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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Global Analysis of Fluorescence Decays to Probe the Internal Dynamics of Fluorescently Labeled Macromolecules
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Global Analysis of Fluorescence Decays to Probe the Internal Dynamics of Fluorescently Labeled Macromolecules

机译:荧光衰变的整体分析,以探测荧光标记的大分子的内部动力学

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摘要

The aim of this review is to introduce the reader first to the mathematical complexity associated with the analysis of fluorescence decays acquired with solutions of macromolecules labeled with a fluorophore and its quencher that are capable of interacting with each other via photophysical processes within the macromolecular volume, second to the experimental and mathematical approaches that have been proposed over the years to handle this mathematical complexity, and third to the information that one can expect to retrieve with respect to the internal dynamics of such fluorescently labeled macromolecules. In my view, the ideal fluorophore-quencher pair to use in studying the internal dynamics of fluorescently labeled macromolecules would involve a long-lived fluorophore, a fluorophore and a quencher that do not undergo energy migration, and a photophysical process that results in a change in fluorophore emission upon contact between the excited fluorophore and quencher. Pyrene, with its ability to form an excimer on contact between excited-state and ground-state species, happens to possess all of these properties. Although the concepts described in this review apply to any fluorophore and quencher pair sharing pyrene's exceptional photophysical properties, this review focuses on the study of pyrene-labeled macromolecules that have been characterized in great detail over the past 40 years and presents the main models that are being used today to analyze the fluorescence decays of pyrene-labeled macromolecules reliably. These models are based on Birks' scheme, the DMD model, the fluorescence blob model, and the model free analysis. The review also provides a step-by-step protocol that should enable the noneducated user to achieve a successful decay analysis exempt of artifacts. Finally, some examples of studies of pyrene-labeled macromolecules are also presented to illustrate the different types of information that can be retrieved from these fluorescence decay analyses depending on the model that is selected.
机译:这篇综述的目的是首先向读者介绍与分析通过荧光团标记的大分子溶液及其猝灭剂而获得的荧光衰减分析相关的数学复杂性,这些溶液能够通过大分子体积内的光物理过程相互影响,第二,是多年来为解决这种数学复杂性而提出的实验和数学方法,第三,是人们可以期望获得的有关荧光标记大分子内部动力学的信息。在我看来,用于研究荧光标记的大分子内部动力学的理想荧光团-猝灭剂对将涉及长寿命的荧光团,不经历能量迁移的荧光团和猝灭剂,以及导致改变的光物理过程。在激发的荧光团和猝灭剂之间接触时,荧光团发射。 excited具有在激发态和基态物质接触时形成受激准分子的能力,恰好拥有所有这些特性。尽管本综述中描述的概念适用于共享sharing具有出色光物理性质的任何荧光团和猝灭剂对,但本综述着重研究of标记的大分子,该分子在过去40年中进行了详细描述,并提供了主要模型。如今已用于可靠地分析pyr标记的大分子的荧光衰减。这些模型基于Birks方案,DMD模型,荧光斑点模型和无模型分析。审查还提供了一个分步协议,该协议应使没有受过教育的用户能够成功进行衰变分析,从而免除伪影。最后,还提供了一些of标记的大分子研究实例,以说明根据所选模型可以从这些荧光衰减分析中检索到的不同类型的信息。

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