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Shielding Unit Engineering of NIR-II Molecular Fluorophores for Improved Fluorescence Performance and Renal Excretion Ability

Molecular fluorophores emitting in the second near-infrared (NIR-II) window with good renal excretion ability are favorable for in vivo bio-imaging and clinical applications. So far, renally excretable fluorophores are still less studied. Understanding the influences of molecular structure on optica...

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Autores principales: Liu, Chunchen, Ma, Huilong, Hu, Zhubin, Tian, Rui, Ma, Rui, Xu, Yifan, Wang, Xinyuan, Zhu, Xingfu, Yu, Panpan, Zhu, Shoujun, Sun, Haitao, Liang, Yongye
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8443785/
https://www.ncbi.nlm.nih.gov/pubmed/34540807
http://dx.doi.org/10.3389/fchem.2021.739802
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author Liu, Chunchen
Ma, Huilong
Hu, Zhubin
Tian, Rui
Ma, Rui
Xu, Yifan
Wang, Xinyuan
Zhu, Xingfu
Yu, Panpan
Zhu, Shoujun
Sun, Haitao
Liang, Yongye
author_facet Liu, Chunchen
Ma, Huilong
Hu, Zhubin
Tian, Rui
Ma, Rui
Xu, Yifan
Wang, Xinyuan
Zhu, Xingfu
Yu, Panpan
Zhu, Shoujun
Sun, Haitao
Liang, Yongye
author_sort Liu, Chunchen
collection PubMed
description Molecular fluorophores emitting in the second near-infrared (NIR-II) window with good renal excretion ability are favorable for in vivo bio-imaging and clinical applications. So far, renally excretable fluorophores are still less studied. Understanding the influences of molecular structure on optical properties and renal excretion abilities are vital for fluorophore optimization. Herein, a series of shielding unit-donor-acceptor-donor-shielding unit (S-D-A-D-S) NIR-II molecular fluorophores are designed and synthesized with dialkoxy chains substituted benzene as the S unit. The anchoring positions of dialkoxy chains on benzene are tuned as meso-2,6, para-2,5, or ortho-3,4 to afford three fluorophores: BGM6P, BGP6P and BGO6P, respectively. Experimental and calculation results reveal that alkoxy side chains anchored closer to the conjugated backbone can provide better protection from water molecules and PEG chains, affording higher fluorescence quantum yield (QY) in aqueous solutions. Further, these side chains can enable good encapsulation of backbone, resulting in decreased binding with albumin and improved renal excretion. Thus, fluorophore BGM6P with meso-2,6-dialkoxy chains exhibits the highest quantum yield and fastest renal excretion. This work emphasizes the important roles of side chain patterns on optimizing NIR-II fluorophores with high brightness and renal excretion ability.
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spelling pubmed-84437852021-09-17 Shielding Unit Engineering of NIR-II Molecular Fluorophores for Improved Fluorescence Performance and Renal Excretion Ability Liu, Chunchen Ma, Huilong Hu, Zhubin Tian, Rui Ma, Rui Xu, Yifan Wang, Xinyuan Zhu, Xingfu Yu, Panpan Zhu, Shoujun Sun, Haitao Liang, Yongye Front Chem Chemistry Molecular fluorophores emitting in the second near-infrared (NIR-II) window with good renal excretion ability are favorable for in vivo bio-imaging and clinical applications. So far, renally excretable fluorophores are still less studied. Understanding the influences of molecular structure on optical properties and renal excretion abilities are vital for fluorophore optimization. Herein, a series of shielding unit-donor-acceptor-donor-shielding unit (S-D-A-D-S) NIR-II molecular fluorophores are designed and synthesized with dialkoxy chains substituted benzene as the S unit. The anchoring positions of dialkoxy chains on benzene are tuned as meso-2,6, para-2,5, or ortho-3,4 to afford three fluorophores: BGM6P, BGP6P and BGO6P, respectively. Experimental and calculation results reveal that alkoxy side chains anchored closer to the conjugated backbone can provide better protection from water molecules and PEG chains, affording higher fluorescence quantum yield (QY) in aqueous solutions. Further, these side chains can enable good encapsulation of backbone, resulting in decreased binding with albumin and improved renal excretion. Thus, fluorophore BGM6P with meso-2,6-dialkoxy chains exhibits the highest quantum yield and fastest renal excretion. This work emphasizes the important roles of side chain patterns on optimizing NIR-II fluorophores with high brightness and renal excretion ability. Frontiers Media S.A. 2021-09-02 /pmc/articles/PMC8443785/ /pubmed/34540807 http://dx.doi.org/10.3389/fchem.2021.739802 Text en Copyright © 2021 Liu, Ma, Hu, Tian, Ma, Xu, Wang, Zhu, Yu, Zhu, Sun and Liang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Liu, Chunchen
Ma, Huilong
Hu, Zhubin
Tian, Rui
Ma, Rui
Xu, Yifan
Wang, Xinyuan
Zhu, Xingfu
Yu, Panpan
Zhu, Shoujun
Sun, Haitao
Liang, Yongye
Shielding Unit Engineering of NIR-II Molecular Fluorophores for Improved Fluorescence Performance and Renal Excretion Ability
title Shielding Unit Engineering of NIR-II Molecular Fluorophores for Improved Fluorescence Performance and Renal Excretion Ability
title_full Shielding Unit Engineering of NIR-II Molecular Fluorophores for Improved Fluorescence Performance and Renal Excretion Ability
title_fullStr Shielding Unit Engineering of NIR-II Molecular Fluorophores for Improved Fluorescence Performance and Renal Excretion Ability
title_full_unstemmed Shielding Unit Engineering of NIR-II Molecular Fluorophores for Improved Fluorescence Performance and Renal Excretion Ability
title_short Shielding Unit Engineering of NIR-II Molecular Fluorophores for Improved Fluorescence Performance and Renal Excretion Ability
title_sort shielding unit engineering of nir-ii molecular fluorophores for improved fluorescence performance and renal excretion ability
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8443785/
https://www.ncbi.nlm.nih.gov/pubmed/34540807
http://dx.doi.org/10.3389/fchem.2021.739802
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