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Fluorescence excitation analysis by two-photon confocal laser scanning microscopy: a new method to identify fluorescent nanoparticles on histological tissue sections

In the present study, we make use of the ability of two-photon confocal laser scanning microscopes (CLSMs) equipped with tunable lasers to produce spectral excitation image sequences. Furthermore, unmixing, which is usually performed on emission image sequences, is performed on these excitation imag...

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Autores principales: Kahn, Edmond, Tissot, Nicolas, Frere, Perrine, Dauphin, Aurélien, Boumhras, Mohamed, Bachelet, Claude-Marie, Frouin, Frédérique, Lizard, Gérard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3481855/
https://www.ncbi.nlm.nih.gov/pubmed/23109806
http://dx.doi.org/10.2147/IJN.S33875
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author Kahn, Edmond
Tissot, Nicolas
Frere, Perrine
Dauphin, Aurélien
Boumhras, Mohamed
Bachelet, Claude-Marie
Frouin, Frédérique
Lizard, Gérard
author_facet Kahn, Edmond
Tissot, Nicolas
Frere, Perrine
Dauphin, Aurélien
Boumhras, Mohamed
Bachelet, Claude-Marie
Frouin, Frédérique
Lizard, Gérard
author_sort Kahn, Edmond
collection PubMed
description In the present study, we make use of the ability of two-photon confocal laser scanning microscopes (CLSMs) equipped with tunable lasers to produce spectral excitation image sequences. Furthermore, unmixing, which is usually performed on emission image sequences, is performed on these excitation image sequences. We use factor analysis of medical image sequences (FAMIS), which produces factor images, to unmix spectral image sequences of stained structures in tissue sections to provide images of characterized stained cellular structures. This new approach is applied to histological tissue sections of mouse aorta containing labeled iron nanoparticles stained with Texas Red and counterstained with SYTO13, to obtain visual information about the accumulation of these nanoparticles in the arterial wall. The possible presence of Texas Red is determined using a two-photon CLSM associated with FAMIS via the excitation spectra. Texas Red and SYTO13 are thus differentiated, and corresponding factor images specify their possible presence and cellular localization. In conclusion, the designed protocol shows that sequences of images obtained by excitation in a two-photon CLSM enables characterization of Texas Red-stained nanoparticles and other markers. This methodology offers an alternative and complementary solution to the conventional use of emission spectra unmixing to localize fluorescent nanoparticles in tissue samples.
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spelling pubmed-34818552012-10-29 Fluorescence excitation analysis by two-photon confocal laser scanning microscopy: a new method to identify fluorescent nanoparticles on histological tissue sections Kahn, Edmond Tissot, Nicolas Frere, Perrine Dauphin, Aurélien Boumhras, Mohamed Bachelet, Claude-Marie Frouin, Frédérique Lizard, Gérard Int J Nanomedicine Original Research In the present study, we make use of the ability of two-photon confocal laser scanning microscopes (CLSMs) equipped with tunable lasers to produce spectral excitation image sequences. Furthermore, unmixing, which is usually performed on emission image sequences, is performed on these excitation image sequences. We use factor analysis of medical image sequences (FAMIS), which produces factor images, to unmix spectral image sequences of stained structures in tissue sections to provide images of characterized stained cellular structures. This new approach is applied to histological tissue sections of mouse aorta containing labeled iron nanoparticles stained with Texas Red and counterstained with SYTO13, to obtain visual information about the accumulation of these nanoparticles in the arterial wall. The possible presence of Texas Red is determined using a two-photon CLSM associated with FAMIS via the excitation spectra. Texas Red and SYTO13 are thus differentiated, and corresponding factor images specify their possible presence and cellular localization. In conclusion, the designed protocol shows that sequences of images obtained by excitation in a two-photon CLSM enables characterization of Texas Red-stained nanoparticles and other markers. This methodology offers an alternative and complementary solution to the conventional use of emission spectra unmixing to localize fluorescent nanoparticles in tissue samples. Dove Medical Press 2012 2012-10-23 /pmc/articles/PMC3481855/ /pubmed/23109806 http://dx.doi.org/10.2147/IJN.S33875 Text en © 2012 Kahn et al, publisher and licensee Dove Medical Press Ltd This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Kahn, Edmond
Tissot, Nicolas
Frere, Perrine
Dauphin, Aurélien
Boumhras, Mohamed
Bachelet, Claude-Marie
Frouin, Frédérique
Lizard, Gérard
Fluorescence excitation analysis by two-photon confocal laser scanning microscopy: a new method to identify fluorescent nanoparticles on histological tissue sections
title Fluorescence excitation analysis by two-photon confocal laser scanning microscopy: a new method to identify fluorescent nanoparticles on histological tissue sections
title_full Fluorescence excitation analysis by two-photon confocal laser scanning microscopy: a new method to identify fluorescent nanoparticles on histological tissue sections
title_fullStr Fluorescence excitation analysis by two-photon confocal laser scanning microscopy: a new method to identify fluorescent nanoparticles on histological tissue sections
title_full_unstemmed Fluorescence excitation analysis by two-photon confocal laser scanning microscopy: a new method to identify fluorescent nanoparticles on histological tissue sections
title_short Fluorescence excitation analysis by two-photon confocal laser scanning microscopy: a new method to identify fluorescent nanoparticles on histological tissue sections
title_sort fluorescence excitation analysis by two-photon confocal laser scanning microscopy: a new method to identify fluorescent nanoparticles on histological tissue sections
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3481855/
https://www.ncbi.nlm.nih.gov/pubmed/23109806
http://dx.doi.org/10.2147/IJN.S33875
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