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首页> 外文期刊>International Journal of Environmental Research and Public Health >Toxicity and Carcinogenicity Mechanisms of Fibrous Antigorite
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Toxicity and Carcinogenicity Mechanisms of Fibrous Antigorite

机译:纤维锑矿的毒性和致癌机理

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We studied the effects of fibrous antigorite on mesothelial MeT-5A and monocyte-macrophage J774 cell lines to further understand cellular mechanisms induced by asbestos fibers leading to lung damage and cancer. Antigorite is a mineral with asbestiform properties, which tends to associate with chrysotile or tremolite, and frequently occurs as the predominant mineral in the veins of several serpentinite rocks found abundantly in the Western Alps. Particles containing antigorite are more abundant in the breathing air of this region than those typically found in urban ambient air. Exposure of MeT-5A and J774 cells to fibrous antigorite at concentrations of 5–100 μg/ml for 72 hr induced dose-dependent cytotoxicity. Antigorite also stimulated the ROS production, induced the generation of nitrite and PGE2. MeT-5A cells were more sensitive to antigorite than J774 cells. The results of this study revealed that the fibrous antigorite stimulates cyclooxygenase and formation of hydroxyl and nitric oxide radicals. These changes represent early cellular responses to antigorite fibers, which lead to a host of pathological and neoplastic conditions because free radicals and PGE2 play important roles as mediators of tumor pathogenesis. Understanding the mechanisms of the cellular responses to antigorite and other asbestos particles should be helpful in designing rational prevention and treatment approaches.
机译:我们研究了纤维抗蛇纹石对间皮MeT-5A和单核巨噬细胞J774细胞系的影响,以进一步了解由石棉纤维诱导的导致肺损伤和癌症的细胞机制。蛇纹石是具有石棉性质的矿物,倾向于与温石棉或透闪石结合,并经常作为在西部阿尔卑斯山中大量发现的蛇纹岩中的主要矿物出现。与该区域的呼吸空气相比,该区域的呼吸空气中含有锑矿的颗粒更为丰富。 MeT-5A和J774细胞在浓度为5-100μg/ ml的纤维抗蛇毒中暴露72小时,诱导了剂量依赖性细胞毒性。蛇纹石还刺激了ROS的产生,诱导了亚硝酸盐和PGE 2 的生成。 MeT-5A细胞比J774细胞对抗蛇毒蛋白更为敏感。这项研究的结果表明,纤维状蛇毒蛋白可刺激环氧合酶并形成羟基和一氧化氮自由基。这些变化代表了早期对抗蛇毒蛋白纤维的细胞反应,由于自由基和PGE 2 在肿瘤发病机理中起着重要的作用,因此导致了许多病理和肿瘤性疾病。了解细胞对反蛇毒和其他石棉颗粒的反应机制应有助于设计合理的预防和治疗方法。

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