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Three-Dimensional Light Sheet Fluorescence Microscopy of Lungs To Dissect Local Host Immune-Aspergillus fumigatus Interactions

Aspergillus fumigatus is an opportunistic fungal pathogen that can cause life-threatening invasive lung infections in immunodeficient patients. The cellular and molecular processes of infection during onset, establishment, and progression of A. fumigatus infections are highly complex and depend on b...

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Autores principales: Amich, Jorge, Mokhtari, Zeinab, Strobel, Marlene, Vialetto, Elena, Sheta, Dalia, Yu, Yidong, Hartweg, Julia, Kalleda, Natarajaswamy, Jarick, Katja J., Brede, Christian, Jordán-Garrote, Ana-Laura, Thusek, Sina, Schmiedgen, Katharina, Arslan, Berkan, Pinnecker, Jürgen, Thornton, Christopher R., Gunzer, Matthias, Krappmann, Sven, Einsele, Hermann, Heinze, Katrin G., Beilhack, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7002341/
https://www.ncbi.nlm.nih.gov/pubmed/32019790
http://dx.doi.org/10.1128/mBio.02752-19
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author Amich, Jorge
Mokhtari, Zeinab
Strobel, Marlene
Vialetto, Elena
Sheta, Dalia
Yu, Yidong
Hartweg, Julia
Kalleda, Natarajaswamy
Jarick, Katja J.
Brede, Christian
Jordán-Garrote, Ana-Laura
Thusek, Sina
Schmiedgen, Katharina
Arslan, Berkan
Pinnecker, Jürgen
Thornton, Christopher R.
Gunzer, Matthias
Krappmann, Sven
Einsele, Hermann
Heinze, Katrin G.
Beilhack, Andreas
author_facet Amich, Jorge
Mokhtari, Zeinab
Strobel, Marlene
Vialetto, Elena
Sheta, Dalia
Yu, Yidong
Hartweg, Julia
Kalleda, Natarajaswamy
Jarick, Katja J.
Brede, Christian
Jordán-Garrote, Ana-Laura
Thusek, Sina
Schmiedgen, Katharina
Arslan, Berkan
Pinnecker, Jürgen
Thornton, Christopher R.
Gunzer, Matthias
Krappmann, Sven
Einsele, Hermann
Heinze, Katrin G.
Beilhack, Andreas
author_sort Amich, Jorge
collection PubMed
description Aspergillus fumigatus is an opportunistic fungal pathogen that can cause life-threatening invasive lung infections in immunodeficient patients. The cellular and molecular processes of infection during onset, establishment, and progression of A. fumigatus infections are highly complex and depend on both fungal attributes and the immune status of the host. Therefore, preclinical animal models are of paramount importance to investigate and gain better insight into the infection process. Yet, despite their extensive use, commonly employed murine models of invasive pulmonary aspergillosis are not well understood due to analytical limitations. Here, we present quantitative light sheet fluorescence microscopy (LSFM) to describe fungal growth and the local immune response in whole lungs at cellular resolution within its anatomical context. We analyzed three very common murine models of pulmonary aspergillosis based on immunosuppression with corticosteroids, chemotherapy-induced leukopenia, or myeloablative irradiation. LSFM uncovered distinct architectures of fungal growth and degrees of tissue invasion in each model. Furthermore, LSFM revealed the spatial distribution, interaction, and activation of two key immune cell populations in antifungal defense: alveolar macrophages and polymorphonuclear neutrophils. Interestingly, the patterns of fungal growth correlated with the detected effects of the immunosuppressive regimens on the local immune cell populations. Moreover, LSFM demonstrates that the commonly used intranasal route of spore administration did not result in complete intra-alveolar deposition, as about 80% of fungal growth occurred outside the alveolar space. Hence, characterization by LSFM is more rigorous than by previously used methods employing murine models of invasive pulmonary aspergillosis and pinpoints their strengths and limitations.
