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首页> 外文期刊>IEEE transactions on nanobioscience >Light-Induced In Situ Patterning of DNA-Tagged Biomolecules and Nanoparticles
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Light-Induced In Situ Patterning of DNA-Tagged Biomolecules and Nanoparticles

机译:DNA标记的生物分子和纳米粒子的光诱导原位图案。

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We present an in situ method for the selective manipulation of DNA-tagged nano-objects such as vesicles or gold colloids in aqueous solution, at neutral pH. The method makes use of the photosensitizer concept found in photodynamic therapy. Here, single-stranded DNA is immobilized onto a surface via the biotin/streptavidin linkage. If the streptavidin is fluorescently labeled, reactive species will be created during laser-induced photobleaching of the label. These reactive species can then completely or partly suppress the DNA hybridization and cause the removal of the streptavidin. The technique thereby enables a dynamic on–off control over surface density of immobilized DNA-tagged nano-objects. Furthermore, combining this in situ manipulation of DNA with prepatterning of single-stranded DNA in the micro and later in the nano range provides a means for the dynamic patterning required for applications in biosensing and nanotechnology.
机译:我们提出一种在中性pH值下选择性处理DNA标记的纳米物体(例如,囊泡或金胶体)在水溶液中的原位方法。该方法利用了光动力疗法中发现的光敏剂概念。在此,单链DNA通过生物素/链霉亲和素键被固定在表面上。如果对链霉亲和素进行了荧光标记,则在激光诱导的标记光漂白过程中会产生反应性物种。然后,这些反应性物种可以完全或部分抑制DNA杂交并导致链霉亲和素的去除。因此,该技术可以动态地控制固定了DNA标签的纳米物体的表面密度。此外,将DNA的这种原位处理与微米级以及后来在纳米范围内的单链DNA的预构图相结合,为在生物传感和纳米技术中应用所需的动态构图提供了一种手段。

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