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Transcriptomic Characterization of Genes Regulating the Stemness in Porcine Atrial Cardiomyocytes during Primary In Vitro Culture

Heart failure remains a major cause of death worldwide. There is a need to establish new management options as current treatment is frequently suboptimal. Clinical approaches based on autologous stem cell transplant is potentially a good alternative. The heart was long considered an organ unable to...

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Autores principales: Bryl, Rut, Nawrocki, Mariusz J., Jopek, Karol, Kaczmarek, Mariusz, Bukowska, Dorota, Antosik, Paweł, Mozdziak, Paul, Zabel, Maciej, Dzięgiel, Piotr, Kempisty, Bartosz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10297922/
https://www.ncbi.nlm.nih.gov/pubmed/37372403
http://dx.doi.org/10.3390/genes14061223
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author Bryl, Rut
Nawrocki, Mariusz J.
Jopek, Karol
Kaczmarek, Mariusz
Bukowska, Dorota
Antosik, Paweł
Mozdziak, Paul
Zabel, Maciej
Dzięgiel, Piotr
Kempisty, Bartosz
author_facet Bryl, Rut
Nawrocki, Mariusz J.
Jopek, Karol
Kaczmarek, Mariusz
Bukowska, Dorota
Antosik, Paweł
Mozdziak, Paul
Zabel, Maciej
Dzięgiel, Piotr
Kempisty, Bartosz
author_sort Bryl, Rut
collection PubMed
description Heart failure remains a major cause of death worldwide. There is a need to establish new management options as current treatment is frequently suboptimal. Clinical approaches based on autologous stem cell transplant is potentially a good alternative. The heart was long considered an organ unable to regenerate and renew. However, several reports imply that it may possess modest intrinsic regenerative potential. To allow for detailed characterization of cell cultures, whole transcriptome profiling was performed after 0, 7, 15, and 30 days of in vitro cell cultures (IVC) from the right atrial appendage and right atrial wall utilizing microarray technology. In total, 4239 differentially expressed genes (DEGs) with ratio > abs |2| and adjusted p-value ≤ 0.05 for the right atrial wall and 4662 DEGs for the right atrial appendage were identified. It was shown that a subset of DEGs, which have demonstrated some regulation of expression levels with the duration of the cell culture, were enriched in the following GO BP (Gene Ontology Biological Process) terms: “stem cell population maintenance” and “stem cell proliferation”. The results were validated by RT-qPCR. The establishment and detailed characterization of in vitro culture of myocardial cells may be important for future applications of these cells in heart regeneration processes.
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spelling pubmed-102979222023-06-28 Transcriptomic Characterization of Genes Regulating the Stemness in Porcine Atrial Cardiomyocytes during Primary In Vitro Culture Bryl, Rut Nawrocki, Mariusz J. Jopek, Karol Kaczmarek, Mariusz Bukowska, Dorota Antosik, Paweł Mozdziak, Paul Zabel, Maciej Dzięgiel, Piotr Kempisty, Bartosz Genes (Basel) Article Heart failure remains a major cause of death worldwide. There is a need to establish new management options as current treatment is frequently suboptimal. Clinical approaches based on autologous stem cell transplant is potentially a good alternative. The heart was long considered an organ unable to regenerate and renew. However, several reports imply that it may possess modest intrinsic regenerative potential. To allow for detailed characterization of cell cultures, whole transcriptome profiling was performed after 0, 7, 15, and 30 days of in vitro cell cultures (IVC) from the right atrial appendage and right atrial wall utilizing microarray technology. In total, 4239 differentially expressed genes (DEGs) with ratio > abs |2| and adjusted p-value ≤ 0.05 for the right atrial wall and 4662 DEGs for the right atrial appendage were identified. It was shown that a subset of DEGs, which have demonstrated some regulation of expression levels with the duration of the cell culture, were enriched in the following GO BP (Gene Ontology Biological Process) terms: “stem cell population maintenance” and “stem cell proliferation”. The results were validated by RT-qPCR. The establishment and detailed characterization of in vitro culture of myocardial cells may be important for future applications of these cells in heart regeneration processes. MDPI 2023-06-04 /pmc/articles/PMC10297922/ /pubmed/37372403 http://dx.doi.org/10.3390/genes14061223 Text en © 2023 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
Bryl, Rut
Nawrocki, Mariusz J.
Jopek, Karol
Kaczmarek, Mariusz
Bukowska, Dorota
Antosik, Paweł
Mozdziak, Paul
Zabel, Maciej
Dzięgiel, Piotr
Kempisty, Bartosz
Transcriptomic Characterization of Genes Regulating the Stemness in Porcine Atrial Cardiomyocytes during Primary In Vitro Culture
title Transcriptomic Characterization of Genes Regulating the Stemness in Porcine Atrial Cardiomyocytes during Primary In Vitro Culture
title_full Transcriptomic Characterization of Genes Regulating the Stemness in Porcine Atrial Cardiomyocytes during Primary In Vitro Culture
title_fullStr Transcriptomic Characterization of Genes Regulating the Stemness in Porcine Atrial Cardiomyocytes during Primary In Vitro Culture
title_full_unstemmed Transcriptomic Characterization of Genes Regulating the Stemness in Porcine Atrial Cardiomyocytes during Primary In Vitro Culture
title_short Transcriptomic Characterization of Genes Regulating the Stemness in Porcine Atrial Cardiomyocytes during Primary In Vitro Culture
title_sort transcriptomic characterization of genes regulating the stemness in porcine atrial cardiomyocytes during primary in vitro culture
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10297922/
https://www.ncbi.nlm.nih.gov/pubmed/37372403
http://dx.doi.org/10.3390/genes14061223
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