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Förster resonance energy transfer-based biosensing platform with ultrasmall silver nanoclusters as energy acceptors

机译:基于Förster共振能量转移的生物传感平台,具有超小银纳米团簇作为能量受体

摘要

We studied the energy transfer (ET) property of ultrasmall Ag nanoclusters (Ag NCs) and exploited its biosensing application for the first time. A hybridized DNA duplex model was designed to study the energy transfer process from fluorescent energy donors to Ag NCs. By changing the DNA duplex model and the number of hybridized pairs, the separation distance between the energy donor and Ag NCs was adjusted to investigate the distance dependence and possible mechanisms involved in the ET process, which was assigned to Förster resonance energy transfer (FRET). Using Ag NCs with different photophysical properties as energy acceptors, FRET-based biosensing platforms with two different energy donors were constructed utilizing either the off-on or ratiometric fluorescence signaling. This study will provide the basis for understanding energy transfer properties of Ag NCs and bring to light the universal application of these properties in bio/chemo sensing.
机译:我们研究了超小型Ag纳米团簇(Ag NCs)的能量转移(ET)特性,并首次利用了其生物传感应用。设计了杂交DNA双链体模型来研究从荧光能量供体到Ag NCs的能量转移过程。通过改变DNA双链体模型和杂交对的数量,调节了能量供体和Ag NCs之间的分离距离,以研究ET过程涉及的距离依赖性和可能的​​机制,并将其分配给Förster共振能量转移(FRET) 。使用具有不同光物理特性的Ag NC作为能量受体,利用关闭或比例荧光信号构建了具有两个不同能量供体的基于FRET的生物传感平台。这项研究将为理解Ag NCs的能量转移特性提供基础,并揭示这些特性在生物/化学传感中的普遍应用。

著录项

  • 作者

    Xiao Y; Shu F; Wong KY; Liu Z;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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