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首页> 外文期刊>ACS nano >Single molecule atomic force microscopy studies of photosensitized singlet oxygen behavior on a DNA origami template
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Single molecule atomic force microscopy studies of photosensitized singlet oxygen behavior on a DNA origami template

机译:DNA折纸模板上光敏单线态氧行为的单分子原子力显微镜研究

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摘要

DNA origami, the folding of a long single-stranded DNA sequence (scaffold strand) by hundreds of short synthetic oligonucleotides (staple strands) into parallel aligned helices, is a highly efficient method to form advanced self-assembled DNA-architectures. Since molecules and various materials can be conjugated to each of the short staple strands, the origami method offers a unique possibility of arranging molecules and materials in well-defined positions on a structured surface. Here we combine the action of light with AFM and DNA nanostructures to study the production of singlet oxygen from a single photosensitizer molecule conjugated to a selected DNA origami staple strand on an origami structure. We demonstrate a distance-dependent oxidation of organic moieties incorporated in specific positions on DNA origami by singlet oxygen produced from a single photosensitizer located at the center of each origami.
机译:DNA折纸是将数百条短的合成寡核苷酸(主链)折叠成一条长条单链DNA序列(支架链)成平行排列的螺旋,是形成高级自组装DNA结构的高效方法。由于分子和各种材料都可以结合到每条短短链上,因此折纸方法提供了将分子和材料排列在结构化表面上明确定义的位置上的独特可能性。在这里,我们将光与AFM和DNA纳米结构的作用结合起来,研究由单光敏剂分子与折纸结构上选定的DNA折纸钉书钉链缀合产生的单线态氧。我们证明了由在每个折纸中心的单个光敏剂产生的单线态氧在DNA折纸上的特定位置上结合的有机部分的距离依赖性氧化。

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