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Bimodal effect of hypoxia in cancer: role of hypoxia inducible factor in apoptosis.

机译:缺氧在癌症中的双峰效应:缺氧诱导因子在细胞凋亡中的作用。

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The effects of the separate and combined application of hypoxia and antisense oligonucleotides (ASO) against hypoxia inducible factor 1alpha (HIF1A) on cancer cells were examined. Experiments were carried out on human ovarian carcinoma cells in four series: (1) control [Normoxia (5% CO2 in air), no treatment], (2) hypoxia (1% O2, 5% CO2, and 94% N2 for 48 h), (3) treatment with ASO targeted to HIF1A (48 h), and (4) combined action of hypoxia and ASO. After treatment, the following processes and factors were monitored: apoptosis, cellular metabolism and viability, expression of genes encoding HIF1A, von Hippel-Lindau tumor suppressor protein (VHL), and genes responsible for cell death induction and antiapoptotic defense (P53, BCL2, BAX, and caspases 9 and 3). Expression of caspase 9 and HIF1A protein was confirmed by Western blotting. Liposomes were used as a delivery system of HIF1A ASO. It was found that hypoxia alone significantly disturbed cellular metabolism, reducing the level of respiration by 50% when compared with control. Hypoxia induced apoptosis by upregulating the P53-, BAX-, and caspase-dependent cell death pathways, while activating cellular antiapoptotic defense by the overexpression of BCL2 protein. Both opposing effects were dependent on the overexpression of hypoxia inducible factor. We conclude that hypoxia induces a bimodal effect, simultaneously promoting cell death and activating cellular resistance. The downregulation of HIF1A promoted cell death induction and prevented activation of cellular defense by hypoxia. This suggests that HIF1A is a potential candidate for anticancer therapeutic targeting.
机译:检查了缺氧和反义寡核苷酸(ASO)分别和联合应用对缺氧诱导因子1alpha(HIF1A)的影响。对人卵巢癌细胞进行了四个系列的实验:(1)对照[正常氧(空气中5%的CO2),不进行处理],(2)缺氧(1%O2、5%CO2和94%N2的48 h),(3)靶向HIF1A的ASO治疗(48 h),以及(4)缺氧和ASO的联合作用。治疗后,监测以下过程和因素:凋亡,细胞代谢和生存力,编码HIF1A,von Hippel-Lindau肿瘤抑制蛋白(VHL)的基因的表达以及负责细胞死亡诱导和抗凋亡防御的基因(P53,BCL2, BAX以及caspases 9和3)。通过Western印迹证实半胱天冬酶9和HIF1A蛋白的表达。脂质体被用作HIF1A ASO的递送系统。发现仅缺氧会显着干扰细胞代谢,与对照组相比,呼吸水平降低了50%。缺氧通过上调P53,BAX和caspase依赖的细胞死亡途径来诱导凋亡,同时通过BCL2蛋白的过度表达激活细胞抗凋亡防御。两种相反的作用都取决于缺氧诱导因子的过表达。我们得出的结论是,缺氧会诱导双峰效应,同时促进细胞死亡和激活细胞抗性。 HIF1A的下调促进了细胞死亡的诱导,并阻止了缺氧引起的细胞防御激活。这表明HIF1A是抗癌治疗靶向的潜在候选者。

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