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Selective enhancement of hypoxic cell killing by tempol-regulated suicide gene expression

机译:tempol调控的自杀基因表达选择性增强对缺氧细胞的杀伤作用

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摘要

The presence of hypoxic regions within solid tumors is caused by an imbalance between cell proliferation and angiogenesis. Such regions may facilitate the onset of recurrence after radiation therapy and chemotherapy, as hypoxic cells show resistance to these treatments. We found that tempol, a nitroxide, strongly induces the accumulation of hypoxia-inducible factor (HIF)-1α, particularly under conditions of hypoxia. We, therefore, evaluated whether tempol enhances the gene expression via HIF-1α, potentially leading to various applications for cancer gene therapy targeting hypoxic cells. Consequently, following treatment with tempol under hypoxia, the luciferase (Luc) activity in the cells transfected with the plasmid containing the luc gene with the oxygen-dependent degradation domain and a promoter composed of hypoxia-responsive elements increased up to approximately 10-fold compared to that observed in cells treated identically with the exception of tempol. The plasmid constructed by replacing the luc gene with the fcy::fur fusion gene as a suicide gene, strongly induced the accumulation of the Fcy::Fur fusion protein, only when incubated in the presence of the hypoxic mimic CoCl2 and tempol. The transfected cells were successfully killed with the addition of 5-fluorocytosine to the cell culture according to the fcy::fur fusion gene expression. As similar but lesser enhancement of the Luc activity was also observed in solid tumor tissues in nude mice, this strategy may be applied for hypoxic cancer eradication.
机译:实体瘤内缺氧区域的存在是由于细胞增殖和血管生成之间的不平衡引起的。由于低氧细胞显示出对这些治疗的抗性,因此这些区域可促进放射疗法和化学疗法后复发的发生。我们发现,tempol(一种氮氧化物)强烈诱导缺氧诱导因子(HIF)-1α的积累,尤其是在缺氧条件下。因此,我们评估了tempol是否通过HIF-1α增强了基因表达,从而潜在地导致了针对缺氧细胞的癌症基因治疗的各种应用。因此,在缺氧条件下用tempol处理后,转染了含有含氧依赖性降解域的luc基因的质粒和由缺氧反应性元件组成的启动子的质粒转染的细胞中的萤光素酶(Luc)活性增加了约10倍。与在用tempol相同处理的细胞中观察到的相同。仅当在低氧模拟物CoCl2和tempol存在下孵育时,通过用cyc :: fur融合基因作为自杀基因替换luc基因而构建的质粒强烈诱导Fcγ:: Fur融合蛋白的积累。根据fcy :: fur融合基因表达,通过向细胞培养物中添加5-氟胞嘧啶可以成功杀死转染的细胞。由于在裸鼠的实体瘤组织中还观察到了类似但较少的Luc活性增强,因此该策略可用于根除低氧癌症。

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