By Yangyang Yang
In this publication, the writer bargains typically with issues: (1) single-molecule visualization of switching behaviors within the DNA nanoframe process using other forms of molecular switches by using high-speed atomic strength microscope (AFM); (2) development of photocontrollable DNA nanostructures in programmed styles and direct visualization of the dynamic assembling method. right here, high-speed AFM was once hired to watch the dynamic activities of unmarried molecules. in comparison to a conventional single-molecule research approach, similar to fluorescence spectroscopy or electron microscopy, high-speed AFM makes attainable the real-time statement of molecule behaviors. DNA nanostructures have been designed and assembled as scaffolds to include biomolecules. The observations have been conducted less than strong stipulations with out complex pretreatment. furthermore, the photoresponsive molecules have been effectively assembled into round a hundred nm-sized DNA nanostructures. The assembly/disassembly of nanostructures might be regulated reversibly through photoirradiation. This e-book explains how DNA origami has steadily develop into a useful gizmo for the research of biochemical interactions in outlined nanospace. It additionally indicates the potential of DNA nanostructures performing as nanodevices for software in organic structures, serving as an excellent advent to uncomplicated DNA nanotechnology.
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Additional info for Artificially Controllable Nanodevices Constructed by DNA Origami Technology: Photofunctionalization and Single-Molecule Analysis (Springer Theses)
Artificially Controllable Nanodevices Constructed by DNA Origami Technology: Photofunctionalization and Single-Molecule Analysis (Springer Theses) by Yangyang Yang