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Protective effects of matrix metalloproteinase-12 following corneal injury
Author(s) -
Matilda F. Chan,
Jing Li,
Anthony A. Bertrand,
Amy-Jo Casbon,
Jeffrey Lin,
Inna Maltseva,
Zena Werb
Publication year - 2013
Publication title -
journal of cell science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.384
H-Index - 278
eISSN - 1477-9137
pISSN - 0021-9533
DOI - 10.1242/jcs.128033
Subject(s) - angiogenesis , biology , chemokine , matrix metalloproteinase , extracellular matrix , wound healing , inflammation , fibrosis , cxcl1 , immune system , infiltration (hvac) , immunology , neovascularization , microbiology and biotechnology , metalloproteinase , pathology , cancer research , medicine , biochemistry , physics , thermodynamics
Corneal scarring due to injury is a leading cause of blindness worldwide and results from dysregulated inflammation and angiogenesis during wound healing. Here we demonstrate that the extracellular matrix metalloproteinase MMP12 (macrophage metalloelastase) is an important regulator of these repair processes. Chemical injury resulted in higher expression of the fibrotic markers α-smooth muscle actin and type I collagen, and increased levels of angiogenesis in corneas of Mmp12(-/-) mice compared with corneas of wild-type mice. In vivo, we observed altered immune cell dynamics in Mmp12(-/-) corneas by confocal imaging. We determined that the altered dynamics were the result of an altered inflammatory response, with delayed neutrophil infiltration during the first day and excessive macrophage infiltration 6 days later, mediated by altered expression levels of chemokines CXCL1 and CCL2, respectively. Corneal repair returned to normal upon inhibition of these chemokines. Taken together, these data show that MMP12 has a protective effect on corneal fibrosis during wound repair through regulation of immune cell infiltration and angiogenesis.

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