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A structural remedy toward bright dipolar fluorophores in aqueous media

The donor–acceptor (D–A) type dipolar fluorophores, an important class of luminescent dyes with two-photon absorption behaviour, generally emit strongly in organic solvents but poorly in aqueous media. To understand and enhance the poor emission behaviour of dipolar dyes in aqueous media, we underta...

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Autores principales: Singha, Subhankar, Kim, Dokyoung, Roy, Basab, Sambasivan, Sunderraman, Moon, Hyunsoo, Rao, Alla Sreenivasa, Kim, Jin Yong, Joo, Taiha, Park, Jae Woo, Rhee, Young Min, Wang, Taejun, Kim, Ki Hean, Shin, Youn Ho, Jung, Junyang, Ahn, Kyo Han
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707477/
https://www.ncbi.nlm.nih.gov/pubmed/29218204
http://dx.doi.org/10.1039/c5sc01076d
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author Singha, Subhankar
Kim, Dokyoung
Roy, Basab
Sambasivan, Sunderraman
Moon, Hyunsoo
Rao, Alla Sreenivasa
Kim, Jin Yong
Joo, Taiha
Park, Jae Woo
Rhee, Young Min
Wang, Taejun
Kim, Ki Hean
Shin, Youn Ho
Jung, Junyang
Ahn, Kyo Han
author_facet Singha, Subhankar
Kim, Dokyoung
Roy, Basab
Sambasivan, Sunderraman
Moon, Hyunsoo
Rao, Alla Sreenivasa
Kim, Jin Yong
Joo, Taiha
Park, Jae Woo
Rhee, Young Min
Wang, Taejun
Kim, Ki Hean
Shin, Youn Ho
Jung, Junyang
Ahn, Kyo Han
author_sort Singha, Subhankar
collection PubMed
description The donor–acceptor (D–A) type dipolar fluorophores, an important class of luminescent dyes with two-photon absorption behaviour, generally emit strongly in organic solvents but poorly in aqueous media. To understand and enhance the poor emission behaviour of dipolar dyes in aqueous media, we undertake a rational approach that includes a systematic structure variation of the donor, amino substituent of acedan, an important two-photon dye. We identify several factors that influence the emission behaviour of the dipolar dyes in aqueous media through computational and photophysical studies on new acedan derivatives. As a result, we can make acedan dyes emit bright fluorescence under one- and two-photon excitation in aqueous media by suppressing the liable factors for poor emission: 1,3-allylic strain, rotational freedom, and hydrogen bonding with water. We also validate that these findings can be generally extended to other dipolar fluorophores, as demonstrated for naphthalimide, coumarin and (4-nitro-2,1,3-benzoxadiazol-7-yl)amine (NBD) dyes. The new acedan and naphthalimide dyes thus allow us to obtain much brighter two-photon fluorescent images in cells and tissues than in their conventional forms. As an application of these findings, a thiol probe is synthesized based on a new naphthalimide dye, which shows greatly enhanced fluorescence from the widely used N,N-dimethyl analogue. The results disclosed here provide essential guidelines for the development of efficient dipolar dyes and fluorescence probes for studying biological systems, particularly by two-photon microscopy.
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spelling pubmed-57074772017-12-07 A structural remedy toward bright dipolar fluorophores in aqueous media Singha, Subhankar Kim, Dokyoung Roy, Basab Sambasivan, Sunderraman Moon, Hyunsoo Rao, Alla Sreenivasa Kim, Jin Yong Joo, Taiha Park, Jae Woo Rhee, Young Min Wang, Taejun Kim, Ki Hean Shin, Youn Ho Jung, Junyang Ahn, Kyo Han Chem Sci Chemistry The donor–acceptor (D–A) type dipolar fluorophores, an important class of luminescent dyes with two-photon absorption behaviour, generally emit strongly in organic solvents but poorly in aqueous media. To understand and enhance the poor emission behaviour of dipolar dyes in aqueous media, we undertake a rational approach that includes a systematic structure variation of the donor, amino substituent of acedan, an important two-photon dye. We identify several factors that influence the emission behaviour of the dipolar dyes in aqueous media through computational and photophysical studies on new acedan derivatives. As a result, we can make acedan dyes emit bright fluorescence under one- and two-photon excitation in aqueous media by suppressing the liable factors for poor emission: 1,3-allylic strain, rotational freedom, and hydrogen bonding with water. We also validate that these findings can be generally extended to other dipolar fluorophores, as demonstrated for naphthalimide, coumarin and (4-nitro-2,1,3-benzoxadiazol-7-yl)amine (NBD) dyes. The new acedan and naphthalimide dyes thus allow us to obtain much brighter two-photon fluorescent images in cells and tissues than in their conventional forms. As an application of these findings, a thiol probe is synthesized based on a new naphthalimide dye, which shows greatly enhanced fluorescence from the widely used N,N-dimethyl analogue. The results disclosed here provide essential guidelines for the development of efficient dipolar dyes and fluorescence probes for studying biological systems, particularly by two-photon microscopy. Royal Society of Chemistry 2015-07-01 2015-05-18 /pmc/articles/PMC5707477/ /pubmed/29218204 http://dx.doi.org/10.1039/c5sc01076d Text en This journal is © The Royal Society of Chemistry 2015 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Singha, Subhankar
Kim, Dokyoung
Roy, Basab
Sambasivan, Sunderraman
Moon, Hyunsoo
Rao, Alla Sreenivasa
Kim, Jin Yong
Joo, Taiha
Park, Jae Woo
Rhee, Young Min
Wang, Taejun
Kim, Ki Hean
Shin, Youn Ho
Jung, Junyang
Ahn, Kyo Han
A structural remedy toward bright dipolar fluorophores in aqueous media
title A structural remedy toward bright dipolar fluorophores in aqueous media
title_full A structural remedy toward bright dipolar fluorophores in aqueous media
title_fullStr A structural remedy toward bright dipolar fluorophores in aqueous media
title_full_unstemmed A structural remedy toward bright dipolar fluorophores in aqueous media
title_short A structural remedy toward bright dipolar fluorophores in aqueous media
title_sort structural remedy toward bright dipolar fluorophores in aqueous media
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707477/
https://www.ncbi.nlm.nih.gov/pubmed/29218204
http://dx.doi.org/10.1039/c5sc01076d
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