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.

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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