Novel red fluorophores with superior performance in STED microscopy

In optical microscopy, most red-emitting dyes provide only moderate performance due to unspecific binding, poor labeling efficiency, and insufficient brightness. Here we report on four novel red fluororescent dyes, including the first phosphorylated dye, created by combining a rigidized rhodamine ba...

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Autores principales: Wurm, C.A., Kolmakov, K., Göttfert, F., Ta, H., Bossi, M., Schill, H., Berning, S., Jakobs, S., Donnert, G., Belov, V.N., Hell, S.W.
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_21922853_v1_n1_p1_Wurm
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spelling todo:paper_21922853_v1_n1_p1_Wurm2023-10-03T16:40:20Z Novel red fluorophores with superior performance in STED microscopy Wurm, C.A. Kolmakov, K. Göttfert, F. Ta, H. Bossi, M. Schill, H. Berning, S. Jakobs, S. Donnert, G. Belov, V.N. Hell, S.W. Bioconjugation Confocal Fluorescence Microscopy Nanoscopy Rhodamines STED Stimulated emission depletion Super-resolution Bio-conjugation Confocal Nanoscopy Rhodamines STED Stimulated emission depletion Super resolution Fluorescence Fluorescence microscopy Fluorophores Microscopic examination Optical microscopy Phosphorylation Quantum yield Stimulated emission In optical microscopy, most red-emitting dyes provide only moderate performance due to unspecific binding, poor labeling efficiency, and insufficient brightness. Here we report on four novel red fluororescent dyes, including the first phosphorylated dye, created by combining a rigidized rhodamine backbone with various polar groups. They exhibit large fluorescence quantum yields and improved NHS ester stability. While these fluorophores are highly suitable for fluorescence microscopy in general, they excel in stimulated emission depletion (STED) microscopy, providing < 25 nm spatial resolution in raw images of cells. © 2012 Wurm et al. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_21922853_v1_n1_p1_Wurm
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Bioconjugation
Confocal
Fluorescence
Microscopy
Nanoscopy
Rhodamines
STED
Stimulated emission depletion
Super-resolution
Bio-conjugation
Confocal
Nanoscopy
Rhodamines
STED
Stimulated emission depletion
Super resolution
Fluorescence
Fluorescence microscopy
Fluorophores
Microscopic examination
Optical microscopy
Phosphorylation
Quantum yield
Stimulated emission
spellingShingle Bioconjugation
Confocal
Fluorescence
Microscopy
Nanoscopy
Rhodamines
STED
Stimulated emission depletion
Super-resolution
Bio-conjugation
Confocal
Nanoscopy
Rhodamines
STED
Stimulated emission depletion
Super resolution
Fluorescence
Fluorescence microscopy
Fluorophores
Microscopic examination
Optical microscopy
Phosphorylation
Quantum yield
Stimulated emission
Wurm, C.A.
Kolmakov, K.
Göttfert, F.
Ta, H.
Bossi, M.
Schill, H.
Berning, S.
Jakobs, S.
Donnert, G.
Belov, V.N.
Hell, S.W.
Novel red fluorophores with superior performance in STED microscopy
topic_facet Bioconjugation
Confocal
Fluorescence
Microscopy
Nanoscopy
Rhodamines
STED
Stimulated emission depletion
Super-resolution
Bio-conjugation
Confocal
Nanoscopy
Rhodamines
STED
Stimulated emission depletion
Super resolution
Fluorescence
Fluorescence microscopy
Fluorophores
Microscopic examination
Optical microscopy
Phosphorylation
Quantum yield
Stimulated emission
description In optical microscopy, most red-emitting dyes provide only moderate performance due to unspecific binding, poor labeling efficiency, and insufficient brightness. Here we report on four novel red fluororescent dyes, including the first phosphorylated dye, created by combining a rigidized rhodamine backbone with various polar groups. They exhibit large fluorescence quantum yields and improved NHS ester stability. While these fluorophores are highly suitable for fluorescence microscopy in general, they excel in stimulated emission depletion (STED) microscopy, providing < 25 nm spatial resolution in raw images of cells. © 2012 Wurm et al.
format JOUR
author Wurm, C.A.
Kolmakov, K.
Göttfert, F.
Ta, H.
Bossi, M.
Schill, H.
Berning, S.
Jakobs, S.
Donnert, G.
Belov, V.N.
Hell, S.W.
author_facet Wurm, C.A.
Kolmakov, K.
Göttfert, F.
Ta, H.
Bossi, M.
Schill, H.
Berning, S.
Jakobs, S.
Donnert, G.
Belov, V.N.
Hell, S.W.
author_sort Wurm, C.A.
title Novel red fluorophores with superior performance in STED microscopy
title_short Novel red fluorophores with superior performance in STED microscopy
title_full Novel red fluorophores with superior performance in STED microscopy
title_fullStr Novel red fluorophores with superior performance in STED microscopy
title_full_unstemmed Novel red fluorophores with superior performance in STED microscopy
title_sort novel red fluorophores with superior performance in sted microscopy
url http://hdl.handle.net/20.500.12110/paper_21922853_v1_n1_p1_Wurm
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AT kolmakovk novelredfluorophoreswithsuperiorperformanceinstedmicroscopy
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AT tah novelredfluorophoreswithsuperiorperformanceinstedmicroscopy
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AT schillh novelredfluorophoreswithsuperiorperformanceinstedmicroscopy
AT bernings novelredfluorophoreswithsuperiorperformanceinstedmicroscopy
AT jakobss novelredfluorophoreswithsuperiorperformanceinstedmicroscopy
AT donnertg novelredfluorophoreswithsuperiorperformanceinstedmicroscopy
AT belovvn novelredfluorophoreswithsuperiorperformanceinstedmicroscopy
AT hellsw novelredfluorophoreswithsuperiorperformanceinstedmicroscopy
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