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Electrochemical Study of A DNA Base Probe Based on Anticancer Drug Dacarbazine - Subtitle: A DNA Base Probe

机译:基于抗癌药物DACARBAZINE的DNA碱基探针的电化学研究 - DNA碱基探针

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An anticancer drug dacarbazine (DTIC) was immobilized on a glassy carbon electrode (GCE) by using electrochemical oxidation method. Then the DTIC-modified GCE was utilized as a stable functional monolayer to further associate with DNA bases and the different blocking effects on the redox reaction of (Fe(CN){sub}6){sup}3- were observed on the different DNA base associated DTIC/GCE, where much bigger blocking effects on the electron transfer of (Fe(CN){sub}6){sup}3- appear on the purines/DTIC/GCE. Based on these observations, the single base change of the oligonucleotides by using the relative modified electrode has been further explored, and the results illustrate that the single base change in DNA sequences could be sensitively recognized by the related probe. Besides, our results also indicate that the specific binding of DTIC to different DNA bases could dramatically change the important interfacial characteristics of the relative surface, which may be utilized as a novel way for the DNA base detection and imply a potential application as a sensitive probe for some important biological process.
机译:通过使用电化学氧化方法将抗癌药物达酰肼(DTIC)固定在玻璃状碳电极(GCE)上。然后将DTIC改性的GCE用作稳定的功能单层,以进一步与DNA碱基和对不同DNA(SUP} 3)的氧化还原反应的不同阻断效应。在不同的DNA上观察到(Fe(CN)} 6)基础相关的DTIC / GCE,其中对(Fe(CN){Sub} 6){Sup} 3的电子传递进行了多大的阻塞效果 - 出现在嘌呤/德克/地区。基于这些观察结果,还进一步探索了使用相对修饰电极的寡核苷酸的单个基础变化,结果说明了DNA序列中的单个基础变化可以被相关探针敏感地识别。此外,我们的结果还表明DTIC对不同DNA碱基的特异性结合可以显着改变相对表面的重要界面特征,其可以用作DNA基础检测的新方法,并意味着潜在的应用作为敏感探针对于一些重要的生物过程。

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