柔軟なコロイド結晶における刺激反応性DNA結合の収縮と膨張
Jarad A Mason1, Christine R Laramy1, Cheng-Tsung Lai1
1Department of Chemistry, ‡International Institute for Nanotechnology, §Department of Chemical and Biological Engineering, and ∥Department of Materials Science and Engineering, Northwestern University , Evanston, Illinois 60208, United States.
Journal of the American Chemical Society
|July 13, 2016
まとめ
DNA結合は ナノ粒子超網を制御する エタノールを加えると結合長と安定性が動的に調整され,調節可能な体積と強化された熱特性を持つ刺激に反応する格子が可能になります.
科学分野:
- 材料科学
- ナノテクノロジー
- 生物化学
背景:
- DNAの表面リガンドは,ナノ粒子を結晶の超網状にプログラム可能な組み立てを可能にします.
- 超グリッド構造を動的に制御することは,高度な材料アプリケーションにとって極めて重要です.
研究 の 目的:
- 地元の介電定数の変化に対するDNA結合の反応を調査する.
- ナノ粒子超網構造を動的に調節する刺激としてエタノール (EtOH) を探求する.
主な方法:
- 介電常数変化に対するDNA結合反応の研究
- エタノール添加を用いて DNA結合の長さと安定性を変化させる.
- ボリュームの膨張/収縮の測定を用いて超格子構造の変化を分析する.
主要な成果:
- エタノールで制御可能なDNA結合長さは16から3nmです.
- DNA結合の安定性は40°C以上増加した.
- エタノールの臨界濃度で75%までの協同体積変化を示した.
結論:
- DNA結合は本質的に介電常数変化に反応し,超格子構造にダイナミックな制御を提供します.
- エタノール添加は刺激に反応するナノ粒子格子を作るための簡単な方法を提供します.
- このアプローチは熱的安定性を高め,高体積の分子を入手できます.
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