Evans Stephen O, Jameson Michael B, Cursons Ray T M, Peters Linda M, Bird Steve, Jacobson Gregory M
Biomedical Research Unit, School of Science, University of Waikato Private Bag 3105, Hamilton 3240, New Zealand.
Department of Oncology, Regional Cancer Centre, Waikato Hospital, Hamilton West 3204, New Zealand.
Biology (Basel). 2016 Oct 8;5(4):39. doi: 10.3390/biology5040039.
DNA damage quantitation assays such as the comet assay have focused on the measurement of total nuclear damage per cell. The adoption of PCR-based techniques to quantify DNA damage has enabled sequence- and organelle-specific assessment of DNA lesions. Here we report on an adaptation of a qPCR technique to assess DNA damage in nuclear and mitochondrial targets relative to control. Novel aspects of this assay include application of the assay to the Rotor-Gene platform with optimized DNA polymerase/fluorophore/primer set combination in a touchdown PCR protocol. Assay validation was performed using ultraviolet C radiation in A549 and THP1 cancer cell lines. A comparison was made to the comet assay applied to peripheral blood mononuclear cells, and an estimation of the effects of cryopreservation on ultraviolet C-induced DNA damage was carried out. Finally, dose responses for DNA damage were measured in peripheral blood mononuclear cells following exposure to the cytotoxic agents bleomycin and cisplatin. We show reproducible experimental outputs across the tested conditions and concordance with published findings with respect to mitochondrial and nuclear genotoxic susceptibilities. The application of this DNA damage assay to a wide range of clinical and laboratory-derived samples is both feasible and resource-efficient.
诸如彗星试验之类的DNA损伤定量分析主要关注每个细胞的总核损伤测量。采用基于PCR的技术来量化DNA损伤,能够对DNA损伤进行序列和细胞器特异性评估。在此,我们报告了一种qPCR技术的改进方法,用于评估相对于对照的细胞核和线粒体靶标中的DNA损伤。该分析方法的新特点包括在降落PCR方案中,将该分析应用于Rotor-Gene平台,并优化了DNA聚合酶/荧光团/引物组组合。使用紫外线C辐射对A549和THP1癌细胞系进行分析验证。与应用于外周血单核细胞的彗星试验进行了比较,并评估了冷冻保存对紫外线C诱导的DNA损伤的影响。最后,测量了外周血单核细胞在暴露于细胞毒性药物博来霉素和顺铂后DNA损伤的剂量反应。我们展示了在所有测试条件下可重复的实验结果,并且在线粒体和细胞核遗传毒性易感性方面与已发表的研究结果一致。将这种DNA损伤分析应用于广泛的临床和实验室来源样本既可行又高效。