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Stress-induced DNA damage biomarkers: applications and limitations

机译:应激诱导的DNA损伤生物标志物:应用和局限性

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摘要

A variety of environmental stresses like chemicals, UV and ionizing radiation and organism's endogenous processes such as replication stress and metabolism can lead to the generation of reactive oxygen and nitrogen species (ROS/RNS) that can attack cellular vital components like DNA, proteins and lipid membranes. Among them, much attention has been focused on DNA since DNA damage plays a role in several biological disorders and aging processes. Thus, DNA damage can be used as a biomarker in a reliable and accurate way to quantify for example radiation exposure and can indicate its possible long term effects and cancer risk. Based on the type of DNA lesions detected one can hypothesize on the most probable mechanisms involved in the formation of these lesions for example in the case of UV and ionizing radiation (e.g., X- or α-, γ-rays, energetic ions, neutrons). In this review we describe the most accepted chemical pathways for DNA damage induction and the different types of DNA lesions, i.e., single, complex DNA lesions etc. that can be used as DNA damage biomarkers. We critically compare DNA damage detection methods and their limitations. In addition, we suggest the use of DNA repair gene products as biomarkes for identification of different types of stresses i.e., radiation, oxidative, or replication stress, based on bioinformatic approaches and meta-analysis of literature data.
机译:各种环境压力(例如化学物质,紫外线和电离辐射)以及生物体的内源性过程(例如复制压力和新陈代谢)会导致产生活性氧和氮(ROS / RNS),从而攻击细胞的重要成分,例如DNA,蛋白质和脂质膜。其中,由于DNA损伤在几种生物学疾病和衰老过程中起作用,因此人们对DNA的关注度很高。因此,DNA损伤可以以可靠和准确的方式用作生物标记,以量化例如辐射暴露,并可以表明其可能的长期影响和癌症风险。根据检测到的DNA损伤的类型,可以推测出与这些损伤形成有关的最可能机制,例如在紫外线和电离辐射(例如X射线或α射线,γ射线,高能离子,中子)中)。在这篇综述中,我们描述了引起DNA损伤的最普遍接受的化学途径,以及可以用作DNA损伤生物标记物的不同类型的DNA损伤,即单个,复杂的DNA损伤等。我们严格比较DNA损伤检测方法及其局限性。另外,我们建议基于生物信息学方法和文献数据的荟萃分析,将DNA修复基因产物用作生物标记,以鉴定不同类型的应激,即辐射,氧化或复制应激。

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