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Protein encapsulation: a new approach for improving the capability of small-molecule fluorogenic probes

Herein, we report a protein-based hybridization strategy that exploits the host-guest chemistry of HSA (human serum albumin) to solubilize the otherwise cell impermeable ONOO(−) fluorescent probe Pinkment-OAc. Formation of a HSA/Pinkment-OAc supramolecular hybrid was confirmed by SAXS and solution-s...

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Autores principales: Han, Hai-Hao, Sedgwick, Adam C., Shang, Ying, Li, Na, Liu, Tingting, Li, Bo-Han, Yu, Kunqian, Zang, Yi, Brewster, James T., Odyniec, Maria L., Weber, Maria, Bull, Steven D., Li, Jia, Sessler, Jonathan L., James, Tony D., He, Xiao-Peng, Tian, He
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145178/
https://www.ncbi.nlm.nih.gov/pubmed/34084367
http://dx.doi.org/10.1039/c9sc03961a
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author Han, Hai-Hao
Sedgwick, Adam C.
Shang, Ying
Li, Na
Liu, Tingting
Li, Bo-Han
Yu, Kunqian
Zang, Yi
Brewster, James T.
Odyniec, Maria L.
Weber, Maria
Bull, Steven D.
Li, Jia
Sessler, Jonathan L.
James, Tony D.
He, Xiao-Peng
Tian, He
author_facet Han, Hai-Hao
Sedgwick, Adam C.
Shang, Ying
Li, Na
Liu, Tingting
Li, Bo-Han
Yu, Kunqian
Zang, Yi
Brewster, James T.
Odyniec, Maria L.
Weber, Maria
Bull, Steven D.
Li, Jia
Sessler, Jonathan L.
James, Tony D.
He, Xiao-Peng
Tian, He
author_sort Han, Hai-Hao
collection PubMed
description Herein, we report a protein-based hybridization strategy that exploits the host-guest chemistry of HSA (human serum albumin) to solubilize the otherwise cell impermeable ONOO(−) fluorescent probe Pinkment-OAc. Formation of a HSA/Pinkment-OAc supramolecular hybrid was confirmed by SAXS and solution-state analyses. This HSA/Pinkment-OAc hybrid provided an enhanced fluorescence response towards ONOO(−)versusPinkment-OAc alone, as determined by in vitro experiments. The HSA/Pinkment-OAc hybrid was also evaluated in RAW 264.7 macrophages and HeLa cancer cell lines, which displayed an enhanced cell permeability enabling the detection of SIN-1 and LPS generated ONOO(−) and the in vivo imaging of acute inflammation in LPS-treated mice. A remarkable 5.6 fold (RAW 264.7), 8.7-fold (HeLa) and 2.7-fold increased response was seen relative to Pinkment-OAc alone at the cellular level and in vivo, respectively. We anticipate that HSA/fluorescent probe hybrids will soon become ubiquitous and routinely applied to overcome solubility issues associated with hydrophobic fluorescent imaging agents designed to detect disease related biomarkers.
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spelling pubmed-81451782021-06-02 Protein encapsulation: a new approach for improving the capability of small-molecule fluorogenic probes Han, Hai-Hao Sedgwick, Adam C. Shang, Ying Li, Na Liu, Tingting Li, Bo-Han Yu, Kunqian Zang, Yi Brewster, James T. Odyniec, Maria L. Weber, Maria Bull, Steven D. Li, Jia Sessler, Jonathan L. James, Tony D. He, Xiao-Peng Tian, He Chem Sci Chemistry Herein, we report a protein-based hybridization strategy that exploits the host-guest chemistry of HSA (human serum albumin) to solubilize the otherwise cell impermeable ONOO(−) fluorescent probe Pinkment-OAc. Formation of a HSA/Pinkment-OAc supramolecular hybrid was confirmed by SAXS and solution-state analyses. This HSA/Pinkment-OAc hybrid provided an enhanced fluorescence response towards ONOO(−)versusPinkment-OAc alone, as determined by in vitro experiments. The HSA/Pinkment-OAc hybrid was also evaluated in RAW 264.7 macrophages and HeLa cancer cell lines, which displayed an enhanced cell permeability enabling the detection of SIN-1 and LPS generated ONOO(−) and the in vivo imaging of acute inflammation in LPS-treated mice. A remarkable 5.6 fold (RAW 264.7), 8.7-fold (HeLa) and 2.7-fold increased response was seen relative to Pinkment-OAc alone at the cellular level and in vivo, respectively. We anticipate that HSA/fluorescent probe hybrids will soon become ubiquitous and routinely applied to overcome solubility issues associated with hydrophobic fluorescent imaging agents designed to detect disease related biomarkers. The Royal Society of Chemistry 2019-11-27 /pmc/articles/PMC8145178/ /pubmed/34084367 http://dx.doi.org/10.1039/c9sc03961a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Han, Hai-Hao
Sedgwick, Adam C.
Shang, Ying
Li, Na
Liu, Tingting
Li, Bo-Han
Yu, Kunqian
Zang, Yi
Brewster, James T.
Odyniec, Maria L.
Weber, Maria
Bull, Steven D.
Li, Jia
Sessler, Jonathan L.
James, Tony D.
He, Xiao-Peng
Tian, He
Protein encapsulation: a new approach for improving the capability of small-molecule fluorogenic probes
title Protein encapsulation: a new approach for improving the capability of small-molecule fluorogenic probes
title_full Protein encapsulation: a new approach for improving the capability of small-molecule fluorogenic probes
title_fullStr Protein encapsulation: a new approach for improving the capability of small-molecule fluorogenic probes
title_full_unstemmed Protein encapsulation: a new approach for improving the capability of small-molecule fluorogenic probes
title_short Protein encapsulation: a new approach for improving the capability of small-molecule fluorogenic probes
title_sort protein encapsulation: a new approach for improving the capability of small-molecule fluorogenic probes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145178/
https://www.ncbi.nlm.nih.gov/pubmed/34084367
http://dx.doi.org/10.1039/c9sc03961a
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