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Monitoring urban air particulate matter (fractions PM 2.5 and PM 10) genotoxicity by plant systems and human cells in vitro: a comparative analysis.

机译:通过植物系统和人体细胞体外监测城市空气中的颗粒物(PM 2.5和PM 10级分)的遗传毒性:比较分析。

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Increased incidence of mortality and sickness due to cardiopulmonary complications has been associated with elevated levels of urban air particles (UAP), with an aerodynamic diameter of 10 microm (PM 10) and 2.5 microm (PM 2.5). In the present report alternative plant systems and human cells in vitro are associated with human hazard and genotoxic risk assessment of UAP. The genotoxic activities associated with the coarse (PM 10) and the fine fraction (PM 2.5) of airborne particulates have been analyzed by evaluating micronuclei induction and/or sister-chromatid exchange (SCE) using in vitro models of Daucus carota and HS 27 human fibroblast cell suspensions and Zea mays root meristems. Results show variability in the response of the test systems and indicate that the mutagenicity trend in both plant and human cell cultures was directly correlated to the concentration of carbon-rich particles in the fraction of the PM 2.5 airborne particulates. Moreover, in plant tissues, the frequency of micronuclei and SCE was related to an enhancement of the specific activity of the stress-related enzyme peroxidase.
机译:心肺并发症导致的死亡和疾病的发生率增加与城市空气颗粒(UAP)水平升高有关,空气动力学直径分别为10微米(PM 10)和2.5微米(PM 2.5)。在本报告中,替代的植物系统和体外人类细胞与UAP的人类危害和遗传毒性风险评估相关。通过使用Daucus carota和HS 27人类的体外模型评估微核诱导和/或姐妹染色单体交换(SCE),分析了与空气中颗粒的粗颗粒(PM 10)和细颗粒物(PM 2.5)相关的遗传毒性活性。成纤维细胞悬浮液和玉米根分生组织。结果表明测试系统的响应存在差异,并表明植物和人类细胞培养物中的致突变性趋势与PM 2.5空气传播颗粒中富碳颗粒的浓度直接相关。此外,在植物组织中,微核和SCE的频率与胁迫相关酶过氧化物酶比活性的提高有关。

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