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An EBC/Plasma miRNA Signature Discriminates Lung Adenocarcinomas From Pleural Mesothelioma and Healthy Controls

BACKGROUND: Despite significant improvement in screening programs for cancers of the respiratory district, especially in at-risk subjects, early disease detection is still a major issue. In this scenario, new molecular and non-invasive biomarkers are needed to improve early disease diagnosis. METHOD...

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Autores principales: Faversani, Alice, Favero, Chiara, Dioni, Laura, Pesatori, Angela Cecilia, Bollati, Valentina, Montoli, Matteo, Musso, Valeria, Terrasi, Andrea, Fusco, Nicola, Nosotti, Mario, Vaira, Valentina, Palleschi, Alessandro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8239300/
https://www.ncbi.nlm.nih.gov/pubmed/34211838
http://dx.doi.org/10.3389/fonc.2021.643280
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author Faversani, Alice
Favero, Chiara
Dioni, Laura
Pesatori, Angela Cecilia
Bollati, Valentina
Montoli, Matteo
Musso, Valeria
Terrasi, Andrea
Fusco, Nicola
Nosotti, Mario
Vaira, Valentina
Palleschi, Alessandro
author_facet Faversani, Alice
Favero, Chiara
Dioni, Laura
Pesatori, Angela Cecilia
Bollati, Valentina
Montoli, Matteo
Musso, Valeria
Terrasi, Andrea
Fusco, Nicola
Nosotti, Mario
Vaira, Valentina
Palleschi, Alessandro
author_sort Faversani, Alice
collection PubMed
description BACKGROUND: Despite significant improvement in screening programs for cancers of the respiratory district, especially in at-risk subjects, early disease detection is still a major issue. In this scenario, new molecular and non-invasive biomarkers are needed to improve early disease diagnosis. METHODS: We profiled the miRNome in exhaled breath condensate (EBC) and plasma samples from fourteen patients affected by lung AdCa, nine healthy subjects. miRNA signatures were then analyzed in another neoplasia of the respiratory district, i.e. pleural mesothelioma (n = 23) and subjects previously exposed to asbestos were used as controls for this cohort (n = 19). Selected miRNAs were analyzed in purified pulmonary neoplastic or normal epithelial and stromal cell subpopulation from AdCa patients. Finally, the plasmatic miRNA signature was analyzed in a publicly available cohort of NSCLC patients for data validation and in silico analysis was performed with predicted miRNA targets using the multiMiR tool and STRING database. RESULTS: miR-597-5p and miR-1260a are significantly over-expressed in EBC from lung AdCa and are associated with AdCa. Similarly, miR-1260a is also up-regulated in the plasma of AdCa patients together with miR-518f-3p and correlates with presence of lung cancer, whereas let-7f-5p is under-expressed. Analysis of these circulating miRNAs in pleural mesothelioma cases confirmed that up-regulation of miR-518f-3p, -597-5p and -1260a, is specific for lung AdCa. Lastly, quantification of the miRNAs in laser-assisted microdissected lung tissues revealed that miR-518f-3p, 597-5p and miR-1260a are predominantly expressed in tumor epithelial cells. Validation analysis confirmed miR-518f-3p as a possible circulating biomarker of NSCLC. In silico analysis of the potentially modulated biological processes by these three miRNAs, shows that tumor bioenergetics are the most affected pathways. CONCLUSIONS: Overall, our data suggest a 3-miRNAs signature as a non-invasive and accurate biomarker of lung AdCa. This approach could supplement the current screening approaches for early lung cancer diagnosis.
