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铅会刺激肝细胞与库普弗细胞之间的细胞间信号传导。

Lead stimulates intercellular signalling between hepatocytes and Kupffer cells.

作者信息

Milosevic N, Maier P

机构信息

Institute of Toxicology, Swiss Federal Institute of Technology Zürich, Schorenstr. 16, CH-8603, Schwerzenbach, Switzerland.

出版信息

Eur J Pharmacol. 2000 Aug 11;401(3):317-28. doi: 10.1016/s0014-2999(00)00473-8.

Abstract

The role of intercellular signalling between liver cells in lead (Pb)(1)-induced liver toxicity was investigated in cocultures of freshly isolated and cultured rat hepatocytes and Kupffer cells. The Kupffer cells (seeded onto culture dish inserts), the hepatocytes or the two in cocultures were exposed to Pb acetate (2-50 microM) in combination with lipopolysaccharide (0.1-1000 ng/ml). In hepatocyte cultures, the combined Pb/lipopolysaccharide treatment induced no significant increase in the release of the proinflammatory cytokine tumor necrosis factor-alpha (TNF-alpha) whereas in Kupffer cell cultures and in cocultures, at low lipopolysaccharide levels (0.1 and 1 ng/ml), TNF-alpha release was synergistically increased (up to 30-fold) when compared to lipopolysaccharide exposure alone. This stimulation of Kupffer cell-derived TNF-alpha release was specific for Pb or not detectable with mercury and cadmium. As a response to the Pb/lipopolysaccharide induced release of TNF-alpha, the cocultured hepatocytes increased their nitric oxide (NO) content sixfold when compared with lipopolysaccharide alone and downregulated the negatively regulated acute phase protein albumin. This downregulation was also detectable without lipopolysaccharide and without TNF-alpha release, indicating that Pb induces additional thus far unidentified Kupffer cell-derived factors, which interact with the cocultured hepatocytes. At the time of TNF-alpha release, the viability of the hepatocytes and the Kupffer cells was not affected. However, after a 48-h treatment period, Pb induced a Kupffer cell specific toxicity without affecting the hepatocytes. Loss of hepatocyte viability after lipopolysaccharide/Pb stimulation was only detectable in the presence of cocultured Kupffer cells together with human-derived granulocytes. It is concluded that Pb stimulates intercellular signalling between Kupffer cells and hepatocytes which is synergistically enhanced in the presence of low lipopolysaccharide levels. The released Kupffer cell-derived signals (e.g. cytokines) promotes most likely proteolytic hepatocyte killing in combination with a direct cellular interaction between the granulocytes and the hepatocytes.

摘要

在新鲜分离和培养的大鼠肝细胞与库普弗细胞的共培养体系中,研究了肝细胞间信号传导在铅(Pb)(1)诱导的肝毒性中的作用。将库普弗细胞(接种于培养皿插入物上)、肝细胞或两者的共培养物暴露于醋酸铅(2 - 50微摩尔)与脂多糖(0.1 - 1000纳克/毫升)的组合中。在肝细胞培养物中,铅/脂多糖联合处理未显著增加促炎细胞因子肿瘤坏死因子-α(TNF-α)的释放,而在库普弗细胞培养物和共培养物中,在低脂多糖水平(0.1和1纳克/毫升)下,与单独暴露于脂多糖相比,TNF-α的释放协同增加(高达30倍)。库普弗细胞衍生的TNF-α释放的这种刺激对铅具有特异性,用汞和镉检测不到。作为对铅/脂多糖诱导的TNF-α释放的反应,与单独的脂多糖相比,共培养的肝细胞的一氧化氮(NO)含量增加了六倍,并下调了负调控的急性期蛋白白蛋白。在没有脂多糖和没有TNF-α释放的情况下也可检测到这种下调,这表明铅诱导了迄今尚未确定的其他库普弗细胞衍生因子,这些因子与共培养的肝细胞相互作用。在TNF-α释放时,肝细胞和库普弗细胞的活力未受影响。然而,经过48小时的处理期后,铅诱导了库普弗细胞特异性毒性,而未影响肝细胞。脂多糖/铅刺激后肝细胞活力的丧失仅在共培养的库普弗细胞与人源粒细胞同时存在时才可检测到。结论是,铅刺激库普弗细胞与肝细胞之间的细胞间信号传导,在低脂多糖水平存在时这种信号传导协同增强。释放的库普弗细胞衍生信号(如细胞因子)很可能与粒细胞和肝细胞之间的直接细胞相互作用共同促进肝细胞的蛋白水解杀伤。

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