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首页> 外文期刊>Environmental Science and Pollution Research >Fine particle matters induce DNA damage and G2/M cell cycle arrest in human bronchial epithelial BEAS-2B cells
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Fine particle matters induce DNA damage and G2/M cell cycle arrest in human bronchial epithelial BEAS-2B cells

机译:细颗粒物质在人支气管上皮BEA-2B细胞中诱导DNA损伤和G2 / M细胞循环骤停

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摘要

There is compelling evidence that exposure to particulate matter (PM) is linked to lung tumorigenesis. However, there is not enough experimental evidence to support the specific mechanisms of PM2.5-induced DNA damage and cell cycle arrest in lung tumorigenesis. In this study, we investigated the toxic effects and molecular mechanisms of PM2.5 on bronchial epithelial (BEAS-2B) cells. PM2.5 exposure reduced cell viability and enhanced LDH activity. The cell growth curves of BEAS-2B cells decreased gradually with the increase in PM2.5 dosage. A significant increase in MDA content and a decrease in GSH-Px activity were observed. The generation of ROS was enhanced obviously, while apoptosis increased in BEAS-2B cells exposed to PM2.5 for 24 h. DNA damage was found to be more severe in the exposed groups compared with the control. For in-depth study, we have demonstrated that PM2.5 stimulated the activation of HER2/ErbB2 while significantly upregulating the expression of Ras/GADPH, p-BRAF/BRAF, p-MEK/MEK, p-ERK/ERK, and c-Myc/GADPH in a dose-dependent manner. In summary, we suggested that exposure to PM2.5 sustained the activation of HER2/ErbB2, which in turn promoted the activation of the Ras/Raf/MAPK pathway and the expression of the downstream target c-Myc. The overexpression of c-Myc may lead to G2/M arrest and aggravate the DNA damage and apoptosis in BEAS-2B after exposure to PM2.5.
机译:有令人信服的证据表明暴露于颗粒物(PM)是与肺癌的发生。但是,没有足够的实验证据支持的PM2.5诱导的DNA损伤和细胞周期停滞在肺肿瘤发生中的特定的机制。在这项研究中,我们调查的毒性作用和支气管上皮(BEAS-2B)细胞PM2.5的分子机制。 PM2.5曝光降低细胞存活率和增强的LDH活性。 BEAS-2B细胞的细胞生长曲线与PM2.5剂量的增加而逐渐降低。在MDA含量的增加显著和GSH-Px活性降低,观察。 ROS的产生明显增强,而凋亡暴露于PM2.5 24小时BEAS-2B细胞中增加。 DNA损伤被认为是与对照相比在暴露组更严重。进行深入研究中,我们已经证明,刺激PM2.5 HER2 / ErbB2的激活而显著上调的Ras / GADPH,对BRAF / BRAF,对MEK / MEK,P-ERK / ERK,和c的表达-Myc / GADPH以剂量依赖的方式。总之,我们建议,暴露于PM2.5持续HER2 / ErbB2的,这又促进了RAS / RAF / MAPK途径的激活和下游靶的c-Myc的表达的激活。 c-Myc的过量表达可导致G2 / M期阻滞和加重暴露于PM2.5后的DNA损伤和细胞凋亡的BEAS-2B。

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