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Updated: Aug 29, 2026

Intravital Microscopy of Leukocyte-endothelial and Platelet-leukocyte Interactions in Mesenterial Veins in Mice
Published on: August 13, 2015
Fluvastatin treatment inhibits leucocyte adhesion and extravasation in models of complement-mediated acute
F Fischetti1, R Carretta, G Borotto
1Department of Medicine, University of Trieste, Trieste, Italy. f.fischetti@fmc.units.it
Insights
Fluvastatin significantly reduced complement-mediated inflammation in rats, inhibiting polymorphonuclear leukocytes (PMN) recruitment and leucocyte extravasation. This suggests statins may help manage inflammatory flares in chronic diseases like SLE and rheumatoid arthritis.
Area of Science:
- Immunology
- Pharmacology
Background:
- Complement activation contributes to tissue damage in inflammatory conditions, particularly vasculitides.
- Statins possess anti-inflammatory properties independent of cholesterol reduction.
Purpose of the Study:
- To investigate the in vivo effect of fluvastatin on complement-mediated acute peritoneal inflammation.
Main Methods:
- Oral fluvastatin treatment in normo-cholesterolaemic rats.
- Induction of peritoneal inflammation using yeast-activated rat serum (Y-act RS) or lipopolysaccharide (LPS).
- Monitoring of polymorphonuclear leukocyte (PMN) recruitment and leucocyte extravasation via peritoneal washes and videomicroscopy.
Main Results:
- Fluvastatin treatment reduced PMN counts by 38% after LPS and 56% after Y-act RS.
- Significant inhibition of leucocyte adhesion (77%) and extravasation (72%) observed with fluvastatin.
- Demonstrated in vivo inhibition of complement-dependent inflammation.
Conclusions:
- Fluvastatin effectively inhibits acute peritoneal inflammation mediated by complement activation in vivo.
- Suggests a potential therapeutic role for statins in preventing inflammatory flares associated with complement activation in chronic diseases such as SLE and rheumatoid arthritis.
Abstract:
Complement activation plays a relevant role in the development of tissue damage under inflammatory conditions, and clinical and experimental observations emphasize its contribution to inflammatory vasculitides. Statins have recently been shown to reduce cardiovascular morbidity independently of plasma cholesterol lowering and in vitro studies support a direct anti-inflammatory action of these drugs. The aim of this study was to verify the in vivo effect of fluvastatin on complement-mediated acute peritoneal inflammation. The effect of oral treatment with fluvastatin was investigated in normo-cholesterolaemic rats that received intraperitoneal injection of either yeast-activated rat serum (Y-act RS) or lipopolysaccharide to induce peritoneal inflammation monitored by the number of PMN recruited in peritoneal fluid washes. In addition, vascular adherence and extravasation of leucocytes were evaluated by direct videomicroscopy examination on mesentery postcapillary venules topically exposed to Y-act RS. The number of PMN in the peritoneal washes of rats treated with fluvastatin was 38% lower than that of untreated animals (P < 0.05) 12 h after LPS injection, and was even lower (56%) in rats treated with Y-act RS already 8 h after injection (P < 0.02). Firm adhesion to endothelium and extravasation of leucocytes evaluated under direct videomicroscopy observation were significantly inhibited in fluvastatin treated rats (77% and 72%, respectively; P < 0.01), 120 min after treatment with Y-act RS. Our results demonstrate that fluvastatin inhibits in vivo complement-dependent acute peritoneal inflammation and suggest a role for statins in preventing the inflammatory flares usually associated with complement activation in chronic diseases, such as SLE or rheumatoid arthritis.
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