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Bone Marrow-Derived VSELs Engraft as Lung Epithelial Progenitor Cells after Bleomycin-Induced Lung Injury

Background: Alveolar type 2 (AT2) cells and bronchioalveolar stem cells (BASC) perform critical regenerative functions in response to lung damage. Published data show that nonhematopoietic, bone marrow-derived “very small embryonic-like stem cells” (VSELs) can differentiate in vivo into surfactant p...

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Autores principales: Ciechanowicz, Andrzej K., Sielatycka, Katarzyna, Cymer, Monika, Skoda, Marta, Suszyńska, Malwina, Bujko, Kamila, Ratajczak, Mariusz Z., Krause, Diane S., Kucia, Magdalena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8303224/
https://www.ncbi.nlm.nih.gov/pubmed/34206516
http://dx.doi.org/10.3390/cells10071570
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author Ciechanowicz, Andrzej K.
Sielatycka, Katarzyna
Cymer, Monika
Skoda, Marta
Suszyńska, Malwina
Bujko, Kamila
Ratajczak, Mariusz Z.
Krause, Diane S.
Kucia, Magdalena
author_facet Ciechanowicz, Andrzej K.
Sielatycka, Katarzyna
Cymer, Monika
Skoda, Marta
Suszyńska, Malwina
Bujko, Kamila
Ratajczak, Mariusz Z.
Krause, Diane S.
Kucia, Magdalena
author_sort Ciechanowicz, Andrzej K.
collection PubMed
description Background: Alveolar type 2 (AT2) cells and bronchioalveolar stem cells (BASC) perform critical regenerative functions in response to lung damage. Published data show that nonhematopoietic, bone marrow-derived “very small embryonic-like stem cells” (VSELs) can differentiate in vivo into surfactant protein C (SPC)-producing AT2 cells in the lung. Here, we test directly whether VSEL-derived BASC and AT2 cells function to produce differentiated progeny. Methods: using a reporter mouse in which the H2B-GFP fusion protein is driven from the murine SPC promoter, we tested whether bone marrow-derived VSELs or non-VSEL/nonhematopoietic stem cells (non-VSEL/non-HSCs) can differentiate into AT2 and BASC cells that function as progenitor cells. Immediately following bleomycin administration, WT recipient mice underwent intravenous administration of VSELs or non-VSEL/non-HSCs from SPC H2B-GFP mice. GFP+ AT2 and BASC were isolated and tested for progenitor activity using in vitro organoid assays. Results: after 21 days in vivo, we observed differentiation of VSELs but not non-VSEL/non-HSCs into phenotypic AT2 and BASC consistent with previous data in irradiated recipients. Subsequent in vitro organoid assays revealed that VSEL-derived AT2 and BASC maintained physiological potential for differentiation and self-renewal. Conclusion: these findings prove that VSELs produce functional BASC and AT2 cells, and this may open new avenues using VSELs to develop effective cell therapy approaches for patients with lung injury.
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spelling pubmed-83032242021-07-25 Bone Marrow-Derived VSELs Engraft as Lung Epithelial Progenitor Cells after Bleomycin-Induced Lung Injury Ciechanowicz, Andrzej K. Sielatycka, Katarzyna Cymer, Monika Skoda, Marta Suszyńska, Malwina Bujko, Kamila Ratajczak, Mariusz Z. Krause, Diane S. Kucia, Magdalena Cells Article Background: Alveolar type 2 (AT2) cells and bronchioalveolar stem cells (BASC) perform critical regenerative functions in response to lung damage. Published data show that nonhematopoietic, bone marrow-derived “very small embryonic-like stem cells” (VSELs) can differentiate in vivo into surfactant protein C (SPC)-producing AT2 cells in the lung. Here, we test directly whether VSEL-derived BASC and AT2 cells function to produce differentiated progeny. Methods: using a reporter mouse in which the H2B-GFP fusion protein is driven from the murine SPC promoter, we tested whether bone marrow-derived VSELs or non-VSEL/nonhematopoietic stem cells (non-VSEL/non-HSCs) can differentiate into AT2 and BASC cells that function as progenitor cells. Immediately following bleomycin administration, WT recipient mice underwent intravenous administration of VSELs or non-VSEL/non-HSCs from SPC H2B-GFP mice. GFP+ AT2 and BASC were isolated and tested for progenitor activity using in vitro organoid assays. Results: after 21 days in vivo, we observed differentiation of VSELs but not non-VSEL/non-HSCs into phenotypic AT2 and BASC consistent with previous data in irradiated recipients. Subsequent in vitro organoid assays revealed that VSEL-derived AT2 and BASC maintained physiological potential for differentiation and self-renewal. Conclusion: these findings prove that VSELs produce functional BASC and AT2 cells, and this may open new avenues using VSELs to develop effective cell therapy approaches for patients with lung injury. MDPI 2021-06-22 /pmc/articles/PMC8303224/ /pubmed/34206516 http://dx.doi.org/10.3390/cells10071570 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ciechanowicz, Andrzej K.
Sielatycka, Katarzyna
Cymer, Monika
Skoda, Marta
Suszyńska, Malwina
Bujko, Kamila
Ratajczak, Mariusz Z.
Krause, Diane S.
Kucia, Magdalena
Bone Marrow-Derived VSELs Engraft as Lung Epithelial Progenitor Cells after Bleomycin-Induced Lung Injury
title Bone Marrow-Derived VSELs Engraft as Lung Epithelial Progenitor Cells after Bleomycin-Induced Lung Injury
title_full Bone Marrow-Derived VSELs Engraft as Lung Epithelial Progenitor Cells after Bleomycin-Induced Lung Injury
title_fullStr Bone Marrow-Derived VSELs Engraft as Lung Epithelial Progenitor Cells after Bleomycin-Induced Lung Injury
title_full_unstemmed Bone Marrow-Derived VSELs Engraft as Lung Epithelial Progenitor Cells after Bleomycin-Induced Lung Injury
title_short Bone Marrow-Derived VSELs Engraft as Lung Epithelial Progenitor Cells after Bleomycin-Induced Lung Injury
title_sort bone marrow-derived vsels engraft as lung epithelial progenitor cells after bleomycin-induced lung injury
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8303224/
https://www.ncbi.nlm.nih.gov/pubmed/34206516
http://dx.doi.org/10.3390/cells10071570
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