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Updated: May 5, 2026

Isolation of Primary Myofibroblasts from Mouse and Human Colon Tissue
Published on: October 13, 2013
Myofibroblast matrix metalloproteinases activate the neutrophil chemoattractant CXCL7 from intestinal epithelial
Laurens Kruidenier1, Thomas T MacDonald, Jane E Collins
1Research Centre in Gastroenterology, Institute of Cell and Molecular Science, Queen Mary's School of Medicine and Dentistry, University of London, London, England. l.kruidenier@qmul.ac.uk
Background & Aims:
The up-regulation of matrix metalloproteinases (MMPs) in the inflamed gut has mainly been associated with mucosal degradation and ulceration. However, their in vitro capacity to specifically cleave inflammatory mediators indicates that MMPs may have a profound immunoregulatory impact. We hypothesized that MMPs proteolytically modify intestinal epithelial chemokine signaling.
Methods:
Interleukin-1beta-stimulated Caco-2 cells were exposed basolaterally to nanomolar concentrations of activated MMP-3 or cocultured with interleukin-1beta-stimulated, MMP-producing, colonic myofibroblasts (CCD-18co). The conditioned media were subjected to chemotaxis assays. In addition, epithelial cells from patients with colitis were examined by real-time polymerase chain reaction, immunoblotting, and immunohistochemistry.
Results:
MMP-3 dose-dependently induced the neutrophil (up to 5-fold) but not monocyte chemoattractant capacity of Caco-2 cells. A similar Caco-2 chemotactic response was obtained in the Caco-2/CCD-18co cocultures. The principal mediator of these protease-related effects was identified as the potent neutrophil chemokine CXCL7 (neutrophil activating peptide 2), a proteolytic cleavage product of chemotactically inert platelet basic protein (PBP), not previously identified in the intestine. Antibodies against CXCL7 inhibited the MMP-induced chemotactic response by 84%, and PBP mRNA and protein were detected in stimulated Caco-2 but not in CCD-18co cells. Furthermore, PBP transcript and protein levels were low in the mucosa and in isolated epithelial cells from patients with Crohn's disease and from normal intestine but increased up to 13-fold in patients with ulcerative colitis.
Conclusions:
These findings identify a novel proinflammatory action of MMPs in inflammation and suggest that lamina propria myofibroblasts are required to achieve maximal intestinal epithelial immune activation.
Insights
Matrix metalloproteinases (MMPs) can promote inflammation by modifying chemokine signaling. This study found MMP-3 activates the chemokine CXCL7, increasing neutrophil attraction in the gut, particularly in ulcerative colitis.
Area of Science:
- Gastroenterology
- Immunology
- Molecular Biology
Background:
- Matrix metalloproteinases (MMPs) are upregulated in inflamed intestines, typically linked to tissue damage.
- MMPs' ability to cleave inflammatory mediators suggests a potential immunoregulatory role.
- This study investigates if MMPs modify intestinal epithelial chemokine signaling.
Purpose of the Study:
- To determine if matrix metalloproteinases (MMPs) proteolytically modify intestinal epithelial chemokine signaling.
- To investigate the role of MMP-3 and myofibroblasts in intestinal immune activation.
Main Methods:
- Caco-2 cells stimulated with interleukin-1beta were exposed to MMP-3 or cocultured with myofibroblasts (CCD-18co).
- Conditioned media were analyzed using chemotaxis assays.
- Epithelial cells from colitis patients were examined via real-time PCR, immunoblotting, and immunohistochemistry.
Main Results:
- MMP-3 dose-dependently increased Caco-2 cell neutrophil chemoattractant capacity.
- The key mediator identified was CXCL7 (neutrophil activating peptide 2), a product of platelet basic protein (PBP).
- PBP levels were significantly elevated in ulcerative colitis patients' intestinal epithelial cells.
Conclusions:
- Matrix metalloproteinases (MMPs) possess a novel proinflammatory function in the gut.
- MMP-3 activates CXCL7, enhancing neutrophil recruitment.
- Lamina propria myofibroblasts are essential for maximal intestinal epithelial immune activation.
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