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Advanced imaging for DNA analysis based on scanning near-field optical/atomic-force microscopy (SNOAM)

机译:基于扫描近场光学/原子力显微镜(SNOAM)的DNA分析高级成像

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Abstract: Scanning near-field optical/atomic-force microscopy was first applied to detect fluorescence hybridization of DNA immobilized on nano-particle media. Hybridization can also be used to determine the sequence of unknown DNA. 100-nm in diameter of polystyrene sphere carboxylate was used as the nano-particle media. Template DNA including target sequence was chemically modified with animo group at the 5'-end of single-stranded DNA. Amine-coupling reaction made covalent bond between template DNA and carboxyl group on the surface of the media. Single-stranded DNA of specific base sequence labeled either fluorescent dye, that is used to detect the complementary base sequence by hybridization. Simultaneous imaging the colloidal particles showed us topography and near-field fluorescence images of them. All particles were observed in the topographic image, however, some particles were realized in the fluorescence image. This result indicated that fluorescent hybridized DNAs on the surface of the media were visualized specifically. High density arrays or integration of media is a fast and effective means of accessing the gene variation. However, in this study, detection of hybridized fluorescent DNA conjugated with particle is a major purpose rather than arrangement technique.!8
机译:摘要:扫描近场光学/原子力显微镜首次用于检测固定在纳米颗粒介质上的DNA的荧光杂交。杂交也可以用于确定未知DNA的序列。直径为100 nm的聚苯乙烯球体羧酸盐用作纳米颗粒介质。用单链DNA 5'末端的animo基化学修饰包含靶序列的模板DNA。胺偶联反应使模板DNA与介质表面的羧基共价键合。特定碱基序列的单链DNA标记为荧光染料,用于通过杂交检测互补碱基序列。同时成像的胶体粒子显示了我们的地形和近场荧光图像。在形貌图像中观察到所有颗粒,但是在荧光图像中发现了一些颗粒。该结果表明,在介质表面上的荧光杂交DNA被特异性地可视化了。高密度阵列或培养基整合是访问基因变异的快速有效手段。然而,在这项研究中,检测与粒子缀合的杂交荧光DNA是主要目的,而不是排列技术。8

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