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Man-made mineral fiber effects on the expression of anti-oncogenes P53 and P16 and oncogenes C-JUN and C-FOS in the lung tissue of Wistar rats

机译:人造矿物纤维对Wistar大鼠肺组织中抗癌癌p53和p16和癌基因C-Jun和C-FOS的表达

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Man-made mineral fibers (MMMFs) are substitutes for asbestos. MMMFs are widely used as insulation, but their molecular mechanisms underlying the tumorigenic effects in vivo have been poorly studied. For this reason, this work aimed to explore the properties and carcinogenic molecular mechanisms of MMMFs. The three MMMFs, rock wool (RW), glass fibers (GFs), and ceramic fibers (CFs), were prepared into respirable dust. Particle size, morphology, and chemical composition were analyzed by laser particle analyzer, scanning electron microscope, and X-ray fluorescence spectrometer, respectively. The Wistar rats were administered multiple intratracheal instillations of three MMMFs once a month. Then, several parameters (e.g. body mass, lung mass, and lung histology) were measured at 1, 3, and 6 months. After that, levels of P53, P16, C-JUN, and C-FOS mRNA and protein were measured by quantitative real-time reverse transcription polymerase chain reaction and Western blotting. This work found that exposure to MMMFs could influence the growth of body mass and increase lung mass. General conditions showed white nodules and irregular atrophy. In addition, MMMFs could lead to inactivation of anti-oncogene P16 and activation of proto-oncogenes (C-JUN and C-FOS) in the mRNA and protein levels, in which GF and CF were more obvious compared with RW. The effect of MMMFs was different, which may be related to the physical and chemical characteristics of different MMMFs. In conclusion, MMMFs (GF and CF) could induce an unbalanced expression of cancer-related genes in the lung tissues of rats. The understanding of the determinants of toxicity and carcinogenicity provides a scientific basis for developing and introducing new safer MMMF products, and the present study provides some useful insights into the carcinogenic mechanism of MMMFs.
机译:人造矿物纤维(MMMFS)是石棉的替代品。 MMMFS被广泛用作绝缘,但它们在体内致瘤症效应的潜在分子机制已经研究得很差。因此,这项工作旨在探讨MMMFS的性质和致癌分子机制。三种MMMFS,岩棉(RW),玻璃纤维(GFS)和陶瓷纤维(CFS)制备成可吸入粉尘。通过激光粒子分析仪,扫描电子显微镜和X射线荧光光谱仪分析粒度,形态和化学成分。 Wistar大鼠每月一次腹腔内滴注3 mmmfs。然后,在1,3和6个月测量几种参数(例如体重,肺部质量和肺组织学)。之后,通过定量实时逆转录聚合酶链反应和Western印迹测量P53,P16,C-JUM和C-FOS mRNA和蛋白质的水平。这种工作发现,暴露于MMMFS可能影响体重的生长并增加肺部质量。一般情况显示白色结节和不规则的萎缩。此外,MMMFS可能导致抗癌基因P16的灭活和激活MRNA和蛋白质水平中的原癌基因(C-JUM和C-FOS),其中GF和CF与RW相比更明显。 MMMFS的效果不同,这可能与不同MMMF的物理和化学特征有关。总之,MMMFS(GF和CF)可以诱导大鼠肺组织中癌症相关基因的不平衡表达。对毒性和致癌性的决定因素的理解为开发和引入新的更安全的MMMF产品提供了科学依据,目前的研究提供了一些有用的见解,进入MMMFS的致癌机制。

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