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首页> 外文期刊>Analytical Sciences >A Pivot-Hinge-Style DNA Immobilization Method with Adaptable Surface Concentration Based on Oligodeoxynucleotide-Phosphorothioate Chemisorption on Gold Surfaces
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A Pivot-Hinge-Style DNA Immobilization Method with Adaptable Surface Concentration Based on Oligodeoxynucleotide-Phosphorothioate Chemisorption on Gold Surfaces

机译:基于寡聚寡核苷酸 - 硫代磷酸酯化学酸化学素的枢轴 - 铰链式DNA固定方法,基于寡脱氧核苷酸 - 硫代磷酸酯的金表面

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The chemisorption of oligodeoxynucleotide phosphorothioate (s-oligo) is reported. A series of s-oligo DNAs was designed for use as capture probe DNA molecules. The s-oligo DNAs consist of the K-ras gene (5′-GGA GCT GGT GGC-3′) and a dodecamer deoxyriboadenosine, both of which lie on either side of an s-oligo DNA sequence. By primarily focusing on the capture probe DNA having five-successive s-oligo sequences, e37, the immobilization chemistry of e37 was examined; atomic force microscopy achieved the direct visualization of individual molecules on Au(111) substrates, while a series of surface analyses, including IR, ellipsometry, and microgravimetry, showed that the s-oligo functional groups played a pivotal role in the surface-adlayer through the gold-thiol interaction. Interestingly, the amount of immobilization showed a definite relationship with the number of s-oligo linkages introduced, which should be important to regulate the concentration of the capture probe DNA molecules on the surface. Some preliminary studies using ferrocene-modified complementary sequences indicated that electrochemical labeling and readouts were possible.
机译:据报道了寡脱氧核苷酸磷酸核苷酸(S-寡核苷酸)的化学吸附。一系列S-Oligo DNA设计用于捕获探针DNA分子。 S-寡核苷酸DNA由K-RAS基因(5'-GGA GCT GGT GGC-3')和Doxymer DeoxyiboOdenOine,两者位于S-寡核苷酸DNA序列的任一侧。通过主要专注于具有五连续S-寡核苷酸序列的捕获探针DNA,E37,检查E37的固定化学化学;原子力显微镜达到Au(111)衬底上的单个分子的直接可视化,而一系列表面分析包括IR,椭偏测量和微血症,表明S-寡核苷酸官能团在表面 - adlayer中发挥了枢轴作用金 - 硫醇相互作用。有趣的是,固定量与引入的S-Oligo键的数量显示出明确的关系,这对于调节表面上捕获探针DNA分子的浓度应该是重要的。使用二茂铁改性互补序列的一些初步研究表明,电化学标记和读数是可能的。

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