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Single-molecule FRET experiments with a red-enhanced custom technology SPAD

机译:使用红色增强的自定义技术SPAD的单分子FRET实验

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Single-molecule fluorescence spectroscopy of freely diffusing molecules in solution is a powerful tool used to investigate the properties of individual molecules. Single-Photon Avalanche Diodes (SPADs) are the detectors of choice for these applications. Recently a new type of SPAD detector was introduced, dubbed red-enhanced SPAD (RE-SPAD), with good sensitivity throughout the visible spectrum and with excellent timing performance. We report a characterization of this new detector for single-molecule fluorescence resonant energy transfer (smFRET) studies on freely diffusing molecules in a confocal geometry and alternating laser excitation (ALEX) scheme. We use a series of doubly-labeled DNA molecules with donor-to-acceptor distances covering the whole range of useful FRET values. Both intensity-based (μs-ALEX) and lifetime-based (ns-ALEX) measurements are presented and compared to identical measurements performed with standard thick SPADs. Our results demonstrate the great potential of this new detector for smFRET measurements and beyond.
机译:溶液中自由扩散分子的单分子荧光光谱法是用于研究单个分子特性的强大工具。单光子雪崩二极管(SPAD)是这些应用的首选检测器。最近,推出了一种新型的SPAD检测器,称为红色增强SPAD(RE-SPAD),在整个可见光谱范围内具有良好的灵敏度,并且具有出色的定时性能。我们报告了这种新的检测器的特征,用于在共焦几何形状和交替激光激发(ALEX)方案中自由扩散分子的单分子荧光共振能量转移(smFRET)研究。我们使用一系列双标记的DNA分子,其供体到受体的距离涵盖了有用的FRET值的整个范围。提出了基于强度的(μs-ALEX)和基于寿命的(ns-ALEX)测量,并将其与使用标准厚SPAD进行的相同测量进行了比较。我们的结果证明了这种新型探测器在smFRET测量及其他方面的巨大潜力。

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