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Analysis of DNA strand breaks induced by exposure to an atmospheric pressure plasma jet

机译:分析暴露于大气压等离子体射流引起的DNA链断裂

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Recent progress of biomedical application of non-thermal plasmas shows that the biological effects are mainly due to oxidative reactions induced by reactive oxygen and nitrogen species produced by exposure to the plasma. Therefore, a rapid and quantitative evaluation method for damage of biomacromolecules induced by exposure to the plasma is required. DNA is one of the most important biomolecular targets for investigating the effects of exposure to the plasma. It has been reported that DNA strand breaks are induced when DNA is exposed to an atmospheric non-thermal plasma. We previously reported a single-molecule-based method for evaluating strand breaks in large linear DNA molecules that allows the length of individual DNA molecules to be measured1. However, a rapid method for evaluating the damage caused to DNA molecules upon exposure to plasma is currently challenging. Here, we propose the use of a molecular beacon for rapid detection of DNA strand breaks induced by atmospheric pressure plasma jet (APPJ) irradiation. Scission of the molecular beacon by APPJ irradiation leads to separation of the fluorophore-quencher pair, resulting in an increase in fluorescence that directly correlates with the DNA strand breaks. The results show that the increase in fluorescence intensity is proportional to the exposure time and the rate of fluorescence increase is proportional to the discharge power. This simple and rapid method allows the estimation of DNA damage induced by exposure to a non-thermal plasma2.
机译:非热等离子体的生物医学应用的最新进展表明,生物学效应主要归因于暴露于等离子体中产生的活性氧和氮物质引起的氧化反应。因此,需要一种快速和定量的评估方法,该方法用于评估由于暴露于血浆而引起的生物大分子的损伤。 DNA是研究血浆暴露影响的最重要的生物分子靶标之一。据报道,当DNA暴露于大气非热等离子体中时,会诱发DNA链断裂。我们以前曾报道过一种基于单分子的方法,用于评估大型线性DNA分子中的链断裂,从而可以测量单个DNA分子的长度1。但是,目前一种快速的方法是评估暴露于血浆后对DNA分子造成的损害。在这里,我们建议使用分子信标用于大气压等离子体射流(APPJ)辐射诱导的DNA链断裂的快速检测。通过APPJ辐照切断分子信标导致荧光团-猝灭剂对的分离,从而导致与DNA链断裂直接相关的荧光增加。结果表明,荧光强度的增加与曝光时间成正比,荧光增加的速率与放电功率成正比。这种简单而快速的方法可以估算由于暴露于非热等离子体中引起的DNA损伤2。

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