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Developing FRET Networks for Sensing

delete2022-06-13
delete14
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OA
AI
W
W. Russ Algar *
K
Katherine D. Krause
DOI:10.1146/annurev-anchem-061020-014925delete
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摘要

摘要

En 中文
Forster resonance energy transfer (FRET) is a widely used fluorescence-based sensing mechanism. To date, most implementations of FRET sensors have relied on a discrete donor-acceptor pair for detection of each analytical target. FRET networks are an emerging concept in which target recognition perturbs a set of interconnected FRET pathways between multiple emitters. Here, we review the energy transfer topologies and scaffold materials for FRET networks, propose a general nomenclature, and qualitatively summarize the dynamics of the competitive, sequential, homoFRET, and heteroFRET pathways that constitute FRET networks. Implementations of FRET networks for sensing are also described, including concentric FRET probes, other single-vector multiplexing, and logic gates and switches. Unresolved questions and future research directions for current systems are discussed, as are potential but currently unexplored applications of FRET networks in sensing.
Keyword:
DNA nanostructures
Forster resonance energy transfer
logic gates
multiplexed detection
quantum dots

期刊

Annual Review of Analytical Chemistry 封面图
Annual Review of Analytical Chemistry
IF:
7.5
论文数:
394
被引数:
2.7K

机构

U
University of British Columbia
学者数:
7.0W
论文数: 6.1W
被引数: 8.6W