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April 1, 2007The Journal of Immunology476 citations

Scar-Associated Macrophages Are a Major Source of Hepatic Matrix Metalloproteinase-13 and Facilitate the Resolution of Murine Hepatic Fibrosis

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JFJonathan FallowfieldMMMasashi MizunoTKTimothy J. Kendall

Key Points

  • This research aims to identify the role of scar-associated macrophages in hepatic fibrosis and their contribution to matrix remodeling through MMP13.
  • Examined mmp13 gene expression in the context of scar-associated macrophages in liver fibrosis models.
  • Used CD11b-DTR-transgenic mice to deplete scar-associated macrophages and observe effects on MMP13 levels and fibrosis resolution.
  • Assessed expression and localization of MMP13 mRNA and protein in relation to macrophage presence during fibrosis regression.
  • Depletion of scar-associated macrophages led to a 5-fold reduction in mmp13 expression (p = 0.005).
  • MMP13-deficient mice exhibited delayed resolution of CCl(4)-induced liver fibrosis.
  • MMP13 localized to large phagocytes closely associated with hepatic scars, affirming its role in matrix resorption.

Abstract

Both the identity and source of the rodent collagenase(s) that mediates matrix remodeling in liver fibrosis remain elusive. We have recently demonstrated an unequivocal role for scar-associated macrophages (SAMs) in the spontaneous resolution of liver fibrosis and sought to determine whether SAMs are the source of matrix metalloproteinase (MMP) 13 (collagenase 3), considered to be the primary interstitial collagenase in rodents. In this study, we demonstrate an association between MMP13 expression and the presence of SAMs in the regression of experimental liver fibrosis. mmp13 gene expression was restricted to regions of fibrosis that were rich in SAMs. Both MMP13 mRNA and protein colocalized to large phagocytes within and directly apposed to hepatic scars. Using the CD11b-DTR-transgenic mouse to deplete SAMs in a model of chronic CCl(4) injury, we found that SAM depletion resulted in a 5-fold reduction in mmp13 message (p = 0.005). Furthermore, resolution of CCl(4)-induced fibrosis was retarded in MMP13-deficient mice. Thus, SAMs selectively, during resolution of fibrosis induce and use the major collagenase MMP13 to mediate the resorption of interstitial matrix and successfully remodel the fibrotic liver.

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Cite This Study

Fallowfield et al. (2007) studied this question.

synapsesocial.com/papers/69d7476458d71cbec648f5f2https://doi.org/10.4049/jimmunol.178.8.5288
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