6-氨基烟碱酰胺对A549细胞戊糖循环的抑制:对有氧和缺氧辐射反应和辐射增敏作用的影响。

M E Varnes
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引用次数: 0

摘要

葡萄糖通过戊糖循环代谢是NADPH的主要来源,NADPH是一种重要的细胞还原物质。有氧和缺氧照射均刺激A549人肺癌细胞戊糖循环活性,表明NADPH在照射过程中被利用,既可以作为直接的氢供体,也可以作为辐射损伤酶修复的辅助因子。为了评估戊糖循环在辐射反应中的作用,我们用6-氨基烟碱酰胺(6-AN)处理A549细胞,该细胞在某些细胞系中阻断了该途径的氧化分支。我们发现6-AN是一种非常有效的戊糖循环活性抑制剂,这可以通过A549细胞中6-磷酸葡萄糖酸盐的积累以及硝基呋喃酮或过氧化物在6-AN处理后无法刺激14c -1标记的葡萄糖释放14CO2来证明。6-AN的作用具有时间和浓度依赖性;它引起糖酵解的部分抑制,但对呼吸速率或细胞内谷胱甘肽水平没有影响。在两种情况下考察6-AN对辐射反应的影响:1)0.3 mM药物治疗5小时后,戊糖循环活性被抑制50%;2)治疗15小时后,戊糖循环活性被完全抑制。两种处理都不影响有氧辐射反应,但两种处理都在相似程度上增加了缺氧敏感性,存活分数为0.05时,氧增强比从3.0降至2.0。6-AN对A549细胞处理后,米索硝唑对缺氧细胞的放射增敏作用增强,但联用效果不大于加用效果。(摘要删节250字)
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Inhibition of pentose cycle of A549 cells by 6-aminonicotinamide: consequences for aerobic and hypoxic radiation response and for radiosensitizer action.

Metabolism of glucose via the pentose cycle is a principal source of NADPH, an important cellular reducing species. Both aerobic and hypoxic irradiation stimulate the pentose cycle activity of A549 human lung carcinoma cells, which indicates that NADPH is utilized during irradiation, either as a direct hydrogen donor or as a cofactor for enzymatic repair of radiation damage. To evaluate the role of the pentose cycle in radiation response, we treated A549 cells with 6-aminonicotinamide (6-AN), which blocks the oxidative limb of this pathway in some cell lines. We found 6-AN to be a very effective inhibitor of pentose cycle activity, as indicated both by accumulation of 6-phosphogluconate in A549 cells and by the inability of nitrofurazone or peroxide to stimulate release of 14CO2 from 14C-1-labeled glucose after 6-AN treatment. Effects of 6-AN were time and concentration dependent; it caused partial inhibition of glycolysis but had no effect on respiratory rate or on intracellular glutathione levels. Effects of 6-AN on radiation response were examined under two conditions: 1) after treatment with 0.3 mM drug for 5 hours, which inhibited pentose cycle activity by 50%, and 2) after treatment for 15 hours, which completely inhibited pentose cycle activity. Neither treatment affected aerobic radiation response, but both increased hypoxic sensitivity to a similar extent, with the oxygen enhancement ratio reduced from 3.0 to 2.0 at a 0.05 surviving fraction. Treatment of A549 cells with 6-AN caused an increase in hypoxic cell radiosensitization by misonidazole, but effects of the combined agents were not more than additive.(ABSTRACT TRUNCATED AT 250 WORDS)

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