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Development of a screening system for DNA damage and repair of potential carcinogens based on dual luciferase assay in human HepG2 cell

机译:基于双重萤光素酶测定的人类HepG2细胞DNA损伤和潜在致癌物修复筛选系统的开发

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摘要

At present, different methods are used for the detection of early biological effects of DNA-damaging agents in environment. Some sensitive testing methods employing DNA damage-inducing genes RNR3, RAD51, RAD54 or growth-arrested and DNA damage-inducible gene 153 (Gadd 153) are used to detect the DNA damage. The host cell reactivation (HCR) assay is a functional assay that is based on the independent transfection of cells with either damaged or undamaged plasmid DNA and allows the identification of the genes responsible for DNA repair-deficient syndromes. In this study, we combined the gadd153-luc test system and HCR assay to measure the DNA damage and DNA repair by dual luciferase assay. We used 16 DNA-damaging agents all of which were detected by a positive dual luciferase reporter test system. The sensitivity of the dual luciferase assay system to detect DNA damage/repair was same as the gadd153-luc test system and/or the HCR assay. Since DNA repair is important to maintain genetic stability, DNA damage and repair have been good biomarkers of early biological effects of DNA-damaging agents. Accordingly, the measurement of DNA repair capacity should be a valued tool in molecular epidemiology studies. The dual luciferase assay described in this study is rapid, convenient, stable and standard.
机译:目前,使用不同的方法来检测环境中DNA破坏剂的早期生物学效应。一些敏感的测试方法采用DNA损伤诱导基因RNR3,RAD51,RAD54或生长停滞和DNA损伤诱导基因153(Gadd 153)来检测DNA损伤。宿主细胞激活(HCR)检测是一种功能检测,其基于受损或未损坏的质粒DNA对细胞的独立转染,并可以鉴定导致DNA修复缺陷综合征的基因。在这项研究中,我们结合了gadd153-luc测试系统和HCR测定法,通过双荧光素酶测定法测量DNA损伤和DNA修复。我们使用了16种DNA破坏剂,所有这些都通过阳性双重荧光素酶报告基因检测系统检测到。双荧光素酶检测系统检测DNA损伤/修复的灵敏度与gadd153-luc检测系统和/或HCR检测相同。由于DNA修复对于维持遗传稳定性很重要,因此DNA损伤和修复一直是DNA破坏剂早期生物学效应的良好生物标记。因此,DNA修复能力的测量应该是分子流行病学研究中的有价值的工具。在这项研究中描述的双重荧光素酶测定是快速,方便,稳定和标准的。

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