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Role of superoxide anion radicals in ethanol metabolism by blood monocyte-derived human macrophages

机译:超氧阴离子自由基在血液单核细胞衍生的人类巨噬细胞乙醇代谢中的作用

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摘要

The effects of a number of additives on the rate of conversion of ethanol (1 mg/ml; 21.7 mM) to acetate by monolayers of blood monocyte- derived human macrophages were investigated. The additives studied were superoxide dismutase (SOD; 1,500 U/ml), catalase (1,500 U/ml), tetrahydrofurane (20 mM), and PMA (20 nM), either singly or in various combinations. SOD, catalase, SOD plus catalase, tetrahydrofurane, and tetrahydrofurane plus SOD inhibited ethanol oxidation by 49.2, 12.1, 52.9, 60.4, and 66.8%, respectively. PMA caused a 4.0-8.3-fold increase in the rate of ethanol metabolism and this increase was completely suppressed in the presence of SOD. The data indicate that a substantial proportion of the ethanol metabolism by both unstimulated and PMA- stimulated blood monocyte-derived macrophages was dependent on the generation of superoxide anion radicals.
机译:研究了多种添加剂对单层血单核细胞衍生人巨噬细胞将乙醇(1 mg / ml; 21.7 mM)转化为乙酸盐的速率的影响。所研究的添加剂分别是超氧化物歧化酶(SOD; 1,500 U / ml),过氧化氢酶(1,500 U / ml),四氢呋喃(20 mM)和PMA(20 nM),可以单独使用或以多种组合使用。 SOD,过氧化氢酶,SOD加过氧化氢酶,四氢呋喃和四氢呋喃加SOD分别抑制乙醇氧化,分别为49.2%,12.1%,52.9%,60.4%和66.8%。 PMA引起乙醇代谢速率增加4.0-8.3倍,在SOD存在下,这种增加被完全抑制。数据表明,未刺激的和PMA刺激的血液单核细胞衍生的巨噬细胞的乙醇代谢的很大一部分取决于超氧阴离子自由基的产生。

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