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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Detection of DNA damage by thiazole orange fluorescence probe assisted with exonuclease III
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Detection of DNA damage by thiazole orange fluorescence probe assisted with exonuclease III

机译:核酸外切酶III辅助噻唑橙荧光探针检测DNA损伤

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摘要

This work reports a fluorescent dye insertion approach for detection of DNA damage. The capture DNA with overhanging 3'-terminus was immobilized on silicon surface to hybridize with target DNA. The intercalation of cyanine dye of thiazole orange (TO) to the double helix structure of DNA (dsDNA) allowed intense enhancement of fluorescence signal. The DNA damage with chemicals led to poor intercalation of TO into double helix structure, resulting in the decrease of the fluorescence signal. This signal decrease could be further enhanced by exonuclease III (Exo III). With this approach, the target DNA could be detected down to 47 fM. Seven chemicals were chosen as models to monitor DNA damage. The results suggested that the present strategy could be developed to detect DNA damage, to classify the damaging mechanism with chemicals and to estimate the toxic effect of chemicals.
机译:这项工作报告了一种荧光染料插入方法,用于检测DNA损伤。具有突出的3'末端的捕获DNA被固定在硅表面上以与靶DNA杂交。噻唑橙(TO)的花青染料插入DNA(dsDNA)的双螺旋结构中,可以强烈增强荧光信号。 DNA受到化学物质的破坏导致TO插入双螺旋结构的能力很差,导致荧光信号降低。核酸外切酶III(Exo III)可以进一步增强该信号的降低。使用这种方法,可以检测到低至47 fM的目标DNA。选择了七种化学物质作为监测DNA损伤的模型。结果表明,可以制定本策略来检测DNA损伤,用化学物质对破坏机制进行分类,并估计化学物质的毒性作用。

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