Extracellular matrix-mediated cellular communication in the heart

The extracellular matrix (ECM) is a complex and dynamic scaffold that maintains tissue structure and dynamics. However, the view of the ECM as an inert architectural support has been increasingly challenged. The ECM is a vibrant meshwork, a crucial organizer of cellular microenvironments. It plays a...

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Published inJournal of molecular and cellular cardiology Vol. 91; pp. 228 - 237
Main Authors Valiente-Alandi, Iñigo, Schafer, Allison E., Blaxall, Burns C.
Format Journal Article
LanguageEnglish
Published England Elsevier Ltd 01.02.2016
Subjects
Online AccessGet full text
ISSN0022-2828
1095-8584
1095-8584
DOI10.1016/j.yjmcc.2016.01.011

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Abstract The extracellular matrix (ECM) is a complex and dynamic scaffold that maintains tissue structure and dynamics. However, the view of the ECM as an inert architectural support has been increasingly challenged. The ECM is a vibrant meshwork, a crucial organizer of cellular microenvironments. It plays a direct role in cellular interactions regulating cell growth, survival, spreading, proliferation, differentiation and migration through the intricate relationship among cellular and acellular tissue components. This complex interrelationship preserves cardiac function during homeostasis; however it is also responsible for pathologic remodeling following myocardial injury. Therefore, enhancing our understanding of this cross-talk may provide mechanistic insights into the pathogenesis of heart failure and suggest new approaches to novel, targeted pharmacologic therapies. This review explores the implications of ECM-cell interactions in myocardial cell behavior and cardiac function at baseline and following myocardial injury. •ECM acts as a dynamic scaffold for cells and is a reservoir for signaling molecules.•ECM-cell communication is critical for cell behavior before and after cardiac injury.•Better understanding of ECM-mediated signaling may lead to new HF targets.
AbstractList The extracellular matrix (ECM) is a complex and dynamic scaffold that maintains tissue structure and dynamics. However, the view of the ECM as an inert architectural support has been increasingly challenged. The ECM is a vibrant meshwork, a crucial organizer of cellular microenvironments. It plays a direct role in cellular interactions regulating cell growth, survival, spreading, proliferation, differentiation and migration through the intricate relationship among cellular and acellular tissue components. This complex interrelationship preserves cardiac function during homeostasis; however it is also responsible for pathologic remodeling following myocardial injury. Therefore, enhancing our understanding of this cross-talk may provide mechanistic insights into the pathogenesis of heart failure and suggest new approaches to novel, targeted pharmacologic therapies. This review explores the implications of ECM-cell interactions in myocardial cell behavior and cardiac function at baseline and following myocardial injury.
The extracellular matrix (ECM) is a complex and dynamic scaffold that maintains tissue structure and dynamics. However, the view of the ECM as an inert architectural support has been increasingly challenged. The ECM is a vibrant meshwork, a crucial organizer of cellular microenvironments. It plays a direct role in cellular interactions regulating cell growth, survival, spreading, proliferation, differentiation and migration through the intricate relationship among cellular and acellular tissue components. This complex interrelationship preserves cardiac function during homeostasis; however it is also responsible for pathologic remodeling following myocardial injury. Therefore, enhancing our understanding of this cross-talk may provide mechanistic insights into the pathogenesis of heart failure and suggest new approaches to novel, targeted pharmacologic therapies. This review explores the implications of ECM-cell interactions in myocardial cell behavior and cardiac function at baseline and following myocardial injury.The extracellular matrix (ECM) is a complex and dynamic scaffold that maintains tissue structure and dynamics. However, the view of the ECM as an inert architectural support has been increasingly challenged. The ECM is a vibrant meshwork, a crucial organizer of cellular microenvironments. It plays a direct role in cellular interactions regulating cell growth, survival, spreading, proliferation, differentiation and migration through the intricate relationship among cellular and acellular tissue components. This complex interrelationship preserves cardiac function during homeostasis; however it is also responsible for pathologic remodeling following myocardial injury. Therefore, enhancing our understanding of this cross-talk may provide mechanistic insights into the pathogenesis of heart failure and suggest new approaches to novel, targeted pharmacologic therapies. This review explores the implications of ECM-cell interactions in myocardial cell behavior and cardiac function at baseline and following myocardial injury.
