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Titlebook: Artificially Controllable Nanodevices Constructed by DNA Origami Technology; Photofunctionalizati Yangyang Yang Book 2015 Springer Japan 20

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期刊全稱Artificially Controllable Nanodevices Constructed by DNA Origami Technology
期刊簡稱Photofunctionalizati
影響因子2023Yangyang Yang
視頻videohttp://file.papertrans.cn/163/162734/162734.mp4
發(fā)行地址Nominated by Kyoto University as an outstanding Ph.D. thesis.Introduces detailed protocols of larger-sized DNA origami assembling and especially photo functionalization.Presents new methods for the ob
學科分類Springer Theses
圖書封面Titlebook: Artificially Controllable Nanodevices Constructed by DNA Origami Technology; Photofunctionalizati Yangyang Yang Book 2015 Springer Japan 20
影響因子.In this book, the author deals mainly with two topics: (1) single-molecule visualization of switching behaviors in the DNA nanoframe system utilizing different kinds of molecular switches through the use of high-speed atomic force microscope (AFM); (2) construction of photocontrollable DNA nanostructures in programmed patterns and direct visualization of the dynamic assembling process. Here, high-speed AFM was employed to observe the dynamic movements of single molecules. Compared to a traditional single-molecule analysis method, such as fluorescence spectroscopy or electron microscopy, high-speed AFM makes possible the real-time observation of molecule behaviors. DNA nanostructures were designed and assembled as scaffolds to incorporate interested biomolecules. The observations were carried out under robust conditions without complicated pretreatment. Moreover, the photoresponsive molecules were successfully assembled into around 100 nm-sized DNA nanostructures. The assembly/disassembly of nanostructures can be regulated reversibly by photoirradiation. This book explains how DNA origami has gradually become a useful tool for the investigation of biochemical interactions in define
Pindex Book 2015
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Direct Observation of Logic-Gated Dual-Switching Behaviors Inducing the State Transition in a DNA Nition in real time by high-speed atomic force microscopy. Here, two DNA motifs: a pair of azobenzene modified pseudocomplementary photoresponsive oligonucleotides and another pair of G-telomeric repeats for G-quadruplex, were introduced together into three parallel double-stranded DNA (dsDNAs) assem
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Arrangement of Gold Nanoparticles onto a Slit-Type DNA Nanostructure in Various Patterns,taple strands in predesigned positions, which was employed for the assembly of AuNPs in various patterns. The AuNPs were correctly organized on the slit cavity and the nanostructures were characterized by atomic force microscopy (AFM) successfully.
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Artificially Controllable Nanodevices Constructed by DNA Origami Technology978-4-431-55769-2Series ISSN 2190-5053 Series E-ISSN 2190-5061
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