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首页> 外文期刊>Biochemical and Biophysical Research Communications >Role of reactive oxygen species in arsenic-induced transformation of human lung bronchial epithelial (BEAS-2B) cells
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Role of reactive oxygen species in arsenic-induced transformation of human lung bronchial epithelial (BEAS-2B) cells

机译:活性氧在砷诱导的人肺支气管上皮细胞(BEAS-2B)转化中的作用

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Arsenic is an environmental carcinogen, its mechanisms of carcinogenesis remain to be investigated. Reactive oxygen species (ROS) are considered to be important. A previous study (Carpenter et al., 2011) has measured ROS level in human lung bronchial epithelial (BEAS-2B) cells and arsenic-transformed BEAS-2B cells and found that ROS levels were higher in transformed cells than that in parent normal cells. Based on these observations, the authors concluded that cell transformation induced by arsenic is mediated by increased cellular levels of ROS. This conclusion is problematic because this study only measured the basal ROS levels in transformed and parent cells and did not investigate the role of ROS in the process of arsenic-induced cell transformation. The levels of ROS in arsenic-transformed cells represent the result and not the cause of cell transformation. Thus question concerning whether ROS are important in arsenic-induced cell transformation remains to be answered. In the present study, we used expressions of catalase (antioxidant against H2O2) and superoxide dismutase 2 (SOD2, antioxidant against O-2(center dot-)) to decrease ROS level and investigated their role in the process of arsenic-induced cell transformation. Our results show that inhibition of ROS by antioxidant enzymes decreased arsenic-induced cell transformation, demonstrating that ROS are important in this process. We have also shown that in arsenic-transformed cells, ROS generation was lower and levels of antioxidants are higher than those in parent cells, in a disagreement with the previous report. The present study has also shown that the arsenic-transformed cells acquired apoptosis resistance. The inhibition of catalase to increase ROS level restored apoptosis capability of arsenic-transformed BEAS-2B cells, further showing that ROS levels are low in these cells. The apoptosis resistance due to the low ROS levels may increase cells proliferation, providing a favorable environment for tumorigenesis of arsenic-transformed cells. (C) 2014 Elsevier Inc. All rights reserved.
机译:砷是一种环境致癌物,其致癌机理尚待研究。活性氧(ROS)被认为很重要。先前的研究(Carpenter等,2011)已经测量了人肺支气管上皮(BEAS-2B)细胞和砷转化的BEAS-2B细胞中的ROS水平,发现转化细胞中的ROS水平高于亲本正常细胞中的ROS水平。 。基于这些观察,作者得出结论,砷诱导的细胞转化是由细胞中ROS水平升高介导的。这个结论是有问题的,因为这项研究仅测量了转化细胞和亲本细胞中的基础ROS水平,而没有研究ROS在砷诱导的细胞转化过程中的作用。砷转化细胞中ROS的水平代表结果,而不是细胞转化的原因。因此,关于ROS在砷诱导的细胞转化中是否重要的​​问题仍有待回答。在本研究中,我们使用过氧化氢酶(抗H2O2的抗氧化剂)和超氧化物歧化酶2(SOD2,抗O-2的抗氧化剂(中心点-))的表达来降低ROS水平,并研究它们在砷诱导的细胞转化过程中的作用。 。我们的结果表明,抗氧化剂对ROS的抑制作用降低了砷诱导的细胞转化,表明ROS在此过程中很重要。我们还表明,在砷转化的细胞中,ROS的生成量较低,抗氧化剂的水平高于亲代细胞中的水平,这与以前的报道不同。本研究还表明,砷转化的细胞具有凋亡抗性。抑制过氧化氢酶以增加ROS水平可恢复砷转化的BEAS-2B细胞的凋亡能力,进一步表明这些细胞中的ROS水平较低。低ROS水平引起的凋亡抗性可能增加细胞增殖,为砷转化细胞的肿瘤发生提供了有利的环境。 (C)2014 Elsevier Inc.保留所有权利。

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