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首页> 外文期刊>Physical chemistry chemical physics: PCCP >In situ evaluation of anticancer drug methotrexate-DNA interaction using a DNA-electrochemical biosensor and AFM characterization
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In situ evaluation of anticancer drug methotrexate-DNA interaction using a DNA-electrochemical biosensor and AFM characterization

机译:使用DNA电化学生物传感器和AFM表征原位评估抗癌药甲氨蝶呤与DNA的相互作用

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摘要

An in situ evaluation of the dsDNA-methotrexate (MTX) interaction was performed by voltammetry using a DNA-electrochemical biosensor and characterized by atomic force microscopy (AFM) at a highly oriented pyrolytic graphite (HOPG) surface. Electrochemical experiments in incubated solutions showed that the interaction of MTX with dsDNA leads to modifications to the dsDNA structure in a time-dependent manner. The AFM images show reorganization of the DNA self-assembled network on the surface of the HOPG electrode upon binding methotrexate and the formation of a more densely packed and slightly thicker MTX-dsDNA lattice with a large number of aggregates embedded into the network film. The intercalation of MTX between complementary base pairs of dsDNA lead to the increase of purine oxidation peaks due to the unwinding of the dsDNA. The dsDNA-electrochemical biosensor and the purinic homo-polynucleotide single stranded sequences of guanosine and adenosine, poly[G] and poly[A]-electrochemical biosensors, were used to investigate and understand the interaction between MTX and dsDNA.
机译:使用DNA电化学生物传感器通过伏安法对dsDNA-甲氨蝶呤(MTX)相互作用进行原位评估,并通过原子力显微镜(AFM)在高度定向的热解石墨(HOPG)表面进行表征。在温育溶液中进行的电化学实验表明,MTX与dsDNA的相互作用导致dsDNA结构的时间依赖性修饰。 AFM图像显示,在结合甲氨蝶呤后,HOPG电极表面的DNA自组装网络发生了重组,并形成了密度更高的包装和稍厚的MTX-dsDNA晶格,其中大量聚集体嵌入网络膜中。 dsDNA互补碱基对之间的MTX插入由于dsDNA的解链而导致嘌呤氧化峰的增加。 dsDNA-电化学生物传感器和鸟嘌呤和腺苷的嘌呤同多核苷酸单链序列,poly [G]和poly [A]-电化学生物传感器,用于研究和了解MTX与dsDNA之间的相互作用。

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