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The Mechanisms and Biomedical Applications of an NIR BODIPY-Based Switchable Fluorescent Probe

Highly environment-sensitive fluorophores have been desired for many biomedical applications. Because of the noninvasive operation, high sensitivity, and high specificity to the microenvironment change, they can be used as excellent probes for fluorescence sensing/imaging, cell tracking/imaging, mol...

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Autores principales: Cheng, Bingbing, Bandi, Venugopal, Yu, Shuai, D’Souza, Francis, Nguyen, Kytai T., Hong, Yi, Tang, Liping, Yuan, Baohong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5343919/
https://www.ncbi.nlm.nih.gov/pubmed/28208666
http://dx.doi.org/10.3390/ijms18020384
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author Cheng, Bingbing
Bandi, Venugopal
Yu, Shuai
D’Souza, Francis
Nguyen, Kytai T.
Hong, Yi
Tang, Liping
Yuan, Baohong
author_facet Cheng, Bingbing
Bandi, Venugopal
Yu, Shuai
D’Souza, Francis
Nguyen, Kytai T.
Hong, Yi
Tang, Liping
Yuan, Baohong
author_sort Cheng, Bingbing
collection PubMed
description Highly environment-sensitive fluorophores have been desired for many biomedical applications. Because of the noninvasive operation, high sensitivity, and high specificity to the microenvironment change, they can be used as excellent probes for fluorescence sensing/imaging, cell tracking/imaging, molecular imaging for cancer, and so on (i.e., polarity, viscosity, temperature, or pH measurement). In this work, investigations of the switching mechanism of a recently reported near-infrared environment-sensitive fluorophore, ADP(CA)(2), were conducted. Besides, multiple potential biomedical applications of this switchable fluorescent probe have been demonstrated, including wash-free live-cell fluorescence imaging, in vivo tissue fluorescence imaging, temperature sensing, and ultrasound-switchable fluorescence (USF) imaging. The fluorescence of the ADP(CA)(2) is extremely sensitive to the microenvironment, especially polarity and viscosity. Our investigations showed that the fluorescence of ADP(CA)(2) can be switched on by low polarity, high viscosity, or the presence of protein and surfactants. In wash-free live-cell imaging, the fluorescence of ADP(CA)(2) inside cells was found much brighter than the dye-containing medium and was retained for at least two days. In all of the fluorescence imaging applications conducted in this study, high target-to-noise (>5-fold) was achieved. In addition, a high temperature sensitivity (73-fold per Celsius degree) of ADP(CA)(2)-based temperature probes was found in temperature sensing.
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spelling pubmed-53439192017-03-16 The Mechanisms and Biomedical Applications of an NIR BODIPY-Based Switchable Fluorescent Probe Cheng, Bingbing Bandi, Venugopal Yu, Shuai D’Souza, Francis Nguyen, Kytai T. Hong, Yi Tang, Liping Yuan, Baohong Int J Mol Sci Article Highly environment-sensitive fluorophores have been desired for many biomedical applications. Because of the noninvasive operation, high sensitivity, and high specificity to the microenvironment change, they can be used as excellent probes for fluorescence sensing/imaging, cell tracking/imaging, molecular imaging for cancer, and so on (i.e., polarity, viscosity, temperature, or pH measurement). In this work, investigations of the switching mechanism of a recently reported near-infrared environment-sensitive fluorophore, ADP(CA)(2), were conducted. Besides, multiple potential biomedical applications of this switchable fluorescent probe have been demonstrated, including wash-free live-cell fluorescence imaging, in vivo tissue fluorescence imaging, temperature sensing, and ultrasound-switchable fluorescence (USF) imaging. The fluorescence of the ADP(CA)(2) is extremely sensitive to the microenvironment, especially polarity and viscosity. Our investigations showed that the fluorescence of ADP(CA)(2) can be switched on by low polarity, high viscosity, or the presence of protein and surfactants. In wash-free live-cell imaging, the fluorescence of ADP(CA)(2) inside cells was found much brighter than the dye-containing medium and was retained for at least two days. In all of the fluorescence imaging applications conducted in this study, high target-to-noise (>5-fold) was achieved. In addition, a high temperature sensitivity (73-fold per Celsius degree) of ADP(CA)(2)-based temperature probes was found in temperature sensing. MDPI 2017-02-11 /pmc/articles/PMC5343919/ /pubmed/28208666 http://dx.doi.org/10.3390/ijms18020384 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cheng, Bingbing
Bandi, Venugopal
Yu, Shuai
D’Souza, Francis
Nguyen, Kytai T.
Hong, Yi
Tang, Liping
Yuan, Baohong
The Mechanisms and Biomedical Applications of an NIR BODIPY-Based Switchable Fluorescent Probe
title The Mechanisms and Biomedical Applications of an NIR BODIPY-Based Switchable Fluorescent Probe
title_full The Mechanisms and Biomedical Applications of an NIR BODIPY-Based Switchable Fluorescent Probe
title_fullStr The Mechanisms and Biomedical Applications of an NIR BODIPY-Based Switchable Fluorescent Probe
title_full_unstemmed The Mechanisms and Biomedical Applications of an NIR BODIPY-Based Switchable Fluorescent Probe
title_short The Mechanisms and Biomedical Applications of an NIR BODIPY-Based Switchable Fluorescent Probe
title_sort mechanisms and biomedical applications of an nir bodipy-based switchable fluorescent probe
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5343919/
https://www.ncbi.nlm.nih.gov/pubmed/28208666
http://dx.doi.org/10.3390/ijms18020384
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