自动FADU测定法定量DNA链断裂及其修复在人外周单核血细胞中的数学建模。

Q1 Biochemistry, Genetics and Molecular Biology
BMC Biophysics Pub Date : 2014-09-09 eCollection Date: 2014-01-01 DOI:10.1186/s13628-014-0009-z
Michael Junk, Judy Salzwedel, Thilo Sindlinger, Alexander Bürkle, Maria Moreno-Villanueva
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引用次数: 10

摘要

背景:细胞不断受到外源性物质如辐射或基因毒性化学物质或正常细胞代谢活动产生的内源性自由基的DNA损伤。DNA链断裂是最常见的基因毒性病变之一,它们也可以作为DNA修复活性的中间产物出现。未修复的DNA损伤会导致基因组不稳定,从而严重损害生物体的健康状况。因此,测量和量化DNA损伤及其修复具有重要意义。结果:我们之前已经发表了一种基于碱性DNA解绕荧光检测的自动测量DNA链断裂的方法[1],在这里我们提出了FADU测定的数学模型,可以解析表达测量的荧光与链断裂数之间的关系。结论:评估DNA链断裂的形成和修复是研究活细胞遗传毒性的重要功能参数。因此,一种可靠而方便的方法来量化DNA链断裂对于许多科学领域都具有重要意义,例如毒理学、药理学、流行病学和医学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mathematical modelling of the automated FADU assay for the quantification of DNA strand breaks and their repair in human peripheral mononuclear blood cells.

Mathematical modelling of the automated FADU assay for the quantification of DNA strand breaks and their repair in human peripheral mononuclear blood cells.

Background: Cells continuously undergo DNA damage from exogenous agents like irradiation or genotoxic chemicals or from endogenous radicals produced by normal cellular metabolic activities. DNA strand breaks are one of the most common genotoxic lesions and they can also arise as intermediates of DNA repair activity. Unrepaired DNA damage can lead to genomic instability, which can massively compromise the health status of organisms. Therefore it is important to measure and quantify DNA damage and its repair.

Results: We have previously published an automated method for measuring DNA strand breaks based on fluorimetric detection of alkaline DNA unwinding [1], and here we present a mathematical model of the FADU assay, which enables to an analytic expression for the relation between measured fluorescence and the number of strand breaks.

Conclusions: Assessment of the formation and also the repair of DNA strand breaks is a crucial functional parameter to investigate genotoxicity in living cells. A reliable and convenient method to quantify DNA strand breakage is therefore of significant importance for a wide variety of scientific fields, e.g. toxicology, pharmacology, epidemiology and medical sciences.

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BMC Biophysics
BMC Biophysics BIOPHYSICS-
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