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spelling pubmed-70023412020-02-11 Three-Dimensional Light Sheet Fluorescence Microscopy of Lungs To Dissect Local Host Immune-Aspergillus fumigatus Interactions Amich, Jorge Mokhtari, Zeinab Strobel, Marlene Vialetto, Elena Sheta, Dalia Yu, Yidong Hartweg, Julia Kalleda, Natarajaswamy Jarick, Katja J. Brede, Christian Jordán-Garrote, Ana-Laura Thusek, Sina Schmiedgen, Katharina Arslan, Berkan Pinnecker, Jürgen Thornton, Christopher R. Gunzer, Matthias Krappmann, Sven Einsele, Hermann Heinze, Katrin G. Beilhack, Andreas mBio Research Article Aspergillus fumigatus is an opportunistic fungal pathogen that can cause life-threatening invasive lung infections in immunodeficient patients. The cellular and molecular processes of infection during onset, establishment, and progression of A. fumigatus infections are highly complex and depend on both fungal attributes and the immune status of the host. Therefore, preclinical animal models are of paramount importance to investigate and gain better insight into the infection process. Yet, despite their extensive use, commonly employed murine models of invasive pulmonary aspergillosis are not well understood due to analytical limitations. Here, we present quantitative light sheet fluorescence microscopy (LSFM) to describe fungal growth and the local immune response in whole lungs at cellular resolution within its anatomical context. We analyzed three very common murine models of pulmonary aspergillosis based on immunosuppression with corticosteroids, chemotherapy-induced leukopenia, or myeloablative irradiation. LSFM uncovered distinct architectures of fungal growth and degrees of tissue invasion in each model. Furthermore, LSFM revealed the spatial distribution, interaction, and activation of two key immune cell populations in antifungal defense: alveolar macrophages and polymorphonuclear neutrophils. Interestingly, the patterns of fungal growth correlated with the detected effects of the immunosuppressive regimens on the local immune cell populations. Moreover, LSFM demonstrates that the commonly used intranasal route of spore administration did not result in complete intra-alveolar deposition, as about 80% of fungal growth occurred outside the alveolar space. Hence, characterization by LSFM is more rigorous than by previously used methods employing murine models of invasive pulmonary aspergillosis and pinpoints their strengths and limitations. American Society for Microbiology 2020-02-04 /pmc/articles/PMC7002341/ /pubmed/32019790 http://dx.doi.org/10.1128/mBio.02752-19 Text en Copyright © 2020 Amich et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Amich, Jorge
Mokhtari, Zeinab
Strobel, Marlene
Vialetto, Elena
Sheta, Dalia
Yu, Yidong
Hartweg, Julia
Kalleda, Natarajaswamy
Jarick, Katja J.
Brede, Christian
Jordán-Garrote, Ana-Laura
Thusek, Sina
Schmiedgen, Katharina
Arslan, Berkan
Pinnecker, Jürgen
Thornton, Christopher R.
Gunzer, Matthias
Krappmann, Sven
Einsele, Hermann
Heinze, Katrin G.
Beilhack, Andreas
Three-Dimensional Light Sheet Fluorescence Microscopy of Lungs To Dissect Local Host Immune-Aspergillus fumigatus Interactions
title Three-Dimensional Light Sheet Fluorescence Microscopy of Lungs To Dissect Local Host Immune-Aspergillus fumigatus Interactions
title_full Three-Dimensional Light Sheet Fluorescence Microscopy of Lungs To Dissect Local Host Immune-Aspergillus fumigatus Interactions
title_fullStr Three-Dimensional Light Sheet Fluorescence Microscopy of Lungs To Dissect Local Host Immune-Aspergillus fumigatus Interactions
title_full_unstemmed Three-Dimensional Light Sheet Fluorescence Microscopy of Lungs To Dissect Local Host Immune-Aspergillus fumigatus Interactions
title_short Three-Dimensional Light Sheet Fluorescence Microscopy of Lungs To Dissect Local Host Immune-Aspergillus fumigatus Interactions
title_sort three-dimensional light sheet fluorescence microscopy of lungs to dissect local host immune-aspergillus fumigatus interactions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7002341/
https://www.ncbi.nlm.nih.gov/pubmed/32019790
http://dx.doi.org/10.1128/mBio.02752-19
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