[HTML][HTML] Phenotypic overlap between MMP-13 and the plasminogen activation system during wound healing in mice

A Juncker-Jensen, LR Lund - PLoS One, 2011 - journals.plos.org
A Juncker-Jensen, LR Lund
PLoS One, 2011journals.plos.org
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 …
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.
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