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首页> 外文期刊>Biomacromolecules >A Real-Time QCM-D Approach to Monitoring Mammalian DNA Damage Using DNA Adsorbed to a Polyelectrolyte Surface
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A Real-Time QCM-D Approach to Monitoring Mammalian DNA Damage Using DNA Adsorbed to a Polyelectrolyte Surface

机译:使用吸附到聚电解质表面的DNA监测哺乳动物DNA损伤的实时QCM-D方法

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摘要

We have successfully demonstrated that the quartz crystal microbalance with dissipation monitoring(QCM-D)can be used to monitor real-time damage to genomic mammalian DNA adsorbed to a polyelectrolyte surface.To reveal the capabilities of this technique,we exposed DNA surfaces to quercetin,an agent that has been implicated in causing DNA strand breaks in a Cu(II)-dependent fashion in vitro.We show that the QCM-D frequency and dissipation patterns that result from exposure of the DNA surfaces to quercetin-Cu(II)are consistent with the induction of DNA strand scission.We use QCM-D to furthermore demonstrate that this process is dependent on Cu(II)and that the DNA damage induced by quercetin can still be detected if Cu(II)is in situ with the DNA surface and not in solution phase.
机译:我们已经成功地证明了带耗散监测的石英晶体微量天平(QCM-D)可用于监测对吸附到聚电解质表面的基因组哺乳动物DNA的实时破坏。为揭示该技术的功能,我们将DNA表面暴露于槲皮素,一种与体外以Cu(II)依赖性方式引起DNA链断裂有关的药物。我们显示了由于DNA表面暴露于槲皮素-Cu(II)而导致的QCM-D频率和耗散模式我们使用QCM-D进一步证明了该过程依赖于Cu(II),并且如果Cu(II)原位与Cu(II)结合,槲皮素诱导的DNA损伤仍然可以检测到。 DNA表面且未处于溶液相。

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