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Biological Evaluation of DNA Biomarkers in a Chemically Defined and Site-Specific Manner

机译:DNA生物标志物的化学评估和特定地点方式的生物学评估

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As described elsewhere in this Special Issue on biomarkers, much progress has been made in the detection of modified DNA within organisms at endogenous and exogenous levels of exposure to chemical species, including putative carcinogens and chemotherapeutic agents. Advances in the detection of damaged or unnatural bases have been able to provide correlations to support or refute hypotheses between the level of exposure to oxidative, alkylative, and other stresses, and the resulting DNA damage (lesion formation). However, such stresses can form a plethora of modified nucleobases, and it is therefore difficult to determine the individual contribution of a particular modification to alter a cell’s genetic fate, as measured in the form of toxicity by stalled replication past the damage, by subsequent mutation, and by lesion repair. Chemical incorporation of a modification at a specific site within a vector (site-specific mutagenesis) has been a useful tool to deconvolute what types of damage quantified in biologically relevant systems may lead to toxicity and/or mutagenicity, thereby allowing researchers to focus on the most relevant biomarkers that may impact human health. Here, we will review a sampling of the DNA modifications that have been studied by shuttle vector techniques.
机译:如本期《生物标志物特别期刊》的其他部分所述,在生物体内以内源性和外源性水平接触化学物质(包括推定的致癌物和化学治疗剂)的过程中,检测修饰的DNA方面已取得了很大进展。检测受损或非天然碱基的进展已能够提供相关性,以支持或驳斥氧化,烷基和其他胁迫的暴露水平与所导致的DNA损伤(病变形成)之间的假设。但是,这种压力会形成大量修饰的核碱基,因此很难确定特定修饰对改变细胞遗传命运的个体贡献,以毒性的形式通过破坏后的复制停滞,随后的突变来测定毒性,并通过病变修复。在载体的特定位点化学掺入修饰(位点特异性诱变)已成为一种有用的工具,可以使在生物学相关系统中定量的哪些类型的损害可能导致毒性和/或诱变性反卷积,从而使研究人员可以专注于可能影响人类健康的大多数相关生物标志物。在这里,我们将回顾通过穿梭载体技术研究过的DNA修饰样品。

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