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Updated: Jun 4, 2026

Assessment of Acute Wound Healing using the Dorsal Subcutaneous Polyvinyl Alcohol Sponge Implantation and Excisional Tail Skin Wound Models.
Published on: March 25, 2020
Phenotypic overlap between MMP-13 and the plasminogen activation system during wound healing in mice
Anna Juncker-Jensen1, Leif R Lund
1Finsen Laboratory, Rigshospitalet, Copenhagen Biocenter, Copenhagen, Denmark.
Background:
Proteolytic degradation of extracellular matrix is a crucial step in the healing of incisional skin wounds. Thus, healing of skin wounds is delayed by either plasminogen-deficiency or by treatment with the broad-spectrum metalloproteinase (MP) inhibitor Galardin alone, while the two perturbations combined completely prevent wound healing. Both urokinase-type plasminogen activator and several matrix metallo proteinases (MMPs), such as MMP-3, -9 and -13, are expressed in the leading-edge keratinocytes of skin wounds, which may account for this phenotypic overlap between these classes of proteases.
Methodology:
To further test that hypothesis we generated Mmp13;Plau and Mmp13;Plg double-deficient mice in a cross between Mmp13- and Plau-deficient mice as well as Mmp13- and Plg-deficient mice. These mice were examined for normal physiology in a large cohort study and in a well-characterized skin wound healing model, in which we made incisional 20 mm-long full-thickness skin wounds.
Principal Findings:
While mice that are deficient in Mmp13 have a mean healing time indistinguishable to wild-type mice, wound healing in both Plau- and Plg-deficient mice is significantly delayed. Histological analysis of healed wounds revealed a significant increase in keratin 10/14 immunoreactive layers of kerationcytes in the skin surface in Mmp13;Plau double-deficient mice. Furthermore, we observe, by immunohistological analysis, an aberrant angiogenic pattern during wound healing induced by Plau-deficiency, which has not previously been described.
Conclusions:
We demonstrate a phenotypic overlap, defined as an additional delay in wound healing in the double-deficient mice compared to the individual single-deficient mice, between MMP-13 and the plasminogen activation system in the process of wound healing, but not during gestation and in postnatal development. Thus, a dual targeting of uPA and MMP-13 might be a possible future strategy in designing therapies aimed at tissue repair or other pathological processes, such as cancer invasion, where proteolytic degradation is a hallmark.
Insights
Skin wound healing involves matrix degradation. Dual deficiency in MMP-13 and plasminogen activation significantly delays healing, suggesting combined targeting for tissue repair therapies.
Area of Science:
- Molecular Biology
- Dermatology
- Biochemistry
Background:
- Extracellular matrix degradation is vital for incisional skin wound healing.
- Plasminogen deficiency or metalloproteinase (MP) inhibitor treatment delays wound healing.
- Combined plasminogen deficiency and MP inhibition completely halts wound healing, indicating protease system overlap.
Purpose of the Study:
- To investigate the functional overlap between matrix metalloproteinase-13 (MMP-13) and the plasminogen activation system in skin wound healing.
- To determine the combined effects of MMP-13 and plasminogen activator (Plau) or plasminogen (Plg) deficiency on wound healing dynamics.
Main Methods:
- Generation of double-deficient mice (Mmp13;Plau and Mmp13;Plg) through cross-breeding.
- Assessment of physiological normality in a large cohort study.
- Evaluation of skin wound healing in a 20 mm full-thickness incisional wound model.
Main Results:
- Mice deficient in Mmp13 showed normal healing times, similar to wild-type.
- Wound healing was significantly delayed in both Plau-deficient and Plg-deficient mice.
- Mmp13;Plau double-deficient mice exhibited increased keratinocyte layers and aberrant angiogenesis during healing.
Conclusions:
- A phenotypic overlap exists between MMP-13 and the plasminogen activation system in wound healing, but not in development.
- Dual targeting of urokinase-type plasminogen activator (uPA) and MMP-13 may offer a therapeutic strategy for tissue repair.
- This dual targeting approach could also be relevant for pathological processes like cancer invasion.
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