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2
Activation of human monocytes with lipopolysaccharide induces metallothionein expression and is diminished by zinc.
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无毒汞、锌或镉预处理对人单核细胞经脂多糖诱导激活能力的影响。

Effect of non-toxic mercury, zinc or cadmium pretreatment on the capacity of human monocytes to undergo lipopolysaccharide-induced activation.

作者信息

Koropatnick J, Zalups R K

机构信息

London Regional Cancer Centre, Ontario, Canada.

出版信息

Br J Pharmacol. 1997 Mar;120(5):797-806. doi: 10.1038/sj.bjp.0700975.

DOI:10.1038/sj.bjp.0700975
PMID:9138684
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1564538/
Abstract
  1. Metal salts can inhibit cell activity through direct toxicity to critical cellular molecules and structures. On the other hand, they can also change cell behaviour by inducing specific genes (including genes encoding members of the metallothionein [MT] gene family). Therefore, transition metals may affect cell functions either by acting as a toxin, or by transmitting or influencing signals controlling gene expression. 2. To explore the latter possibility, we measured the ability of low, non-toxic metal pretreatment to alter immune cell behaviour. We previously found that pretreatment of human monocytes with zinc induces metallothionein gene expression and alters their capacity to undergo a bacterial lipopolysaccharide-induced respiratory burst. We showed here that cadmium and mercury salts, at concentrations that exert no discernible toxicity, inhibit activation of human monocytic leukemia (THP-1) cells. CdCl2 1 microM, ZnCl2 20-40 microM or HgCl2 2 microM pretreatment for 20 h induced MT-2 mRNA and total MT protein accumulation and had no effect on proliferation potential or metabolic activity, but significantly inhibited the ability of subsequent lipopolysaccharide treatment to induce the oxidative burst, increased adhesion to plastic, and MT-2 and interleukin-1 beta (IL-1 beta) mRNA accumulation. 3. The phenomenon of metal-induced suppression of monocyte activation, at metal concentrations that have no effect on cell viability, has important implications for assessment of acceptable levels of human exposure to cadmium, zinc and mercury.
摘要
  1. 金属盐可通过对关键细胞分子和结构产生直接毒性来抑制细胞活性。另一方面,它们还可通过诱导特定基因(包括编码金属硫蛋白[MT]基因家族成员的基因)来改变细胞行为。因此,过渡金属可能通过充当毒素,或通过传递或影响控制基因表达的信号来影响细胞功能。2. 为了探究后一种可能性,我们测量了低剂量、无毒金属预处理改变免疫细胞行为的能力。我们之前发现,用锌预处理人单核细胞可诱导金属硫蛋白基因表达,并改变其在细菌脂多糖诱导下发生呼吸爆发的能力。我们在此表明,镉盐和汞盐在无明显毒性的浓度下可抑制人单核细胞白血病(THP-1)细胞的活化。用1 microM CdCl2、20 - 40 microM ZnCl2或2 microM HgCl2预处理20小时可诱导MT-2 mRNA和总MT蛋白积累,且对增殖潜能或代谢活性无影响,但显著抑制后续脂多糖处理诱导氧化爆发的能力、增加对塑料的黏附以及MT-2和白细胞介素-1β(IL-1β)mRNA的积累。3. 在对细胞活力无影响的金属浓度下,金属诱导单核细胞活化受抑制这一现象,对于评估人类接触镉、锌和汞的可接受水平具有重要意义。