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Trapping of 27 bp-8 kbp DNA and immobilization of thiol-modified DNA using dielectrophoresis

机译:使用介电泳法捕获27 bp-8 kbp DNA并固定巯基修饰的DNA

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摘要

Dielectrophoretic trapping of six different DNA fragments, sizes varying from 27 to 8416 bp, has been studied using confocal microscopy. The effect of the DNA length and the size of the constriction between nanoscale fingertip electrodes on the trapping efficiency have been investigated. Using finite element method simulations in conjunction with the analysis of the experimental data, the polarizabilities of the different size DNA fragments have been calculated for different frequencies. Also the immobilization of trapped hexanethiol- and DTPA-modified 140 nm long DNA to the end of gold nanoelectrodes was experimentally quantified and the observations were supported by density functional theory calculations.
机译:共聚焦显微镜研究了六个不同的DNA片段的介电捕获,大小从27到8416 bp不等。已经研究了DNA长度和纳米级指尖电极之间的收缩部分的大小对捕集效率的影响。使用有限元方法模拟结合对实验数据的分析,已针对不同频率计算出了不同大小的DNA片段的极化率。此外,还可以通过实验对捕获的巯基硫醇和DTPA修饰的140 nm长DNA固定在金纳米电极末端进行固定,并通过密度泛函理论计算来支持观察。

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