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Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples

Functionalized computed tomography (CT) in combination with labelled cells is virtually non-existent due to the limited sensitivity of X-ray-absorption-based imaging, but would be highly desirable to realise cell tracking studies in entire organisms. In this study we applied in-line free propagation...

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Autores principales: Dullin, Christian, dal Monego, Simeone, Larsson, Emanuel, Mohammadi, Sara, Krenkel, Martin, Garrovo, Chiara, Biffi, Stefania, Lorenzon, Andrea, Markus, Andrea, Napp, Joanna, Salditt, Tim, Accardo, Agostino, Alves, Frauke, Tromba, Giuliana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4294027/
https://www.ncbi.nlm.nih.gov/pubmed/25537601
http://dx.doi.org/10.1107/S1600577514021730
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author Dullin, Christian
dal Monego, Simeone
Larsson, Emanuel
Mohammadi, Sara
Krenkel, Martin
Garrovo, Chiara
Biffi, Stefania
Lorenzon, Andrea
Markus, Andrea
Napp, Joanna
Salditt, Tim
Accardo, Agostino
Alves, Frauke
Tromba, Giuliana
author_facet Dullin, Christian
dal Monego, Simeone
Larsson, Emanuel
Mohammadi, Sara
Krenkel, Martin
Garrovo, Chiara
Biffi, Stefania
Lorenzon, Andrea
Markus, Andrea
Napp, Joanna
Salditt, Tim
Accardo, Agostino
Alves, Frauke
Tromba, Giuliana
author_sort Dullin, Christian
collection PubMed
description Functionalized computed tomography (CT) in combination with labelled cells is virtually non-existent due to the limited sensitivity of X-ray-absorption-based imaging, but would be highly desirable to realise cell tracking studies in entire organisms. In this study we applied in-line free propagation X-ray phase-contrast CT (XPCT) in an allergic asthma mouse model to assess structural changes as well as the biodistribution of barium-labelled macrophages in lung tissue. Alveolar macrophages that were barium-sulfate-loaded and fluorescent-labelled were instilled intratracheally into asthmatic and control mice. Mice were sacrificed after 24 h, lungs were kept in situ, inflated with air and scanned utilizing XPCT at the SYRMEP beamline (Elettra Synchrotron Light Source, Italy). Single-distance phase retrieval was used to generate data sets with ten times greater contrast-to-noise ratio than absorption-based CT (in our setup), thus allowing to depict and quantify structural hallmarks of asthmatic lungs such as reduced air volume, obstruction of airways and increased soft-tissue content. Furthermore, we found a higher concentration as well as a specific accumulation of the barium-labelled macrophages in asthmatic lung tissue. It is believe that XPCT will be beneficial in preclinical asthma research for both the assessment of therapeutic response as well as the analysis of the role of the recruitment of macrophages to inflammatory sites.
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spelling pubmed-42940272015-01-15 Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples Dullin, Christian dal Monego, Simeone Larsson, Emanuel Mohammadi, Sara Krenkel, Martin Garrovo, Chiara Biffi, Stefania Lorenzon, Andrea Markus, Andrea Napp, Joanna Salditt, Tim Accardo, Agostino Alves, Frauke Tromba, Giuliana J Synchrotron Radiat Research Papers Functionalized computed tomography (CT) in combination with labelled cells is virtually non-existent due to the limited sensitivity of X-ray-absorption-based imaging, but would be highly desirable to realise cell tracking studies in entire organisms. In this study we applied in-line free propagation X-ray phase-contrast CT (XPCT) in an allergic asthma mouse model to assess structural changes as well as the biodistribution of barium-labelled macrophages in lung tissue. Alveolar macrophages that were barium-sulfate-loaded and fluorescent-labelled were instilled intratracheally into asthmatic and control mice. Mice were sacrificed after 24 h, lungs were kept in situ, inflated with air and scanned utilizing XPCT at the SYRMEP beamline (Elettra Synchrotron Light Source, Italy). Single-distance phase retrieval was used to generate data sets with ten times greater contrast-to-noise ratio than absorption-based CT (in our setup), thus allowing to depict and quantify structural hallmarks of asthmatic lungs such as reduced air volume, obstruction of airways and increased soft-tissue content. Furthermore, we found a higher concentration as well as a specific accumulation of the barium-labelled macrophages in asthmatic lung tissue. It is believe that XPCT will be beneficial in preclinical asthma research for both the assessment of therapeutic response as well as the analysis of the role of the recruitment of macrophages to inflammatory sites. International Union of Crystallography 2015-01-01 /pmc/articles/PMC4294027/ /pubmed/25537601 http://dx.doi.org/10.1107/S1600577514021730 Text en © Christian Dullin et al. 2015 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Dullin, Christian
dal Monego, Simeone
Larsson, Emanuel
Mohammadi, Sara
Krenkel, Martin
Garrovo, Chiara
Biffi, Stefania
Lorenzon, Andrea
Markus, Andrea
Napp, Joanna
Salditt, Tim
Accardo, Agostino
Alves, Frauke
Tromba, Giuliana
Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples
title Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples
title_full Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples
title_fullStr Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples
title_full_unstemmed Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples
title_short Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples
title_sort functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4294027/
https://www.ncbi.nlm.nih.gov/pubmed/25537601
http://dx.doi.org/10.1107/S1600577514021730
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