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Spectrin-Based Regulation of Cardiac Fibroblast Cell-Cell Communication

Cardiac fibroblasts (CFs) maintain the fibrous extracellular matrix (ECM) that supports proper cardiac function. Cardiac injury induces a transition in the activity of CFs to promote cardiac fibrosis. CFs play a critical role in sensing local injury signals and coordinating the organ level response...

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Autores principales: Nassal, Drew M., Shaheen, Rebecca, Patel, Nehal J., Yu, Jane, Leahy, Nick, Bibidakis, Dimitra, Parinandi, Narasimham L., Hund, Thomas J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10001335/
https://www.ncbi.nlm.nih.gov/pubmed/36899883
http://dx.doi.org/10.3390/cells12050748
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author Nassal, Drew M.
Shaheen, Rebecca
Patel, Nehal J.
Yu, Jane
Leahy, Nick
Bibidakis, Dimitra
Parinandi, Narasimham L.
Hund, Thomas J.
author_facet Nassal, Drew M.
Shaheen, Rebecca
Patel, Nehal J.
Yu, Jane
Leahy, Nick
Bibidakis, Dimitra
Parinandi, Narasimham L.
Hund, Thomas J.
author_sort Nassal, Drew M.
collection PubMed
description Cardiac fibroblasts (CFs) maintain the fibrous extracellular matrix (ECM) that supports proper cardiac function. Cardiac injury induces a transition in the activity of CFs to promote cardiac fibrosis. CFs play a critical role in sensing local injury signals and coordinating the organ level response through paracrine communication to distal cells. However, the mechanisms by which CFs engage cell-cell communication networks in response to stress remain unknown. We tested a role for the action-associated cytoskeletal protein β(IV)-spectrin in regulating CF paracrine signaling. Conditioned culture media (CCM) was collected from WT and β(IV)-spectrin deficient (qv(4J)) CFs. WT CFs treated with qv(4J) CCM showed increased proliferation and collagen gel compaction compared to control. Consistent with the functional measurements, qv(4J) CCM contained higher levels of pro-inflammatory and pro-fibrotic cytokines and increased concentration of small extracellular vesicles (30–150 nm diameter, exosomes). Treatment of WT CFs with exosomes isolated from qv(4J) CCM induced a similar phenotypic change as that observed with complete CCM. Treatment of qv(4J) CFs with an inhibitor of the β(IV)-spectrin-associated transcription factor, STAT3, decreased the levels of both cytokines and exosomes in conditioned media. This study expands the role of the β(IV)-spectrin/STAT3 complex in stress-induced regulation of CF paracrine signaling.
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spelling pubmed-100013352023-03-11 Spectrin-Based Regulation of Cardiac Fibroblast Cell-Cell Communication Nassal, Drew M. Shaheen, Rebecca Patel, Nehal J. Yu, Jane Leahy, Nick Bibidakis, Dimitra Parinandi, Narasimham L. Hund, Thomas J. Cells Article Cardiac fibroblasts (CFs) maintain the fibrous extracellular matrix (ECM) that supports proper cardiac function. Cardiac injury induces a transition in the activity of CFs to promote cardiac fibrosis. CFs play a critical role in sensing local injury signals and coordinating the organ level response through paracrine communication to distal cells. However, the mechanisms by which CFs engage cell-cell communication networks in response to stress remain unknown. We tested a role for the action-associated cytoskeletal protein β(IV)-spectrin in regulating CF paracrine signaling. Conditioned culture media (CCM) was collected from WT and β(IV)-spectrin deficient (qv(4J)) CFs. WT CFs treated with qv(4J) CCM showed increased proliferation and collagen gel compaction compared to control. Consistent with the functional measurements, qv(4J) CCM contained higher levels of pro-inflammatory and pro-fibrotic cytokines and increased concentration of small extracellular vesicles (30–150 nm diameter, exosomes). Treatment of WT CFs with exosomes isolated from qv(4J) CCM induced a similar phenotypic change as that observed with complete CCM. Treatment of qv(4J) CFs with an inhibitor of the β(IV)-spectrin-associated transcription factor, STAT3, decreased the levels of both cytokines and exosomes in conditioned media. This study expands the role of the β(IV)-spectrin/STAT3 complex in stress-induced regulation of CF paracrine signaling. MDPI 2023-02-26 /pmc/articles/PMC10001335/ /pubmed/36899883 http://dx.doi.org/10.3390/cells12050748 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
Nassal, Drew M.
Shaheen, Rebecca
Patel, Nehal J.
Yu, Jane
Leahy, Nick
Bibidakis, Dimitra
Parinandi, Narasimham L.
Hund, Thomas J.
Spectrin-Based Regulation of Cardiac Fibroblast Cell-Cell Communication
title Spectrin-Based Regulation of Cardiac Fibroblast Cell-Cell Communication
title_full Spectrin-Based Regulation of Cardiac Fibroblast Cell-Cell Communication
title_fullStr Spectrin-Based Regulation of Cardiac Fibroblast Cell-Cell Communication
title_full_unstemmed Spectrin-Based Regulation of Cardiac Fibroblast Cell-Cell Communication
title_short Spectrin-Based Regulation of Cardiac Fibroblast Cell-Cell Communication
title_sort spectrin-based regulation of cardiac fibroblast cell-cell communication
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10001335/
https://www.ncbi.nlm.nih.gov/pubmed/36899883
http://dx.doi.org/10.3390/cells12050748
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