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Updated: Jul 5, 2026

A Microphysiological System to Study Leukocyte-Endothelial Cell Interaction during Inflammation
Published on: December 9, 2021
Neutrophil secretion products pave the way for inflammatory monocytes
Oliver Soehnlein1, Alma Zernecke, Einar E Eriksson
1Department of Physiology and Pharmacology, Karolinska Institute, Stockholm, Sweden. oliver.sohnlein@ki.se
Abstract:
The leukocyte response in inflammation is characterized by an initial recruitment of polymorphonuclear leukocytes (PMN) preceding a second wave of monocytes to the site of injury or infection. In the mouse, 2 populations of monocytes have been identified, Gr1(-)CCR2(-)CX3CR1(hi) resident monocytes and Gr1(+)CCR2(+)CX3CR1(lo) inflammatory monocytes. Here, intravital microscopy of the musculus cremaster and a subcutaneous air pouch model were used to investigate a possible link between PMN extravasation and the subsequent emigration of inflammatory monocytes in response to local stimulation with PAF. In mice that were made neutropenic by injection of a PMN-depleting antibody, the extravasation of inflammatory monocytes, but not resident monocytes, was markedly reduced compared with mice with intact white blood cell count but was restored by local treatment with secretion of activated PMN. Components of the PMN secretion were found to directly activate inflammatory monocytes and further examination revealed PMN-derived LL-37 and heparin-binding protein (HBP/CAP37/azurocidin) as primary mediators of the recruitment of inflammatory monocytes via activation of formyl-peptide receptors. These data show that LL-37 and HBP specifically stimulate mobilization of inflammatory monocytes. This cellular cross-talk functionally results in enhanced cytokine levels and increased bacterial clearance, thus boosting the early immune response.
Insights
Polymorphonuclear leukocytes (PMN) signal inflammatory monocytes to sites of injury. PMN-derived LL-37 and heparin-binding protein directly recruit these monocytes, enhancing the early immune response and bacterial clearance.
Area of Science:
- Immunology
- Cellular Biology
Background:
- Inflammation involves sequential recruitment of leukocytes, starting with polymorphonuclear leukocytes (PMN) followed by monocytes.
- Two mouse monocyte populations exist: resident (Gr1(-)CCR2(-)CX3CR1(hi)) and inflammatory (Gr1(+)CCR2(+)CX3CR1(lo)).
Purpose of the Study:
- To investigate the link between PMN extravasation and inflammatory monocyte emigration.
- To identify mediators responsible for inflammatory monocyte recruitment.
Main Methods:
- Intravital microscopy in mouse cremaster muscle and air pouch models.
- PMN depletion using antibodies and assessment of monocyte recruitment.
- Analysis of PMN secretion components and their effect on monocyte activation.
Main Results:
- PMN depletion significantly reduced inflammatory monocyte extravasation.
- Restoration of PMN function or local PMN secretion rescued monocyte recruitment.
- PMN-derived LL-37 and heparin-binding protein (HBP) were identified as key mediators activating formyl-peptide receptors on inflammatory monocytes.
Conclusions:
- PMN-derived LL-37 and HBP directly stimulate inflammatory monocyte mobilization.
- This cellular cross-talk enhances cytokine levels and bacterial clearance, boosting the early immune response.
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