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Development of a DNA-dosimeter system for monitoring the effects of solar-ultraviolet radiation

机译:研发用于监测太阳紫外线辐射影响的DNA剂量计系统

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摘要

Solar radiation sustains and affects all life forms on Earth. In recent years, the increase in environmental levels of solar-UV radiation due to depletion of the stratospheric ozone layer, as a result of anthropogenic emission of destructive chemicals, has highlighted serious issues of social concern. This becomes still more dramatic in tropical and subtropical regions, where the intensity of solar radiation is higher. To better understand the impact of the harmful effects of solar-UV radiation on the DNA molecule, we developed a reliable biological monitoring system based on the exposure of plasmid DNA to artificial UV lamps and sunlight. The determination and quantification of different types of UV photoproducts were performed through the use of specific DNA repair enzymes and antibodies. As expected, a significant number of CPDs and 6-4PPs was observed when the DNA-dosimeter system was exposed to increasing doses of UVB radiation. Moreover, CPDs could also be clearly detected in plasmid DNA when this system was exposed to either UVA or directly to sunlight. Interestingly, although less abundant, 6-4PPs and oxidative DNA damage were also generated after exposure to both UVA and sunlight. These results confirm the genotoxic potential of sunlight, reveal that UVA may also produce CPDs and 6-4PPs directly in naked DNA and demonstrate the applicability of a DNA-dosimeter system for monitoring the biological effects of solar-UV radiation.
机译:太阳辐射维持并影响着地球上的所有生命形式。近年来,由于人为破坏性化学物质的排放,由于平流层臭氧层的消耗而使太阳紫外线辐射的环境水平增加,这已引起社会关注的严重问题。在太阳辐射强度较高的热带和亚热带地区,这种情况更加明显。为了更好地了解太阳紫外线辐射对DNA分子的有害影响,我们基于质粒DNA暴露于人工紫外线灯和阳光下,开发了可靠的生物监测系统。通过使用特定的DNA修复酶和抗体对不同类型的UV光产物进行测定和定量。正如预期的那样,当DNA剂量计系统暴露于增加剂量的UVB辐射下时,观察到大量的CPD和6-4PP。此外,当该系统暴露于UVA或直接暴露于阳光下时,也可以在质粒DNA中清楚地检测到CPD。有趣的是,尽管数量较少,但是在暴露于UVA和阳光下也会产生6-4PPs和氧化DNA损伤。这些结果证实了阳光的遗传毒性潜力,表明UVA还可直接在裸露的DNA中产生CPD和6-4PP,并证明了DNA剂量计系统可用于监测太阳-紫外线辐射的生物效应。

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