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Materials for Fluorescence Resonance Energy Transfer Analysis: Beyond Traditional Donor-Acceptor Combinations

机译:用于荧光共振能量转移分析的材料:超越传统的供体-受体组合

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摘要

The use of F?rster or fluorescence resonance energy transfer (FRET) as a spectroscopic technique has been in practice for over 50 years. A search of ISI Web of Science with just the acronym FRET returns more than 2300 citations from various areas such as structural elucidation of biological molecules and their interactions, in vitro assays, in vivo monitoring in cellular research, nucleic acid analysis, signal transduction, light harvesting and metallic nanomaterials. The advent of new classes of fluorophores including nanocrystals, nanoparticles, polymers, and genetically encoded proteins, in conjunction with ever more sophisticated equipment, has been vital in this development. This review gives a critical overview of the major classes of fluorophore materials that may act as donor, acceptor, or both in a FRET configuration. We focus in particular on the benefits and limitations of these materials and their combinations, as well as the available methods of bioconjugation.
机译:在实践中使用Fsterer或荧光共振能量转移(FRET)作为光谱技术已有50多年的历史了。在ISI Web of Science中仅用首字母缩写FRET进行搜索就返回了来自各个领域的2300多次引用,例如生物分子的结构阐明及其相互作用,体外测定,细胞研究中的体内监测,核酸分析,信号转导,光收获和金属纳米材料。新型的荧光团的出现,包括纳米晶体,纳米颗粒,聚合物和遗传编码的蛋白质,再加上越来越复杂的设备,对这一发展至关重要。这篇综述对在FRET构型中可能充当供体,受体或两者兼有的荧光团材料的主要类别进行了严格的概述。我们特别关注这些材料及其组合的益处和局限性,以及可用的生物结合方法。

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