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Effect of mineral dusts on metabolic cooperation between Chinese hamster V79 cells in vitro.

机译:矿物粉尘对中国仓鼠V79细胞之间代谢合作的影响。

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摘要

The mode of action of inorganic fibers as carcinogens is unknown. There is conflicting evidence whether they act by inducing lesions in DNA, such as initiating carcinogens, or alternatively act as promoters of carcinogenesis. Recent evidence has suggested that promoters inhibit the process of cell-to-cell chemical communication known as metabolic cooperation. Chinese hamster V79-4 cells in culture exhibit metabolic cooperation which can be blocked by the promoter tetraphorbol-13-acetate (TPA). Three kinds of mineral dust were tested to determine whether or not they could interfere with the intercellular communication. The three dusts studied were: amosite, a fibrous asbestos from the Union Internationale Contre le Cancer (UICC) standard reference series, which is a typical carcinogenic fibrous dust inducing pleural tumors following intrapleural injection into rats; ball-milled amosite, a nonfibrous dust derived from UICC amosite by ball-milling, which has the physical properties characteristic of a noncarcinogenic dust; and Min-U-Sil silica, a widely available sample of fibrogenic quartz which does not induce pleural tumors following intrapleural injection into rats. The results demonstrated that metabolic cooperation between V79-4 cells cannot be reduced by carcinogenic asbestos fibers or by relatively large numbers of nontoxic dust particles. It is concluded that if inorganic fibers promote carcinogenesis, then they do not operate by blocking metabolic cooperation.
机译:无机纤维作为致癌物的作用方式是未知的。有相互矛盾的证据表明它们是通过诱导DNA损伤(例如引发致癌物)发挥作用,还是作为致癌作用的促进剂起作用。最近的证据表明,启动子会抑制称为代谢合作的细胞间化学通讯过程。培养的中国仓鼠V79-4细胞表现出代谢协同作用,可被启动子tetraphorbol-13-acetate(TPA)阻断。测试了三种矿物粉尘,以确定它们是否会干扰细胞间的通讯。研究的三种粉尘是:铁石棉,一种来自国际抗癌联盟(UICC)标准参考系列的纤维状石棉,这是一种典型的致癌性纤维状粉尘,在大鼠胸膜内注射后会诱发胸膜肿瘤;球磨的铁石粉,一种非纤维性粉尘,由UICC的铁石粉经球磨得到,具有非致癌性粉尘的物理特性;和Min-U-Sil二氧化硅,一种广泛使用的纤维化石英样品,在向大鼠胸膜内注射后不会诱发胸膜肿瘤。结果表明,致癌石棉纤维或相对大量的无毒尘埃颗粒无法减少V79-4细胞之间的代谢协同作用。结论是,如果无机纤维促进癌变,则它们不会通过阻止代谢合作而起作用。

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