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Direct measurement of the melting temperature of supported DNA by electrochemical method

机译:通过电化学方法直接测量支持的DNA的解链温度

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摘要

The development of biosensors based on DNA hybridization requires a more precise knowledge of the thermodynamics of the hybridization at a solid interface. In particular, the selectivity of hybridization can be affected by a lot of parameters such as the single-strand (ss)DNA density, the pH, the ionic strength or the temperature. The melting temperature, Tm, is in part a function of the ionic strength and of the temperature and therefore provides a useful variable in the control of the selectivity and sensitivity of a DNA chip. The electrochemical technique has been used to determine the Tm values when the probe is tethered by a DNA self-assembled monolayer (SAM). We have built a special thin layer cell, which allows the recording of the cyclic voltammogram under controlled temperature conditions. Tm has been determined by recording the thermogram (current versus temperature) of a redox indicator on a double-stranded hybrid (dsDNA) modified electrode and comparison with the corresponding ssDNA response. Tm of supported DNA varies linearly with the ionic strength. The stability of the SAMs has been considered and comparison between Tm in solution and on a solid support has been discussed.
机译:基于DNA杂交的生物传感器的开发要求对固体界面上杂交的热力学有更精确的了解。特别是,杂交的选择性会受到许多参数的影响,例如单链(ss)DNA密度,pH,离子强度或温度。熔解温度Tm部分地取决于离子强度和温度,因此提供了用于控制DNA芯片的选择性和灵敏度的有用变量。当探针被DNA自组装单层(SAM)束缚时,电化学技术已用于确定Tm值。我们建立了一个特殊的薄层电池,该电池可以在受控温度条件下记录循环伏安图。通过在双链杂交(dsDNA)修饰的电极上记录氧化还原指示剂的热分析图(电流对温度)并与相应的ssDNA响应进行比较来确定Tm。支持的DNA的Tm随离子强度线性变化。已经考虑了SAM的稳定性,并讨论了溶液中和固体支持物上Tm之间的比较。

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