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Keto-polymethines: a versatile class of dyes with outstanding spectroscopic properties for in cellulo and in vivo two-photon microscopy imaging

The synthesis of keto-heptamethine derivatives has been expanded to various new symmetrical and asymmetrical structures, including an unprecedented di-anionic keto-polymethine. The spectroscopic behavior of these new dyes has been systematically and thoroughly investigated, revealing that the format...

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Autores principales: Pascal, Simon, Denis-Quanquin, Sandrine, Appaix, Florence, Duperray, Alain, Grichine, Alexei, Le Guennic, Boris, Jacquemin, Denis, Cuny, Jérôme, Chi, San-Hui, Perry, Joseph W., van der Sanden, Boudewijn, Monnereau, Cyrille, Andraud, Chantal, Maury, Olivier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5365052/
https://www.ncbi.nlm.nih.gov/pubmed/28451183
http://dx.doi.org/10.1039/c6sc02488b
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author Pascal, Simon
Denis-Quanquin, Sandrine
Appaix, Florence
Duperray, Alain
Grichine, Alexei
Le Guennic, Boris
Jacquemin, Denis
Cuny, Jérôme
Chi, San-Hui
Perry, Joseph W.
van der Sanden, Boudewijn
Monnereau, Cyrille
Andraud, Chantal
Maury, Olivier
author_facet Pascal, Simon
Denis-Quanquin, Sandrine
Appaix, Florence
Duperray, Alain
Grichine, Alexei
Le Guennic, Boris
Jacquemin, Denis
Cuny, Jérôme
Chi, San-Hui
Perry, Joseph W.
van der Sanden, Boudewijn
Monnereau, Cyrille
Andraud, Chantal
Maury, Olivier
author_sort Pascal, Simon
collection PubMed
description The synthesis of keto-heptamethine derivatives has been expanded to various new symmetrical and asymmetrical structures, including an unprecedented di-anionic keto-polymethine. The spectroscopic behavior of these new dyes has been systematically and thoroughly investigated, revealing that the formation of hydrogen bond interactions with protic solvents is responsible for a dramatic enhancement of the fluorescence quantum yield in the far-red spectral region. The existence of these strong hydrogen-bond interactions was further confirmed by molecular dynamics simulations. These bis-dipolar polymethines exhibit large two-photon absorption (TPA) cross-sections (σ (2) in GM) in the near-infrared, making them ideal candidates for NIR-to-NIR two-photon microscopy imaging applications. We demonstrate that the molecular engineering of the hydrophilic/hydrophobic balance enables targeting of different cellular components, such as cytoplasm or cell membranes. Addition of appropriate substituents provides the molecule with high-water-solubility, affording efficient two-photon probes for angiography.
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spelling pubmed-53650522017-04-27 Keto-polymethines: a versatile class of dyes with outstanding spectroscopic properties for in cellulo and in vivo two-photon microscopy imaging Pascal, Simon Denis-Quanquin, Sandrine Appaix, Florence Duperray, Alain Grichine, Alexei Le Guennic, Boris Jacquemin, Denis Cuny, Jérôme Chi, San-Hui Perry, Joseph W. van der Sanden, Boudewijn Monnereau, Cyrille Andraud, Chantal Maury, Olivier Chem Sci Chemistry The synthesis of keto-heptamethine derivatives has been expanded to various new symmetrical and asymmetrical structures, including an unprecedented di-anionic keto-polymethine. The spectroscopic behavior of these new dyes has been systematically and thoroughly investigated, revealing that the formation of hydrogen bond interactions with protic solvents is responsible for a dramatic enhancement of the fluorescence quantum yield in the far-red spectral region. The existence of these strong hydrogen-bond interactions was further confirmed by molecular dynamics simulations. These bis-dipolar polymethines exhibit large two-photon absorption (TPA) cross-sections (σ (2) in GM) in the near-infrared, making them ideal candidates for NIR-to-NIR two-photon microscopy imaging applications. We demonstrate that the molecular engineering of the hydrophilic/hydrophobic balance enables targeting of different cellular components, such as cytoplasm or cell membranes. Addition of appropriate substituents provides the molecule with high-water-solubility, affording efficient two-photon probes for angiography. Royal Society of Chemistry 2017-01-01 2016-08-03 /pmc/articles/PMC5365052/ /pubmed/28451183 http://dx.doi.org/10.1039/c6sc02488b Text en This journal is © The Royal Society of Chemistry 2016 https://creativecommons.org/licenses/by/3.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution 3.0 Unported License (http://creativecommons.org/licenses/by/3.0/ (https://creativecommons.org/licenses/by/3.0/) ) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Chemistry
Pascal, Simon
Denis-Quanquin, Sandrine
Appaix, Florence
Duperray, Alain
Grichine, Alexei
Le Guennic, Boris
Jacquemin, Denis
Cuny, Jérôme
Chi, San-Hui
Perry, Joseph W.
van der Sanden, Boudewijn
Monnereau, Cyrille
Andraud, Chantal
Maury, Olivier
Keto-polymethines: a versatile class of dyes with outstanding spectroscopic properties for in cellulo and in vivo two-photon microscopy imaging
title Keto-polymethines: a versatile class of dyes with outstanding spectroscopic properties for in cellulo and in vivo two-photon microscopy imaging
title_full Keto-polymethines: a versatile class of dyes with outstanding spectroscopic properties for in cellulo and in vivo two-photon microscopy imaging
title_fullStr Keto-polymethines: a versatile class of dyes with outstanding spectroscopic properties for in cellulo and in vivo two-photon microscopy imaging
title_full_unstemmed Keto-polymethines: a versatile class of dyes with outstanding spectroscopic properties for in cellulo and in vivo two-photon microscopy imaging
title_short Keto-polymethines: a versatile class of dyes with outstanding spectroscopic properties for in cellulo and in vivo two-photon microscopy imaging
title_sort keto-polymethines: a versatile class of dyes with outstanding spectroscopic properties for in cellulo and in vivo two-photon microscopy imaging
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5365052/
https://www.ncbi.nlm.nih.gov/pubmed/28451183
http://dx.doi.org/10.1039/c6sc02488b
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