Pensa Evangelina, Bogawat Yash, Simmel Friedrich C, Santiago Ibon
Physics Department and ZNN Technische Universität München Am Coulombwall 4a 85748 Garching Germany.
ChemElectroChem. 2022 Feb 24;9(4):e202101696. doi: 10.1002/celc.202101696. Epub 2022 Feb 17.
DNA has emerged as the material of choice for producing supramolecular building blocks of arbitrary geometry from the 'bottom up'. Characterisation of these structures via electron or atomic force microscopy usually requires their surface immobilisation. In this work, we developed a nanoimpact electrochemistry platform to detect DNA self-assembled origami structures in solution, using the intercalator methylene blue as a redox probe. Here, we report the electrochemical detection of single DNA origami collisions at Pt microelectrodes. Our work paves the way towards the characterisation of DNA nanostructures in solution via nanoimpact electrochemistry.
DNA已成为通过“自下而上”方式生产任意几何形状超分子构建块的首选材料。通过电子显微镜或原子力显微镜对这些结构进行表征通常需要将其固定在表面。在这项工作中,我们开发了一种纳米冲击电化学平台,以嵌入剂亚甲基蓝作为氧化还原探针,检测溶液中的DNA自组装折纸结构。在此,我们报告了在铂微电极上对单个DNA折纸碰撞的电化学检测。我们的工作为通过纳米冲击电化学表征溶液中的DNA纳米结构铺平了道路。