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Updated: May 12, 2026

A Microphysiological System to Study Leukocyte-Endothelial Cell Interaction during Inflammation
Published on: December 9, 2021
β2 integrin-mediated cell-cell contact transfers active myeloperoxidase from neutrophils to endothelial cells
Uwe Jerke1, Susanne Rolle, Bettina Purfürst
1Experimental and Clinical Research Center, Charité Medical Faculty, Berlin, Germany.
Abstract:
Atherosclerosis and vasculitis both feature inflammation mediated by neutrophil-endothelial cell (EC) contact. Neutrophil myeloperoxidase (MPO) can disrupt normal EC function, although the mechanism(s) by which MPO is transferred to ECs are unknown. We tested the hypothesis that close, β2 integrin-dependent neutrophil-EC contact mediates MPO transfer from neutrophils to ECs. We used sensitive MPO assays and flow cytometry to detect MPO in ECs and demonstrate that ECs acquired MPO when contacted by neutrophils directly but not when ECs and neutrophils were separated in Transwells. The transfer was dependent on neutrophil number, exposure time, and incubation temperature. Transfer occurred in several EC types, increased with endotoxin, was not accompanied by MPO release into the medium, and was not abrogated by inhibiting degranulation to secretagogues. Confocal microscopy showed MPO internalization by ECs with cytoplasmic and nuclear staining. Neutrophils and ECs formed intimate contact sites demonstrated by electron microscopy. Blocking CD11b or CD18 β2 integrin chains, or using neutrophils from CD11b gene-deleted mice, reduced MPO transfer. EC-acquired MPO was enzymatically active, as demonstrated by its ability to oxidize the fluorescent probe aminophenyl fluorescein in the presence of a hydrogen peroxide source. The data suggest an alternative to EC uptake of soluble MPO, namely the cell contact-dependent, β2 integrin-mediated transfer from neutrophils. The findings could be of therapeutic relevance in atherosclerosis and vasculitis.
Insights
Neutrophil myeloperoxidase (MPO) transfers to endothelial cells (ECs) via direct cell contact, mediated by β2 integrins. This transfer mechanism is relevant to inflammatory diseases like atherosclerosis and vasculitis.
Area of Science:
- Immunology
- Cell Biology
- Vascular Biology
Background:
- Inflammation in atherosclerosis and vasculitis involves neutrophil-endothelial cell (EC) interactions.
- Neutrophil myeloperoxidase (MPO) disrupts EC function, but transfer mechanisms are unclear.
Purpose of the Study:
- To test if close, β2 integrin-dependent neutrophil-EC contact mediates MPO transfer.
- To investigate the mechanism and functional consequences of MPO transfer to ECs.
Main Methods:
- Utilized MPO assays and flow cytometry to quantify MPO in ECs.
- Employed confocal and electron microscopy to visualize MPO localization and cell contact.
- Investigated the role of β2 integrins (CD11b/CD18) in MPO transfer.
- Assessed the enzymatic activity of transferred MPO.
Main Results:
- ECs acquired MPO upon direct contact with neutrophils, dependent on neutrophil number, time, and temperature.
- MPO transfer occurred in various EC types, was enhanced by endotoxin, and did not involve MPO release into the medium.
- Blocking β2 integrins or using CD11b-deficient neutrophils significantly reduced MPO transfer.
- Internalized MPO retained enzymatic activity, capable of oxidizing a fluorescent probe.
Conclusions:
- Cell contact-dependent, β2 integrin-mediated transfer of MPO from neutrophils to ECs is a novel mechanism.
- This pathway offers an alternative to soluble MPO uptake by ECs.
- Findings have potential therapeutic implications for atherosclerosis and vasculitis.
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