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spelling pubmed-82393002021-06-30 An EBC/Plasma miRNA Signature Discriminates Lung Adenocarcinomas From Pleural Mesothelioma and Healthy Controls Faversani, Alice Favero, Chiara Dioni, Laura Pesatori, Angela Cecilia Bollati, Valentina Montoli, Matteo Musso, Valeria Terrasi, Andrea Fusco, Nicola Nosotti, Mario Vaira, Valentina Palleschi, Alessandro Front Oncol Oncology BACKGROUND: Despite significant improvement in screening programs for cancers of the respiratory district, especially in at-risk subjects, early disease detection is still a major issue. In this scenario, new molecular and non-invasive biomarkers are needed to improve early disease diagnosis. METHODS: We profiled the miRNome in exhaled breath condensate (EBC) and plasma samples from fourteen patients affected by lung AdCa, nine healthy subjects. miRNA signatures were then analyzed in another neoplasia of the respiratory district, i.e. pleural mesothelioma (n = 23) and subjects previously exposed to asbestos were used as controls for this cohort (n = 19). Selected miRNAs were analyzed in purified pulmonary neoplastic or normal epithelial and stromal cell subpopulation from AdCa patients. Finally, the plasmatic miRNA signature was analyzed in a publicly available cohort of NSCLC patients for data validation and in silico analysis was performed with predicted miRNA targets using the multiMiR tool and STRING database. RESULTS: miR-597-5p and miR-1260a are significantly over-expressed in EBC from lung AdCa and are associated with AdCa. Similarly, miR-1260a is also up-regulated in the plasma of AdCa patients together with miR-518f-3p and correlates with presence of lung cancer, whereas let-7f-5p is under-expressed. Analysis of these circulating miRNAs in pleural mesothelioma cases confirmed that up-regulation of miR-518f-3p, -597-5p and -1260a, is specific for lung AdCa. Lastly, quantification of the miRNAs in laser-assisted microdissected lung tissues revealed that miR-518f-3p, 597-5p and miR-1260a are predominantly expressed in tumor epithelial cells. Validation analysis confirmed miR-518f-3p as a possible circulating biomarker of NSCLC. In silico analysis of the potentially modulated biological processes by these three miRNAs, shows that tumor bioenergetics are the most affected pathways. CONCLUSIONS: Overall, our data suggest a 3-miRNAs signature as a non-invasive and accurate biomarker of lung AdCa. This approach could supplement the current screening approaches for early lung cancer diagnosis. Frontiers Media S.A. 2021-06-15 /pmc/articles/PMC8239300/ /pubmed/34211838 http://dx.doi.org/10.3389/fonc.2021.643280 Text en Copyright © 2021 Faversani, Favero, Dioni, Pesatori, Bollati, Montoli, Musso, Terrasi, Fusco, Nosotti, Vaira and Palleschi 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 Oncology
Faversani, Alice
Favero, Chiara
Dioni, Laura
Pesatori, Angela Cecilia
Bollati, Valentina
Montoli, Matteo
Musso, Valeria
Terrasi, Andrea
Fusco, Nicola
Nosotti, Mario
Vaira, Valentina
Palleschi, Alessandro
An EBC/Plasma miRNA Signature Discriminates Lung Adenocarcinomas From Pleural Mesothelioma and Healthy Controls
title An EBC/Plasma miRNA Signature Discriminates Lung Adenocarcinomas From Pleural Mesothelioma and Healthy Controls
title_full An EBC/Plasma miRNA Signature Discriminates Lung Adenocarcinomas From Pleural Mesothelioma and Healthy Controls
title_fullStr An EBC/Plasma miRNA Signature Discriminates Lung Adenocarcinomas From Pleural Mesothelioma and Healthy Controls
title_full_unstemmed An EBC/Plasma miRNA Signature Discriminates Lung Adenocarcinomas From Pleural Mesothelioma and Healthy Controls
title_short An EBC/Plasma miRNA Signature Discriminates Lung Adenocarcinomas From Pleural Mesothelioma and Healthy Controls
title_sort ebc/plasma mirna signature discriminates lung adenocarcinomas from pleural mesothelioma and healthy controls
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8239300/
https://www.ncbi.nlm.nih.gov/pubmed/34211838
http://dx.doi.org/10.3389/fonc.2021.643280
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