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Updated: May 22, 2026

Visualizing Scar Development Using SCAD Assay - An Ex-situ Skin Scarring Assay
Published on: April 28, 2022
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
Abstract:
Wound healing is a multistep phenomenon that relies on complex interactions between various cell types. Calpains are ubiquitously expressed proteases regulating several processes including cellular adhesion and motility as well as inflammation and angiogenesis. Calpains can be targeted by inhibitors, and their inhibition was shown to reduce organ damage in various disease models. We aimed to assess the role of calpains in skin healing and the potential benefit of calpain inhibition on scar formation. We used a pertinent model where calpain activity is inhibited only in lesional organs, namely transgenic mice overexpressing calpastatin (CPST), a specific natural calpain inhibitor. CPST mice showed a striking delay in wound healing particularly in the initial steps compared to wild types (WT). CPST wounds displayed reduced proliferation in the epidermis and delayed re-epithelization. Granulation tissue formation was impaired in CPST mice, with a reduction in CD45+ leukocyte infiltrate and in CD31+ blood vessel density. Interestingly, wounds on WT skin grafted on CPST mice (WT/CPST) showed a similar delayed healing with reduced angiogenesis and inflammation compared to wounds on WT/WT mice demonstrating the implication of calpain activity in distant extra-cutaneous cells during wound healing. CPST wounds showed a reduction in alpha-smooth muscle actin (αSMA) expressing myofibroblasts as well as αSMA RNA expression suggesting a defect in granulation tissue contraction. At later stages of skin healing, calpain inhibition proved beneficial by reducing collagen production and wound fibrosis. In vitro, human fibroblasts exposed to calpeptin, a pan-calpain inhibitor, showed reduced collagen synthesis, impaired TGFβ-induced differentiation into αSMA-expressing myofibroblasts, and were less efficient in a collagen gel contraction assay. In conclusion, calpains are major players in granulation tissue formation. In view of their specific effects on fibroblasts a late inhibition of calpains should be considered for scar reduction.
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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