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Specific Visualization of Nitric Oxide in the Vasculature with Two-Photon Microscopy Using a Copper Based Fluorescent Probe

To study the role and (sub) cellular nitric oxide (NO) constitution in various disease processes, its direct and specific detection in living cells and tissues is a major requirement. Several methods are available to measure the oxidation products of NO, but the detection of NO itself has proved cha...

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Autores principales: Ghosh, Mitrajit, van den Akker, Nynke M. S., Wijnands, Karolina A. P., Poeze, Martijn, Weber, Christian, McQuade, Lindsey E., Pluth, Michael D., Lippard, Stephen J., Post, Mark J., Molin, Daniel G. M., van Zandvoort, Marc A. M. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3781046/
https://www.ncbi.nlm.nih.gov/pubmed/24086509
http://dx.doi.org/10.1371/journal.pone.0075331
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author Ghosh, Mitrajit
van den Akker, Nynke M. S.
Wijnands, Karolina A. P.
Poeze, Martijn
Weber, Christian
McQuade, Lindsey E.
Pluth, Michael D.
Lippard, Stephen J.
Post, Mark J.
Molin, Daniel G. M.
van Zandvoort, Marc A. M. J.
author_facet Ghosh, Mitrajit
van den Akker, Nynke M. S.
Wijnands, Karolina A. P.
Poeze, Martijn
Weber, Christian
McQuade, Lindsey E.
Pluth, Michael D.
Lippard, Stephen J.
Post, Mark J.
Molin, Daniel G. M.
van Zandvoort, Marc A. M. J.
author_sort Ghosh, Mitrajit
collection PubMed
description To study the role and (sub) cellular nitric oxide (NO) constitution in various disease processes, its direct and specific detection in living cells and tissues is a major requirement. Several methods are available to measure the oxidation products of NO, but the detection of NO itself has proved challenging. We visualized NO production using a NO-sensitive copper-based fluorescent probe (Cu (2)FL2E) and two-photon laser scanning microscopy (TPLSM). Cu (2)FL2E demonstrated high sensitivity and specificity for NO synthesis, combined with low cytotoxicity. Furthermore, Cu (2)FL2E showed superior sensitivity over the conventionally used Griess assay. NO specificity of Cu (2)FL2E was confirmed in vitro in human coronary arterial endothelial cells and porcine aortic endothelial cells using various triggers for NO production. Using TPLSM on ex vivo mounted murine carotid artery and aorta, the applicability of the probe to image NO production in both endothelial cells and smooth muscle cells was shown. NO-production and time course was detected for multiple stimuli such as flow, acetylcholine and hydrogen peroxide and its correlation with vasodilation was demonstrated. NO-specific fluorescence and vasodilation was abrogated in the presence of NO-synthesis blocker L-NAME. Finally, the influence of carotid precontraction and vasorelaxation validated the functional properties of vessels. Specific visualization of NO production in vessels with Cu (2)FL2E-TPLSM provides a valid method for studying spatial-temporal synthesis of NO in vascular biology at an unprecedented level. This approach enables investigation of the pathways involved in the complex interplay between NO and vascular (dys) function.
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spelling pubmed-37810462013-10-01 Specific Visualization of Nitric Oxide in the Vasculature with Two-Photon Microscopy Using a Copper Based Fluorescent Probe Ghosh, Mitrajit van den Akker, Nynke M. S. Wijnands, Karolina A. P. Poeze, Martijn Weber, Christian McQuade, Lindsey E. Pluth, Michael D. Lippard, Stephen J. Post, Mark J. Molin, Daniel G. M. van Zandvoort, Marc A. M. J. PLoS One Research Article To study the role and (sub) cellular nitric oxide (NO) constitution in various disease processes, its direct and specific detection in living cells and tissues is a major requirement. Several methods are available to measure the oxidation products of NO, but the detection of NO itself has proved challenging. We visualized NO production using a NO-sensitive copper-based fluorescent probe (Cu (2)FL2E) and two-photon laser scanning microscopy (TPLSM). Cu (2)FL2E demonstrated high sensitivity and specificity for NO synthesis, combined with low cytotoxicity. Furthermore, Cu (2)FL2E showed superior sensitivity over the conventionally used Griess assay. NO specificity of Cu (2)FL2E was confirmed in vitro in human coronary arterial endothelial cells and porcine aortic endothelial cells using various triggers for NO production. Using TPLSM on ex vivo mounted murine carotid artery and aorta, the applicability of the probe to image NO production in both endothelial cells and smooth muscle cells was shown. NO-production and time course was detected for multiple stimuli such as flow, acetylcholine and hydrogen peroxide and its correlation with vasodilation was demonstrated. NO-specific fluorescence and vasodilation was abrogated in the presence of NO-synthesis blocker L-NAME. Finally, the influence of carotid precontraction and vasorelaxation validated the functional properties of vessels. Specific visualization of NO production in vessels with Cu (2)FL2E-TPLSM provides a valid method for studying spatial-temporal synthesis of NO in vascular biology at an unprecedented level. This approach enables investigation of the pathways involved in the complex interplay between NO and vascular (dys) function. Public Library of Science 2013-09-23 /pmc/articles/PMC3781046/ /pubmed/24086509 http://dx.doi.org/10.1371/journal.pone.0075331 Text en © 2013 Ghosh et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ghosh, Mitrajit
van den Akker, Nynke M. S.
Wijnands, Karolina A. P.
Poeze, Martijn
Weber, Christian
McQuade, Lindsey E.
Pluth, Michael D.
Lippard, Stephen J.
Post, Mark J.
Molin, Daniel G. M.
van Zandvoort, Marc A. M. J.
Specific Visualization of Nitric Oxide in the Vasculature with Two-Photon Microscopy Using a Copper Based Fluorescent Probe
title Specific Visualization of Nitric Oxide in the Vasculature with Two-Photon Microscopy Using a Copper Based Fluorescent Probe
title_full Specific Visualization of Nitric Oxide in the Vasculature with Two-Photon Microscopy Using a Copper Based Fluorescent Probe
title_fullStr Specific Visualization of Nitric Oxide in the Vasculature with Two-Photon Microscopy Using a Copper Based Fluorescent Probe
title_full_unstemmed Specific Visualization of Nitric Oxide in the Vasculature with Two-Photon Microscopy Using a Copper Based Fluorescent Probe
title_short Specific Visualization of Nitric Oxide in the Vasculature with Two-Photon Microscopy Using a Copper Based Fluorescent Probe
title_sort specific visualization of nitric oxide in the vasculature with two-photon microscopy using a copper based fluorescent probe
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3781046/
https://www.ncbi.nlm.nih.gov/pubmed/24086509
http://dx.doi.org/10.1371/journal.pone.0075331
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