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The myofibroblast matrix: implications for tissue repair and fibrosis

The Journal of Pathology · 2012 · Vol. 229(2) · pp. 298–309
Franco KlingbergBoris HinzEric S. White

Abstract

Myofibroblasts, and the extracellular matrix (ECM) in which they reside, are critical components of wound healing and fibrosis. The ECM, traditionally viewed as the structural elements within which cells reside, is actually a functional tissue whose components possess not only scaffolding characteristics, but also growth factor, mitogenic, and other bioactive properties. Although it has been suggested that tissue fibrosis simply reflects an 'exuberant' wound-healing response, examination of the ECM and the roles of myofibroblasts during fibrogenesis instead suggest that the organism may be attempting to recapitulate developmental programmes designed to regenerate functional tissue. Evidence of this is provided by the temporospatial re-emergence of embryonic ECM proteins by fibroblasts and myofibroblasts that induce cellular programmatic responses intended to produce a functional tissue. In the setting of wound healing (or physiological fibrosis), this occurs in a highly regulated and exquisitely choreographed fashion which results in cessation of haemorrhage, restoration of barrier integrity, and re-establishment of tissue function. However, pathological tissue fibrosis, which oftentimes causes organ dysfunction and significant morbidity or mortality, likely results from dysregulation of normal wound-healing processes or abnormalities of the process itself. This review will focus on the myofibroblast ECM and its role in both physiological and pathological fibrosis, and will discuss the potential for therapeutically targeting ECM proteins for treatment of fibrotic disorders.

Wound Healing and TreatmentsTissue Engineering and Regenerative MedicinePeriodontal Regeneration and TreatmentsMyofibroblastExtracellular matrixFibrosisWound healingPathologyCell biologyBiologyRegeneration (biology)MedicineImmunology

MeSH terms

AnimalsExtracellular MatrixFibrosisHomeostasisHumansWound HealingSignal TransductionExtracellular Matrix ProteinsMyofibroblasts

Funding

  • Heart and Stroke Foundation of Canada
  • University of Michigan
  • European Commission
  • National Institutes of Health
  • Canadian Institutes of Health Research
  • Natural Sciences and Engineering Research Council of Canada
Citations
753
FWCI
28.14
field-weighted impact
References
235
Percentile
100%
vs. same field & year
Citations per year
References
The Myofibroblast
American Journal Of Pathology · 2007 · 2,016 citations
Making sense of latent TGFβ activation
Journal of Cell Science · 2002 · 1,603 citations
Recent Developments in Myofibroblast Biology
American Journal Of Pathology · 2012 · 1,167 citations
Transglutaminases: Protein Cross-Linking Enzymes in Tissues and Body Fluids
Thrombosis and Haemostasis · 1994 · 501 citations
Cellular and molecular mechanisms of fibrosis
The Journal of Pathology · 2007 · 4,394 citations
Stromal myofibroblasts are drivers of invasive cancer growth
International Journal of Cancer · 2008 · 717 citations
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