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Laser microdissection, proteomics, and multiplex immunohistochemistry: a bumpy ride into the study of paraffin-embedded fetal and pediatric lung tissues

BACKGROUND: Knowledge about lung development or lung disease is mainly derived from data extrapolated from mouse models. This has obvious drawbacks in developmental diseases, particularly due to species differences. Our objective is to describe the development of complementary analysis methods that...

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Autores principales: Cardoso dos Santos, Luis M., Avila, Yannick, Schvartz, Domitille, Rougemont, Anne-Laure, Bochaton-Piallat, Marie-Luce, Ruchonnet-Metrailler, Isabelle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10495683/
https://www.ncbi.nlm.nih.gov/pubmed/37706027
http://dx.doi.org/10.3389/fmed.2023.1191205
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author Cardoso dos Santos, Luis M.
Avila, Yannick
Schvartz, Domitille
Rougemont, Anne-Laure
Bochaton-Piallat, Marie-Luce
Ruchonnet-Metrailler, Isabelle
author_facet Cardoso dos Santos, Luis M.
Avila, Yannick
Schvartz, Domitille
Rougemont, Anne-Laure
Bochaton-Piallat, Marie-Luce
Ruchonnet-Metrailler, Isabelle
author_sort Cardoso dos Santos, Luis M.
collection PubMed
description BACKGROUND: Knowledge about lung development or lung disease is mainly derived from data extrapolated from mouse models. This has obvious drawbacks in developmental diseases, particularly due to species differences. Our objective is to describe the development of complementary analysis methods that will allow a better understanding of the molecular mechanisms involved in the pathogenesis of rare congenital diseases. METHODS: Paraffin-embedded human pediatric and fetal lung samples were laser microdissected to enrich different lung regions, namely, bronchioli or alveoli. These samples were analyzed by data-independent acquisition-based quantitative proteomics, and the lung structures were subsequently compared. To confirm the proteomic data, we employed an optimized Sequential ImmunoPeroxidase Labeling and Erasing (SIMPLE) staining for specific proteins of interest. RESULTS: By quantitative proteomics, we identified typical pulmonary proteins from being differentially expressed in different regions. While the receptor for advanced glycation end products (RAGE) and the surfactant protein C (SFTPC) were downregulated, tubulin beta 4B (TUBB4B) was upregulated in bronchioli, compared to alveoli. In fetal tissues, CD31 was downregulated in fetal bronchioli compared to canaliculi. Moreover, we confirmed their presence using SIMPLE staining. Some expected proteins did not show up in the proteomic data, such as SOX-9, which was only detected by means of immunohistochemistry in the SIMPLE analysis. CONCLUSION: Our data underline the robustness and applicability of this type of experimental approach, especially for rare paraffin-embedded tissue samples. It also strengthens the importance of these methods for future studies, particularly when considering developmental lung diseases, such as congenital lung anomalies.
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spelling pubmed-104956832023-09-13 Laser microdissection, proteomics, and multiplex immunohistochemistry: a bumpy ride into the study of paraffin-embedded fetal and pediatric lung tissues Cardoso dos Santos, Luis M. Avila, Yannick Schvartz, Domitille Rougemont, Anne-Laure Bochaton-Piallat, Marie-Luce Ruchonnet-Metrailler, Isabelle Front Med (Lausanne) Medicine BACKGROUND: Knowledge about lung development or lung disease is mainly derived from data extrapolated from mouse models. This has obvious drawbacks in developmental diseases, particularly due to species differences. Our objective is to describe the development of complementary analysis methods that will allow a better understanding of the molecular mechanisms involved in the pathogenesis of rare congenital diseases. METHODS: Paraffin-embedded human pediatric and fetal lung samples were laser microdissected to enrich different lung regions, namely, bronchioli or alveoli. These samples were analyzed by data-independent acquisition-based quantitative proteomics, and the lung structures were subsequently compared. To confirm the proteomic data, we employed an optimized Sequential ImmunoPeroxidase Labeling and Erasing (SIMPLE) staining for specific proteins of interest. RESULTS: By quantitative proteomics, we identified typical pulmonary proteins from being differentially expressed in different regions. While the receptor for advanced glycation end products (RAGE) and the surfactant protein C (SFTPC) were downregulated, tubulin beta 4B (TUBB4B) was upregulated in bronchioli, compared to alveoli. In fetal tissues, CD31 was downregulated in fetal bronchioli compared to canaliculi. Moreover, we confirmed their presence using SIMPLE staining. Some expected proteins did not show up in the proteomic data, such as SOX-9, which was only detected by means of immunohistochemistry in the SIMPLE analysis. CONCLUSION: Our data underline the robustness and applicability of this type of experimental approach, especially for rare paraffin-embedded tissue samples. It also strengthens the importance of these methods for future studies, particularly when considering developmental lung diseases, such as congenital lung anomalies. Frontiers Media S.A. 2023-08-29 /pmc/articles/PMC10495683/ /pubmed/37706027 http://dx.doi.org/10.3389/fmed.2023.1191205 Text en Copyright © 2023 Cardoso dos Santos, Avila, Schvartz, Rougemont, Bochaton-Piallat and Ruchonnet-Metrailler. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Medicine
Cardoso dos Santos, Luis M.
Avila, Yannick
Schvartz, Domitille
Rougemont, Anne-Laure
Bochaton-Piallat, Marie-Luce
Ruchonnet-Metrailler, Isabelle
Laser microdissection, proteomics, and multiplex immunohistochemistry: a bumpy ride into the study of paraffin-embedded fetal and pediatric lung tissues
title Laser microdissection, proteomics, and multiplex immunohistochemistry: a bumpy ride into the study of paraffin-embedded fetal and pediatric lung tissues
title_full Laser microdissection, proteomics, and multiplex immunohistochemistry: a bumpy ride into the study of paraffin-embedded fetal and pediatric lung tissues
title_fullStr Laser microdissection, proteomics, and multiplex immunohistochemistry: a bumpy ride into the study of paraffin-embedded fetal and pediatric lung tissues
title_full_unstemmed Laser microdissection, proteomics, and multiplex immunohistochemistry: a bumpy ride into the study of paraffin-embedded fetal and pediatric lung tissues
title_short Laser microdissection, proteomics, and multiplex immunohistochemistry: a bumpy ride into the study of paraffin-embedded fetal and pediatric lung tissues
title_sort laser microdissection, proteomics, and multiplex immunohistochemistry: a bumpy ride into the study of paraffin-embedded fetal and pediatric lung tissues
topic Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10495683/
https://www.ncbi.nlm.nih.gov/pubmed/37706027
http://dx.doi.org/10.3389/fmed.2023.1191205
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