LPS-mediated neutrophil VEGF-A release is modulated by cannabinoid receptor activation

Mariantonia Braile1, Leonardo Cristinziano1, Simone Marcella1

  • 1Department of Translational Medical Sciences and Center for Basic and Clinical Immunology Research (CISI), University of Naples Federico II, Naples, Italy.

Insights

Cannabinoid receptor agonists can reduce vascular endothelial growth factor-A (VEGF-A) release from activated neutrophils (PMNs). This suggests potential therapeutic uses for sepsis, a condition linked to increased VEGF-A.

Area of Science:

  • Immunology
  • Pharmacology
  • Cell Biology

Background:

  • Neutrophils (PMNs) are key innate immune cells involved in inflammation and infection defense.
  • Angiogenesis, crucial in inflammation and tumor growth, is modulated by factors like VEGF-A, angiopoietins, HGF, and chemokines, often produced by immune cells.
  • Cannabinoid receptors (CB1 and CB2) activation is explored for modulating angiogenesis.

Purpose of the Study:

  • To investigate if CB1 and CB2 receptor activation by agonists affects lipopolysaccharide (LPS)-mediated angiogenic activity in human PMNs.
  • To determine the impact of CB agonists on the release of specific angiogenic factors from LPS-stimulated PMNs.
  • To assess the potential of CB agonists as a therapeutic strategy for sepsis by modulating VEGF-A production.

Main Methods:

  • Human PMNs were isolated and stimulated with CB1/CB2 agonists and/or antagonists, with or without LPS.
  • Angiogenic factors (VEGF-A, CXCL8, HGF) in supernatants were quantified using ELISA.
  • PMN activation markers were analyzed via flow cytometry.
  • In vitro angiogenesis (tube formation) and endothelial cell permeability assays were performed.

Main Results:

  • LPS-activated PMNs released VEGF-A, CXCL8, and HGF.
  • Low concentrations of CB1 and CB2 agonists inhibited LPS-induced VEGF-A release, but not CXCL8 or HGF.
  • CB agonist effects on VEGF-A were reversible with CB antagonists.
  • CB agonists reduced in vitro angiogenesis and endothelial permeability induced by LPS-activated PMN supernatants, primarily via VEGF-A reduction.

Conclusions:

  • Low-dose CB agonists inhibit VEGF-A release from LPS-activated human PMNs.
  • This inhibition of VEGF-A, a factor elevated in sepsis, suggests CB agonists could be a novel therapeutic approach for sepsis patients.
  • PMNs play a significant role in bacterial infections and sepsis outcomes, making their modulation a key therapeutic target.

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