Regulation of myofibroblast activities: Calcium pulls some strings behind the scene
Myofibroblast-induced remodeling of collagenous extracellular matrix is a key component of our body's strategy to rapidly and efficiently repair damaged tissues; thus myofibroblast activity is considered crucial in assuring the mechanical integrity of vital organs and tissues after injury. Typi...
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Published in | Experimental cell research Vol. 316; no. 15; pp. 2390 - 2401 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
United States
Elsevier Inc
10.09.2010
Elsevier BV |
Subjects | |
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Abstract | Myofibroblast-induced remodeling of collagenous extracellular matrix is a key component of our body's strategy to rapidly and efficiently repair damaged tissues; thus myofibroblast activity is considered crucial in assuring the mechanical integrity of vital organs and tissues after injury. Typical examples of beneficial myofibroblast activities are scarring after myocardial infarct and repair of damaged connective tissues including dermis, tendon, bone, and cartilage. However, deregulation of myofibroblast contraction causes the tissue deformities that characterize hypertrophic scars as well as organ fibrosis that ultimately leads to heart, lung, liver and kidney failure. The phenotypic features of the myofibroblast, within a spectrum going from the fibroblast to the smooth muscle cell, raise the question as to whether it regulates contraction in a fibroblast- or muscle-like fashion. In this review, we attempt to elucidate this point with a particular focus on the role of calcium signaling. We suggest that calcium plays a central role in myofibroblast biological activity not only in regulating contraction but also in mediating intracellular and extracellular mechanical signals, structurally organizing the contractile actin–myosin cytoskeleton, and establishing lines of intercellular communication. |
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AbstractList | Myofibroblast-induced remodeling of collagenous extracellular matrix is a key component of our body's strategy to rapidly and efficiently repair damaged tissues; thus myofibroblast activity is considered crucial in assuring the mechanical integrity of vital organs and tissues after injury. Typical examples of beneficial myofibroblast activities are scarring after myocardial infarct and repair of damaged connective tissues including dermis, tendon, bone, and cartilage. However, deregulation of myofibroblast contraction causes the tissue deformities that characterize hypertrophic scars as well as organ fibrosis that ultimately leads to heart, lung, liver and kidney failure. The phenotypic features of the myofibroblast, within a spectrum going from the fibroblast to the smooth muscle cell, raise the question as to whether it regulates contraction in a fibroblast- or muscle-like fashion. In this review, we attempt to elucidate this point with a particular focus on the role of calcium signaling. We suggest that calcium plays a central role in myofibroblast biological activity not only in regulating contraction but also in mediating intracellular and extracellular mechanical signals, structurally organizing the contractile actin-myosin cytoskeleton, and establishing lines of intercellular communication. Myofibroblast-induced remodeling of collagenous extracellular matrix is a key component of our body's strategy to rapidly and efficiently repair damaged tissues; thus myofibroblast activity is considered crucial in assuring the mechanical integrity of vital organs and tissues after injury. Typical examples of beneficial myofibroblast activities are scarring after myocardial infarct and repair of damaged connective tissues including dermis, tendon, bone, and cartilage. However, deregulation of myofibroblast contraction causes the tissue deformities that characterize hypertrophic scars as well as organ fibrosis that ultimately leads to heart, lung, liver and kidney failure. The phenotypic features of the myofibroblast, within a spectrum going from the fibroblast to the smooth muscle cell, raise the question as to whether it regulates contraction in a fibroblast- or muscle-like fashion. In this review, we attempt to elucidate this point with a particular focus on the role of calcium signaling. We suggest that calcium plays a central role in myofibroblast biological activity not only in regulating contraction but also in mediating intracellular and extracellular mechanical signals, structurally organizing the contractile actin-myosin cytoskeleton, and establishing lines of intercellular communication. [PUBLICATION ABSTRACT] |
Author | Hinz, Boris McCulloch, Christopher A. Follonier Castella, Lysianne Gabbiani, Giulio |
Author_xml | – sequence: 1 givenname: Lysianne surname: Follonier Castella fullname: Follonier Castella, Lysianne organization: Laboratory of Cell Biophysics, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland – sequence: 2 givenname: Giulio surname: Gabbiani fullname: Gabbiani, Giulio organization: Department of Pathology and Immunology, C.M.U., University of Geneva, Switzerland – sequence: 3 givenname: Christopher A. surname: McCulloch fullname: McCulloch, Christopher A. organization: Matrix Dynamics Group, Faculty of Dentistry, University of Toronto, Canada – sequence: 4 givenname: Boris surname: Hinz fullname: Hinz, Boris email: boris.hinz@utoronto.ca organization: Laboratory of Tissue Repair and Regeneration, Matrix Dynamics Group, Faculty of Dentistry, University of Toronto, Canada |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/20451515$$D View this record in MEDLINE/PubMed |
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Keywords | AT-II MLCK ROCK Wound healing Rho kinase MLC FN MLCP SMC [Ca 2+] i AJ Stress fiber ER ECM Contraction α-Smooth muscle actin α-SMA ET-1 TGFβ1 PDGF TRPC Collagen Fibrosis Mechanotransduction |
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SubjectTerms | Animals Biochemistry Calcium Calcium Signaling - physiology Calcium signalling Cell Differentiation - physiology Cellular biology Collagen Contraction Cytoskeleton - metabolism Cytoskeleton - physiology Fibroblasts - metabolism Fibroblasts - physiology Fibrosis Humans Mechanotransduction Models, Biological Muscle Contraction - physiology Myocytes, Smooth Muscle - cytology Myocytes, Smooth Muscle - metabolism Myocytes, Smooth Muscle - physiology Rho kinase Signal transduction Stress fiber Wound healing α-Smooth muscle actin |
Title | Regulation of myofibroblast activities: Calcium pulls some strings behind the scene |
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