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Application of the CometChip platform to assess DNA damage in field-collected blood samples from turtles

机译:CometChip平台在评估现场采集的海龟血样中DNA损伤中的应用

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摘要

DNA damage has been linked to genomic instability and the progressive breakdown of cellular and organismal homeostasis, leading to the onset of disease and reduced longevity. Insults to DNA from endogenous sources include base deamination, base hydrolysis, base alkylation and metabolism-induced oxidative damage that can lead to single-strand and double-strand DNA breaks. Alternatively, exposure to environmental pollutants, radiation or ultra-violet light, can also contribute to exogenously derived DNA damage. We previously validated a novel, high through-put approach to measure levels of DNA damage in cultured mammalian cells. This new CometChip Platform builds on the classical single cell gel electrophoresis or comet methodology used extensively in environmental toxicology and molecular biology. We asked whether the CometChip Platform could be used to measure DNA damage in samples derived from environmental field studies. To this end, we determined that nucleated erythrocytes from multiple species of turtle could be successfully evaluated in the CometChip Platform to quantify levels of DNA damage. In total, we compared levels of DNA damage in 40 animals from two species: the box turtle (Terrapene carolina) and the red-eared slider (Trachemys scripta elegans). Endogenous levels of DNA damage were identical between the two species, yet we did discover some sex-linked differences and changes in DNA damage accumulation. Based on these results, we confirm that the CometChip Platform allows for the measurement of DNA damage in a large number of samples quickly and accurately, and is particularly adaptable to environmental studies using field-collected samples.
机译:DNA损伤与基因组不稳定以及细胞和生物体内稳态的逐步破坏有关,从而导致疾病的发作和寿命的缩短。内源性来源对DNA的损害包括碱基脱氨,碱基水解,碱基烷基化以及新陈代谢引起的氧化损伤,这些氧化损伤可能导致单链和双链DNA断裂。另外,暴露于环境污染物,辐射或紫外线下,也可能导致外源性DNA损伤。我们先前验证了一种新颖的高通量方法来测量培养的哺乳动物细胞中DNA损伤的水平。这个新的CometChip平台基于经典的单细胞凝胶电泳或彗星方法,广泛用于环境毒理学和分子生物学中。我们询问CometChip平台是否可用于测量环境现场研究得出的样品中的DNA损伤。为此,我们确定可以在CometChip平台上成功评估来自多种乌龟物种的有核红细胞,以量化DNA损伤的水平。总体而言,我们比较了来自两种物种的40只动物的DNA损伤水平:盒龟(Terrapene carolina)和红耳滑子(Trachemys scripta elegans)。两种物种的内源性DNA损伤水平相同,但是我们确实发现了一些性别相关的差异以及DNA损伤积累的变化。根据这些结果,我们确认CometChip平台可以快速,准确地测量大量样品中的DNA损伤,并且特别适用于使用现场收集的样品进行的环境研究。

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