Calpain activity is essential in skin wound healing and contributes to scar formation

Dany Nassar1, Emmanuel Letavernier, Laurent Baud

  • 1Université Pierre et Marie Curie-Paris 6, UMRS938, Paris, France. dany.nassar@inserm.fr

Plos One
|May 23, 2012
PubMed

Insights

Calpain inhibition delays initial wound healing but reduces scarring by affecting fibroblast activity and collagen production. Late-stage calpain inhibition may be beneficial for scar reduction.

Area of Science:

  • Cell Biology
  • Dermatology
  • Biochemistry

Background:

  • Calpains are proteases regulating cellular processes vital for wound healing, including adhesion, motility, inflammation, and angiogenesis.
  • Calpain inhibition has shown promise in reducing organ damage in various disease models.
  • The specific role of calpains in skin healing and scar formation remains to be fully elucidated.

Purpose of the Study:

  • To investigate the role of calpains in skin wound healing.
  • To evaluate the potential of calpain inhibition in reducing scar formation.

Main Methods:

  • Utilized transgenic mice overexpressing calpastatin (CPST), a specific calpain inhibitor, to study wound healing with inhibited calpain activity in lesional organs.
  • Assessed wound healing parameters including re-epithelialization, granulation tissue formation, leukocyte infiltrate, and blood vessel density.
  • Examined the expression of alpha-smooth muscle actin (αSMA) and collagen production.
  • Conducted in vitro experiments using human fibroblasts treated with a calpain inhibitor (calpeptin).

Main Results:

  • CPST mice exhibited delayed wound healing, characterized by reduced epidermal proliferation, delayed re-epithelialization, and impaired granulation tissue formation.
  • Wounds in CPST mice showed reduced leukocyte infiltrate and blood vessel density.
  • Calpain inhibition led to a decrease in αSMA-expressing myofibroblasts and reduced granulation tissue contraction.
  • Late-stage calpain inhibition beneficially reduced collagen production and wound fibrosis.
  • In vitro studies confirmed that calpain inhibition in fibroblasts reduced collagen synthesis and TGFβ-induced myofibroblast differentiation.

Conclusions:

  • Calpains play a significant role in granulation tissue formation during wound healing.
  • While early calpain inhibition delays healing, late-stage inhibition shows potential for reducing scar formation by modulating fibroblast behavior and collagen deposition.
  • Targeting calpains, particularly in fibroblasts, could be a therapeutic strategy for minimizing scar formation.

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