Cantitate/Preț
Produs

Artificially Controllable Nanodevices Constructed by DNA Origami Technology: Photofunctionalization and Single-Molecule Analysis: Springer Theses

Autor Yangyang Yang
en Limba Engleză Hardback – mar 2016
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 defined nanospace. It also shows the possibility of DNA nanostructures acting as nanodevices for application in biological systems, serving as a good introduction to basic DNA nanotechnology.
Citește tot Restrânge

Toate formatele și edițiile

Toate formatele și edițiile Preț Express
Paperback (1) 54527 lei  17-23 zile +4817 lei  7-11 zile
  Springer – 7 apr 2018 54527 lei  17-23 zile +4817 lei  7-11 zile
Hardback (1) 62426 lei  3-5 săpt.
  Springer – mar 2016 62426 lei  3-5 săpt.

Din seria Springer Theses

Preț: 62426 lei

Preț vechi: 73442 lei
-15% Nou

Puncte Express: 936

Preț estimativ în valută:
11946 12568$ 9891£

Carte disponibilă

Livrare economică 24 decembrie 24 - 07 ianuarie 25

Preluare comenzi: 021 569.72.76

Specificații

ISBN-13: 9784431557685
ISBN-10: 4431557687
Pagini: 100
Ilustrații: XIII, 76 p. 44 illus., 1 illus. in color.
Dimensiuni: 155 x 235 x 12 mm
Greutate: 0.33 kg
Ediția:1st ed. 2015
Editura: Springer
Colecția Springer
Seria Springer Theses

Locul publicării:Tokyo, Japan

Public țintă

Research

Cuprins

Introduction.- Direct observation of single hybridization and dissociation of photoresponsive oligonucleotides in the designed DNA nanostructure.- Direct observation of logic-gated dual-switching behaviors inducing the state transition in a DNA nanostructure.- Multi-directionally photo-controllable DNA nanostructure assembling reversibly in programmed patterns.- Arrangement of gold nanoparticles onto a slit-type DNA nanostructure in various patterns.

Textul de pe ultima copertă

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 defined nanospace. It also shows the possibility of DNA nanostructures acting as nanodevices for application in biological systems, serving as a good introduction to basic DNA nanotechnology.


Caracteristici

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 observation of dynamic activities of single biomolecules
Includes supplementary material: sn.pub/extras