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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Adenosine rescues glioma cells from cytokine-induced death by interfering with the signaling network involved in nitric oxide production.
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Adenosine rescues glioma cells from cytokine-induced death by interfering with the signaling network involved in nitric oxide production.

机译:腺苷通过干扰一氧化氮生产中涉及的信号网络,将胶质瘤细胞从细胞因子诱导的死亡中拯救出来。

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We investigated the influence of adenosine on inducible nitric oxide (NO) synthase (iNOS)-dependent NO synthesis and viability of cytokine-treated C6 rat glioma cells. Adenosine significantly inhibited interferon-gamma (IFN-gamma)+interleukin-1beta (IL-1beta)-induced synthesis of iNOS mRNA/protein and subsequent production of NO in C6 cells. The uptake of adenosine into glioma cells was not required for the suppression of iNOS induction, as confirmed by the inability of the adenosine transport blocker nitrobenzylthyoinosine to block the observed effect. Adenosine also blocked the IFN-gamma+IL-1beta-triggered expression of mRNA for the proinflammatory cytokine TNF-alpha, while it significantly enhanced the accumulation of cyclooxygenase-2 (COX-2) mRNA in glioma cells. However, blockade of TNF-alpha action and COX-2 activity with anti-TNF-alpha antibodies and indomethacin, respectively, revealed that modulation of TNF-alpha and COX-2 was not involved in adenosine-mediated iNOS suppression. Adenosine significantly inhibited cytokine-induced activation of mitogen-activated protein kinase (MAPK) family members p38 MAPK, p42/44 MAPK and c-Jun N-terminal kinase (JNK) in C6 cells. The levels of transcription factors IRF-1 and c-Fos, as well as the phosphorylation of c-Jun were also reduced in adenosine-treated C6 cells, while the activation of NF-kappaB was enhanced via increased phosphorylation of its inhibitory unit IkappaB. Importantly, adenosine-mediated suppression of NO release rescued glioma cells from NO-dependent cytokine cytotoxicity. These data suggest a possible role for adenosine-mediated inhibition of glial NO synthesis in regulation of the inflammatory CNS damage and brain cancer progression.
机译:我们调查了腺苷对诱导型一氧化氮(NO)合酶(iNOS)依赖性NO合成以及细胞因子治疗的C6大鼠神经胶质瘤细胞活力的影响。腺苷显着抑制干扰素-γ(IFN-γ)+白介素-1β(IL-1β)诱导的iNOS mRNA /蛋白质合成,并随后在C6细胞中产生NO。腺苷转运阻滞剂硝基苄基硫代肌氨酸不能阻断观察到的作用,因此抑制iNOS诱导并不需要向神经胶质瘤细胞摄取腺苷。腺苷还阻断了IFN-γ+IL-1β触发的促炎细胞因子TNF-α的mRNA表达,同时腺苷显着增强了胶质瘤细胞中环氧合酶2(COX-2)mRNA的积累。但是,分别用抗TNF-α抗体和消炎痛阻断TNF-α的作用和COX-2的活性表明,调节TNF-α和COX-2并不参与腺苷介导的iNOS抑制。腺苷显着抑制细胞因子诱导的C6细胞中有丝分裂原激活的蛋白激酶(MAPK)家族成员p38 MAPK,p42 / 44 MAPK和c-Jun N端激酶(JNK)的激活。在腺苷处理的C6细胞中,转录因子IRF-1和c-Fos的水平以及c-Jun的磷酸化也降低了,而NF-kappaB的激活通过其抑制单位IkappaB的磷酸化增强了。重要的是,腺苷介导的NO释放抑制可从NO依赖性细胞因子的细胞毒性中拯救神经胶质瘤细胞。这些数据表明腺苷介导的神经胶质NO合成的抑制可能在调节炎症性CNS损伤和脑癌进展中发挥作用。

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