Abstract The extracellular matrix (ECM) is a complex and dynamic scaffold that maintains tissue structure and dynamics. However, the view of the ECM as an inert architectural support has been increasingly challenged. The ECM is a vibrant meshwork, a crucial organizer of cellular microenvironments. It plays a direct role in cellular interactions regulating cell growth, survival, spreading, proliferation, differentiation and migration through the intricate relationship among cellular and acellular tissue components. This complex interrelationship preserves cardiac function during homeostasis; however it is also responsible for pathologic remodeling following myocardial injury. Therefore, enhancing our understanding of this cross-talk may provide mechanistic insights into the pathogenesis of heart failure and suggest new approaches to novel, targeted pharmacologic therapies. This review explores the implications of ECM-cell interactions in myocardial cell behavior and cardiac function at baseline and following myocardial injury.
The extracellular matrix (ECM) is a complex and dynamic scaffold that maintains tissue structure and dynamics. However, the view of the ECM as an inert architectural support has been increasingly challenged. The ECM is a vibrant meshwork, a crucial organizer of cellular microenvironments. It plays a direct role in cellular interactions regulating cell growth, survival, spreading, proliferation, differentiation and migration through the intricate relationship among cellular and acellular tissue components. This complex interrelationship preserves cardiac function during homeostasis; however it is also responsible for pathologic remodeling following myocardial injury. Therefore, enhancing our understanding of this cross-talk may provide mechanistic insights into the pathogenesis of heart failure and suggest new approaches to novel, targeted pharmacologic therapies. This review explores the implications of ECM-cell interactions in myocardial cell behavior and cardiac function at baseline and following myocardial injury. •ECM acts as a dynamic scaffold for cells and is a reservoir for signaling molecules.•ECM-cell communication is critical for cell behavior before and after cardiac injury.•Better understanding of ECM-mediated signaling may lead to new HF targets.
Author Schafer, Allison E.
Valiente-Alandi, Iñigo
Blaxall, Burns C.
AuthorAffiliation 1 The Heart Institute, Molecular Cardiovascular Biology, Cincinnati Children’s Hospital Medical Center, Cincinnati, OH 45229, USA
AuthorAffiliation_xml – name: 1 The Heart Institute, Molecular Cardiovascular Biology, Cincinnati Children’s Hospital Medical Center, Cincinnati, OH 45229, USA
Author_xml – sequence: 1
  givenname: Iñigo
  surname: Valiente-Alandi
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  fullname: Schafer, Allison E.
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  givenname: Burns C.
  surname: Blaxall
  fullname: Blaxall, Burns C.
  email: burns.blaxall@cchmc.org
BackLink https://www.ncbi.nlm.nih.gov/pubmed/26778458$$D View this record in MEDLINE/PubMed
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ISSN 0022-2828
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Fri Sep 05 04:47:23 EDT 2025
Thu Apr 03 06:55:29 EDT 2025
Tue Jul 01 04:05:22 EDT 2025
Thu Apr 24 22:58:40 EDT 2025
Fri Feb 23 02:29:14 EST 2024
Sun Feb 23 10:19:53 EST 2025
Tue Aug 26 16:49:02 EDT 2025
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Keywords Extracellular matrix
Cardiac remodeling
Fibroblast
Fibrosis
Language English
License Copyright © 2016 Elsevier Ltd. All rights reserved.
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PublicationTitle Journal of molecular and cellular cardiology
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Snippet The extracellular matrix (ECM) is a complex and dynamic scaffold that maintains tissue structure and dynamics. However, the view of the ECM as an inert...
Abstract The extracellular matrix (ECM) is a complex and dynamic scaffold that maintains tissue structure and dynamics. However, the view of the ECM as an...
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SubjectTerms Cardiac remodeling
Cardiovascular
Cell Adhesion Molecules - genetics
Cell Adhesion Molecules - metabolism
Cell Communication
Collagen - genetics
Collagen - metabolism
Cytoskeleton - chemistry
Cytoskeleton - metabolism
Extracellular matrix
Extracellular Matrix - chemistry
Extracellular Matrix - metabolism
Fibroblast
Fibroblasts - metabolism
Fibroblasts - pathology
Fibronectins - genetics
Fibronectins - metabolism
Fibrosis
Gene Expression Regulation
Heart Failure - genetics
Heart Failure - metabolism
Heart Failure - pathology
Heart Injuries - genetics
Heart Injuries - metabolism
Heart Injuries - pathology
Myocardium - metabolism
Myocardium - pathology
Myocytes, Cardiac - metabolism
Myocytes, Cardiac - pathology
Osteonectin - genetics
Osteonectin - metabolism
Osteopontin - genetics
Osteopontin - metabolism
Signal Transduction
Tenascin - genetics
Tenascin - metabolism
Thrombospondins - genetics
Thrombospondins - metabolism
Title Extracellular matrix-mediated cellular communication in the heart
URI https://www.clinicalkey.com/#!/content/1-s2.0-S0022282816300098
https://www.clinicalkey.es/playcontent/1-s2.0-S0022282816300098
https://dx.doi.org/10.1016/j.yjmcc.2016.01.011
https://www.ncbi.nlm.nih.gov/pubmed/26778458
https://www.proquest.com/docview/1767624248
https://pubmed.ncbi.nlm.nih.gov/PMC4767504
Volume 91
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