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Inhibition of classical complement activation attenuates liver ischaemia and reperfusion injury in a rat model

Heijnen BH, Straatsburh IH, Padilla ND +3 more2006Clinical & Experimental ImmunologyAnimal Study
10.1111/j.1365-2249.2005.02958.xPubMedFree full text
GastrointestinalImmune/Innate

Abstract

SummaryActivation of the complement system contributes to the pathogenesis of ischaemia/reperfusion (I/R) injury. We evaluated inhibition of the classical pathway of complement using C1-inhibitor (C1-inh) in a model of 70% partial liver I/R injury in male Wistar rats (n = 35). C1-inh was administered at 100, 200 or 400 IU/kg bodyweight, 5 min before 60 min ischaemia (pre-I) or 5 min before 24 h reperfusion (end-I). One hundred IU/kg bodyweight significantly reduced the increase of plasma levels of activated C4 as compared to albumin-treated control rats and attenuated the increase of alanine aminotransferase (ALT). These effects were not better with higher doses of C1-inh. Administration of C1-inh pre-I resulted in lower ALT levels and higher bile secretion after 24 h of reperfusion than administration at end-I. Immunohistochemical assessment indicated that activated C3, the membrane attack complex C5b9 and C-reactive protein (CRP) colocalized in hepatocytes within midzonal areas, suggesting CRP is a mediator of I/R-induced, classical complement activation in rats. Pre-ischaemic administration of C1-inh is an effective pharmacological intervention to protect against liver I/R injury.

Key Biomarkers

Alanine aminotransferase (ALT)C-reactive protein (CRP)C3 (activated)C4a (activated C4)C5b9 (membrane attack complex)

Symptom Clusters

Liver ischaemia/reperfusion injury

Cited By (1)

  • From complement to complosome in non‐alcoholic fatty liver disease: When location mattersLiver International · 2023

References (2)

  • Blocking of classical complement pathway inhibits endothelial adhesion molecule expression and preserves ischemic myocardium from reperfusion injuryJournal of Pharmacology and Experimental Therapeutics · 1998
  • Activation of the fifth component of human complement by oxygen-derived free radicals, and by methionine oxidizing agents: a comparisonImmunobiology · 1992

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