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  4. Bio-orthogonal Red and Far-Red Fluorogenic Probes for Wash-Free Live-Cell and Super-resolution Microscopy
 
research article

Bio-orthogonal Red and Far-Red Fluorogenic Probes for Wash-Free Live-Cell and Super-resolution Microscopy

Werther, Philipp
•
Yserentant, Klaus
•
Braun, Felix
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September 22, 2021
Acs Central Science

Small-molecule fluorophores enable the observation of biomolecules in their native context with fluorescence microscopy. Specific labeling via bio-orthogonal tetrazine chemistry combines minimal label size with rapid labeling kinetics. At the same time, fluorogenic tetrazine-dye conjugates exhibit efficient quenching of dyes prior to target binding. However, live-cell compatible long-wavelength fluorophores with strong fluorogenicity have been difficult to realize. Here, we report close proximity tetrazine-dye conjugates with minimal distance between tetrazine and the fluorophore. Two synthetic routes give access to a series of cell-permeable and -impermeable dyes including highly fluorogenic far-red emitting derivatives with electron exchange as the dominant excited-state quenching mechanism. We demonstrate their potential for live-cell imaging in combination with unnatural amino acids, wash-free multicolor and super-resolution STED, and SOFI imaging. These dyes pave the way for advanced fluorescence imaging of biomolecules with minimal label size.

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Type
research article
DOI
10.1021/acscentsci.1c00703
Web of Science ID

WOS:000700884500016

Author(s)
Werther, Philipp
Yserentant, Klaus
Braun, Felix
Grussmayer, Kristin  
Navikas, Vytautas  
Yu, Miao
Zhang, Zhibin
Ziegler, Michael J.
Mayer, Christoph
Gralak, Antoni J.
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Date Issued

2021-09-22

Published in
Acs Central Science
Volume

7

Issue

9

Start page

1561

End page

1571

Subjects

Chemistry, Multidisciplinary

•

Chemistry

•

tetrazine probes

•

mammalian-cells

•

fluorophore

•

strategy

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LBEN  
UPABLASSER  
Available on Infoscience
October 9, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/182080
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