf2, HIF and NF-κB in spheroids enriched for cancer stem cells. At the first day of spheroid formation, these transcription factors were activated and thereafter became repressed. After about a week, both HIF and Nrf2 were reactivated within the spheroid cores. Further amplifying HIF activation in spheroids by treatment with DMOG resulted in a dominant quiescent stem-cell-like phenotype, with high resistance to stress-inducing treatments. Auranofin, triggering oxidative stress and Nrf2 activation, had opposite effects with increased differentiation and proliferation. These novel high-resolution insights into spatiotemporal activation patterns demonstrate a striking coordination of redox regulated transcription factors within spheroids not occurring in conventional cell culture models.
机译:癌细胞具有改变的氧化还原状态,并具有细胞内信号传导途径的变化。作为成熟的肿瘤模型,如何在3D球体中调节此类过程的知识是有限的。为了解决这个问题,我们用pTRAF报道基因稳定转染了HCT116细胞,该报道基因能够监测时间和细胞分辨的活性,以监测富含癌症干细胞的球体中三种氧化还原调节的转录因子Nrf2,HIF和NF-κB。在球体形成的第一天,这些转录因子被激活,然后被抑制。大约一周后,HIF和Nrf2均在球状核内重新激活。通过用DMOG处理进一步放大球体中的HIF激活,导致显着的静态干细胞样表型,对应激诱导治疗具有较高的抵抗力。触发氧化应激和Nrf2活化的金诺芬具有相反的作用,分化和增殖增加。这些新颖的高分辨率时空激活模式的见解证明了在传统细胞培养模型中不存在的球体中氧化还原调节的转录因子具有惊人的协调性。

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