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A Microphysiological System to Study Leukocyte-Endothelial Cell Interaction during Inflammation
Published on: December 9, 2021
Endotoxins stimulate neutrophil adhesion followed by synthesis and release of platelet-activating factor in
Junji Watanabe1, Gopal K Marathe, Paul O Neilsen
1Department of Human Molecular Biology and Genetics, University of Utah, Salt Lake City, Utah 84112-5330, USA.
Abstract:
Lipopolysaccharides and triacyl-cysteine-modified proteins of Gram-negative and positive organisms are potent endotoxins. Animal models show that the receptor for platelet-activating factor (PAF) is responsible for many of the deleterious effects of endotoxin, where regulated, localized PAF production localizes the inflammatory response. In contrast, biologically active analogs of PAF (PAF-like lipids) are generated by oxidative attack on phospholipids by chemical reactions that are unregulated and unlocalized. The identity and distribution of the PAF receptor ligand in endotoxemia is unknown. We found human polymorphonuclear leukocytes (PMNs) were a significant source of PAF receptor agonists after stimulation by either class of endotoxin. Production of PAF receptor agonists required that the PMN adhere to a surface, and adhesion (and therefore accumulation of PAF-like bioactivity) in response to endotoxic stimulation was delayed for several minutes. PAF-like oxidized phospholipids were found by mass spectroscopy, but biosynthetic PAF accounted for most of the phospholipid agonists arising from endotoxic stimulation. A significant portion of the PAF made by PMNs was secreted, in contrast to its near complete retention by other inflammatory cells. Endotoxic stimulation induced a respiratory burst with the production of superoxide and the formation and shedding of microparticles. Free and microparticle-bound PAF appeared in the media, and blocking microvesiculation with calpeptin blocked PAF release. The released material activated platelets, and platelets co-aggregated with endotoxin-stimulated PMNs. Adherent PMNs therefore behave differently than suspended cells and are a significant source of free PAF after endotoxin exposure. Leukocytes can couple endotoxic challenge to the widespread circulatory and inflammatory effects of endotoxin.
Insights
Human white blood cells (PMNs) release platelet-activating factor (PAF) when exposed to endotoxins. This PAF release, especially from adherent cells, contributes to inflammation and platelet activation during endotoxemia.
Area of Science:
- Immunology
- Biochemistry
- Cell Biology
Background:
- Endotoxins from Gram-negative and Gram-positive bacteria trigger potent inflammatory responses.
- Platelet-activating factor (PAF) receptor is implicated in many detrimental effects of endotoxin.
- The source and nature of PAF receptor ligands during endotoxemia remain unclear.
Purpose of the Study:
- To identify the source and characteristics of PAF receptor agonists generated during endotoxemia.
- To investigate the role of polymorphonuclear leukocytes (PMNs) in producing these agonists.
- To elucidate the mechanisms of PAF release and its contribution to endotoxin-induced inflammation.
Main Methods:
- Stimulation of human PMNs with different classes of endotoxins.
- Analysis of PAF receptor agonists using mass spectrometry.
- Investigation of PMN adhesion and its effect on agonist production.
- Assessment of PAF release via microparticles and its effect on platelets.
Main Results:
- Human PMNs are a significant source of PAF receptor agonists following endotoxin stimulation.
- Agonist production requires PMN adhesion to a surface, with a delayed onset.
- Biosynthetic PAF, rather than PAF-like oxidized phospholipids, constitutes the major agonist.
- PMNs secrete a substantial amount of PAF, unlike other inflammatory cells.
- Endotoxin exposure induces PMN respiratory burst, microparticle shedding, and PAF release (free and microparticle-bound).
- Released PAF activates platelets, leading to co-aggregation with PMNs.
Conclusions:
- Adherent PMNs are a critical source of free PAF in response to endotoxin exposure.
- Leukocyte-derived PAF production links endotoxic challenge to systemic inflammatory effects.
- Understanding this pathway offers potential therapeutic targets for endotoxemia.
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