Brander Cancer Research Institute and Department of Pathology, New York Medical College, Valhalla, NY, USA.
Cell Cycle. 2010 Jun 1;9(11):2170-6. doi: 10.4161/cc.9.11.11842.
Cigarette smoke (CS) is the major cause of lung cancer and contributes to the development of other malignancies. Attempts have been made to construct reduced toxicity cigarettes, presumed to have diminished genotoxic potential. One such product on the market is the tobacco and nicotine free (T&N-free) cigarette type made from lettuce and herbal extracts. We have recently developed a sensitive assay of the genotoxicity of CS based on cytometric analysis of induction of the DNA damage response (DDR) in normal human pulmonary endothelial or A549 pulmonary adenocarcinoma cells. In the present study, we observed that exposure of A549 cells to CS from T/N-free cigarettes induced a smoke-dose dependent DDR as evidenced by phosphorylation (activation) of the Ataxia telangiectasia mutated (ATM) protein kinase and of the histone H2AX (γH2AX). The extent of DDR induced by T&N-free smoke was distinctly greater than that induced by comparable doses of CS from reference cigarettes (2R4F) containing tobacco and nicotine. The pattern of DDR induced by T&N-free smoke was similar to that of 2R4F cigarettes in terms of the cell cycle phase specificity and involvement of reactive oxygen species (ROS). The data also imply that similar to 2R4F exposure of cells to T/N-free smoke leads to formation of double-strand DNA breaks (DSBs) resulting from collapse of replication forks upon collision with the primary ssDNA lesions induced by smoke. Since DSBs are potentially carcinogenic our data indicate that smoking tobacco and nicotine-free cigarettes is at least as hazardous as smoking cigarettes containing tobacco and nicotine.
香烟烟雾(CS)是肺癌的主要病因,并导致其他恶性肿瘤的发展。人们试图构建毒性降低的香烟,据推测其遗传毒性潜力降低。市场上有一种产品是由生菜和草药提取物制成的无烟草和尼古丁(T&N-free)香烟。我们最近开发了一种基于人正常肺内皮细胞或 A549 肺腺癌细胞中 DNA 损伤反应(DDR)诱导的细胞计量分析的 CS 遗传毒性的敏感测定法。在本研究中,我们观察到,暴露于 T/N-free 香烟的 CS 会诱导 A549 细胞产生与吸烟剂量相关的 DDR,这表现为共济失调毛细血管扩张症突变(ATM)蛋白激酶和组蛋白 H2AX(γH2AX)的磷酸化(激活)。T&N-free 烟雾引起的 DDR 程度明显大于参考香烟(2R4F)中 CS 诱导的 DDR 程度,参考香烟含有烟草和尼古丁。T&N-free 烟雾诱导的 DDR 模式与 2R4F 香烟相似,具有细胞周期相特异性和活性氧物质(ROS)的参与。数据还表明,类似于 2R4F 暴露于 T/N-free 烟雾会导致双链 DNA 断裂(DSBs)的形成,这是由于复制叉与烟雾诱导的原发性 ssDNA 损伤碰撞而崩溃所致。由于 DSBs 具有潜在的致癌性,我们的数据表明,吸烟无烟草和尼古丁的香烟至少与吸烟含有烟草和尼古丁的香烟一样危险。