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铅会抑制暴露于巨噬细胞活化因子的巨噬细胞的氧化代谢。

Lead inhibits oxidative metabolism of macrophages exposed to macrophage-activating factor.

作者信息

Buchmüller-Rouiller Y, Ransijn A, Mauël J

机构信息

Institute of Biochemistry, University of Lausanne, Epalinges, Switzerland.

出版信息

Biochem J. 1989 Jun 1;260(2):325-32. doi: 10.1042/bj2600325.

Abstract

The present experiments were designed to evaluate the effect of lead on the capacity of macrophages to respond to activating signals by increased respiratory-burst activity. When mouse peritoneal macrophages were exposed for 24 h to macrophage-activating factor (MAF) and/or bacterial lipopolysaccharide in the presence of lead acetate, a marked inhibition of their oxidative metabolism was observed. The hexosemonophosphate-shunt (HMPS) activity and the release of oxygen derivatives upon triggering by phorbol myristate acetate (PMA) were impaired. Treatment with the metal for 1 h led, however, to stimulation rather than inhibition of the PMA-triggered superoxide production, suggesting that the metal interfered with neither the triggering steps nor the activity of the NADPH oxidase. Moreover, the lead-induced inhibition of macrophage oxidative metabolism did not result from blockade of enzymes of the HMPS pathway. Glucose-6-phosphate dehydrogenase in macrophage extracts, as well as CO2 production from glucose, remained unaffected by the presence of lead, and extracts of lead-treated macrophages were as active as extracts from control cells in those two assays. Lead appeared to interfere with an early event in the MAF-induced activation process. In addition, lead decreased the uptake of 2-deoxyglucose by macrophages, suggesting that the metal might inhibit trans-membrane glucose-transport systems, a phenomenon that might explain in part the metabolic inhibition observed in lead-treated cells.

摘要

本实验旨在评估铅对巨噬细胞通过增强呼吸爆发活性来响应激活信号的能力的影响。当小鼠腹腔巨噬细胞在醋酸铅存在的情况下暴露于巨噬细胞激活因子(MAF)和/或细菌脂多糖24小时时,观察到它们的氧化代谢受到显著抑制。磷酸己糖旁路(HMPS)活性以及佛波酯(PMA)触发后的氧衍生物释放均受损。然而,用该金属处理1小时导致PMA触发的超氧化物产生受到刺激而非抑制,这表明该金属既不干扰触发步骤,也不干扰NADPH氧化酶的活性。此外,铅诱导的巨噬细胞氧化代谢抑制并非源于HMPS途径酶的阻断。巨噬细胞提取物中的葡萄糖-6-磷酸脱氢酶以及葡萄糖产生的二氧化碳不受铅存在的影响,并且在这两种测定中,经铅处理的巨噬细胞提取物与对照细胞提取物的活性相同。铅似乎干扰了MAF诱导的激活过程中的早期事件。此外,铅降低了巨噬细胞对2-脱氧葡萄糖的摄取,这表明该金属可能抑制跨膜葡萄糖转运系统,这一现象可能部分解释了在经铅处理的细胞中观察到的代谢抑制。

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