Artificially Controllable Nanodevices Constructed by DNA Origami Technology: Photofunctionalization and Single-Molecule Analysis (Springer Theses)
暫譯: 利用DNA摺紙技術構建的可人工控制奈米裝置:光功能化與單分子分析(Springer論文集)
Yangyang Yang
- 出版商: Springer
- 出版日期: 2016-03-02
- 售價: $4,200
- 貴賓價: 9.5 折 $3,990
- 語言: 英文
- 頁數: 76
- 裝訂: Hardcover
- ISBN: 4431557687
- ISBN-13: 9784431557685
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商品描述
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.
商品描述(中文翻譯)
在本書中,作者主要探討兩個主題:(1) 利用高速原子力顯微鏡 (AFM) 觀察 DNA 奈米框架系統中不同類型分子開關的開關行為的單分子可視化;(2) 在程式化模式中構建光控 DNA 奈米結構並直接可視化動態組裝過程。在這裡,高速 AFM 被用來觀察單分子的動態運動。與傳統的單分子分析方法(如螢光光譜或電子顯微鏡)相比,高速 AFM 使得分子行為的實時觀察成為可能。DNA 奈米結構被設計並組裝成支架,以納入感興趣的生物分子。觀察是在穩健的條件下進行,無需複雜的前處理。此外,光響應分子成功組裝成約 100 nm 大小的 DNA 奈米結構。奈米結構的組裝/拆卸可以通過光照射可逆地調節。本書解釋了 DNA 摺紙如何逐漸成為研究定義奈米空間中生化相互作用的有用工具。它還展示了 DNA 奈米結構作為生物系統應用的奈米裝置的可能性,並作為基本 DNA 奈米技術的良好入門。