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Human CardioChimeras: Creation of a Novel “Next‐Generation” Cardiac Cell

BACKGROUND: CardioChimeras produced by fusion of murine c‐kit(+) cardiac interstitial cells with mesenchymal stem cells promote superior structural and functional recovery in a mouse model of myocardial infarction compared with either precursor cell alone or in combination. Creation of human CardioC...

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Autores principales: Firouzi, Fareheh, Sinha Choudhury, Sarmistha, Broughton, Kathleen, Salazar, Adriana, Bailey, Barbara, Sussman, Mark A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6988174/
https://www.ncbi.nlm.nih.gov/pubmed/31902324
http://dx.doi.org/10.1161/JAHA.119.013452
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author Firouzi, Fareheh
Sinha Choudhury, Sarmistha
Broughton, Kathleen
Salazar, Adriana
Bailey, Barbara
Sussman, Mark A.
author_facet Firouzi, Fareheh
Sinha Choudhury, Sarmistha
Broughton, Kathleen
Salazar, Adriana
Bailey, Barbara
Sussman, Mark A.
author_sort Firouzi, Fareheh
collection PubMed
description BACKGROUND: CardioChimeras produced by fusion of murine c‐kit(+) cardiac interstitial cells with mesenchymal stem cells promote superior structural and functional recovery in a mouse model of myocardial infarction compared with either precursor cell alone or in combination. Creation of human CardioChimeras (hCCs) represents the next step in translational development of this novel cell type, but new challenges arise when working with c‐kit(+) cardiac interstitial cells isolated and expanded from human heart tissue samples. The objective of the study was to establish a reliable cell fusion protocol for consistent optimized creation of hCCs and characterize fundamental hCC properties. METHODS AND RESULTS: Cell fusion was induced by incubating human c‐kit(+) cardiac interstitial cells and mesenchymal stem cells at a 2:1 ratio with inactivated Sendai virus. Hybrid cells were sorted into 96‐well microplates for clonal expansion to derive unique cloned hCCs, which were then characterized for various cellular and molecular properties. hCCs exhibited enhanced survival relative to the parent cells and promoted cardiomyocyte survival in response to serum deprivation in vitro. CONCLUSIONS: The generation of hCC is demonstrated and validated in this study, representing the next step toward implementation of a novel cell product for therapeutic development. Feasibility of creating human hybrid cells prompts consideration of multiple possibilities to create novel chimeric cells derived from cells with desirable traits to promote healing in pathologically damaged myocardium.
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spelling pubmed-69881742020-02-03 Human CardioChimeras: Creation of a Novel “Next‐Generation” Cardiac Cell Firouzi, Fareheh Sinha Choudhury, Sarmistha Broughton, Kathleen Salazar, Adriana Bailey, Barbara Sussman, Mark A. J Am Heart Assoc Original Research BACKGROUND: CardioChimeras produced by fusion of murine c‐kit(+) cardiac interstitial cells with mesenchymal stem cells promote superior structural and functional recovery in a mouse model of myocardial infarction compared with either precursor cell alone or in combination. Creation of human CardioChimeras (hCCs) represents the next step in translational development of this novel cell type, but new challenges arise when working with c‐kit(+) cardiac interstitial cells isolated and expanded from human heart tissue samples. The objective of the study was to establish a reliable cell fusion protocol for consistent optimized creation of hCCs and characterize fundamental hCC properties. METHODS AND RESULTS: Cell fusion was induced by incubating human c‐kit(+) cardiac interstitial cells and mesenchymal stem cells at a 2:1 ratio with inactivated Sendai virus. Hybrid cells were sorted into 96‐well microplates for clonal expansion to derive unique cloned hCCs, which were then characterized for various cellular and molecular properties. hCCs exhibited enhanced survival relative to the parent cells and promoted cardiomyocyte survival in response to serum deprivation in vitro. CONCLUSIONS: The generation of hCC is demonstrated and validated in this study, representing the next step toward implementation of a novel cell product for therapeutic development. Feasibility of creating human hybrid cells prompts consideration of multiple possibilities to create novel chimeric cells derived from cells with desirable traits to promote healing in pathologically damaged myocardium. John Wiley and Sons Inc. 2020-01-04 /pmc/articles/PMC6988174/ /pubmed/31902324 http://dx.doi.org/10.1161/JAHA.119.013452 Text en © 2020 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Research
Firouzi, Fareheh
Sinha Choudhury, Sarmistha
Broughton, Kathleen
Salazar, Adriana
Bailey, Barbara
Sussman, Mark A.
Human CardioChimeras: Creation of a Novel “Next‐Generation” Cardiac Cell
title Human CardioChimeras: Creation of a Novel “Next‐Generation” Cardiac Cell
title_full Human CardioChimeras: Creation of a Novel “Next‐Generation” Cardiac Cell
title_fullStr Human CardioChimeras: Creation of a Novel “Next‐Generation” Cardiac Cell
title_full_unstemmed Human CardioChimeras: Creation of a Novel “Next‐Generation” Cardiac Cell
title_short Human CardioChimeras: Creation of a Novel “Next‐Generation” Cardiac Cell
title_sort human cardiochimeras: creation of a novel “next‐generation” cardiac cell
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6988174/
https://www.ncbi.nlm.nih.gov/pubmed/31902324
http://dx.doi.org/10.1161/JAHA.119.013452
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