The role of complement C3 opsonization, C5a receptor, and CD14 inE. coli-induced up-regulation of granulocyte and monocyte CD11b/CD18 (CR3), phagocytosis, and oxidative burst in human whole blood

Author:

Brekke Ole-Lars12,Christiansen Dorte1,Fure Hilde1,Fung Michael3,Mollnes Tom E14

Affiliation:

1. Department of Laboratory Medicine, Nordland Hospital , Bodø , Norway

2. Institute of Medical Biology, University of Tromsø , Tromsø , Norway

3. Tanox Inc. , Houston, Texas , USA

4. Institute of Immunology, Rikshospitalet University Hospital and University of Oslo , Oslo , Norway

Abstract

AbstractThe relative role of complement and CD14 in Escherichia coli-induced leukocyte CD11b up-regulation, phagocytosis, and oxidative burst in human whole blood was examined. The highly specific thrombin inhibitor lepirudin was used as anticoagulant, as it does not affect complement activation. Complement inhibition at the level of C3 (anti-C2 and anti-factor D) and C5 (C5a receptor antagonist and anti-C5/C5a) efficiently inhibited CD11b up-regulation, phagocytosis, and oxidative burst in granulocytes. Monocyte activation was generally less complement-dependent, but when C3 activation was blocked, a pronounced inhibition of phagocytosis and oxidative burst was obtained. Only the combination of anti-C2 and antifactor D blocked E. coli C3 opsonization completely. Whole E. coli, disrupted E. coli, and the C3-convertase activator cobra venom factor up-regulated CD11b rapidly on both cell types, proportional to their complement activation potential in the fluid phase. In comparison, purified LPS at concentrations comparable with that present in the E. coli preparations did not activate complement. Oxidative burst was induced only by whole bacteria. Finally, the combination of complement inhibition and anti-CD14 completely blocked E. coli-induced granulocyte and monocyte CD11b up-regulation and quantitatively, virtually abolished phagocytosis. The results indicate that complement and CD14, despite differential effects on granulocytes and monocytes, are the two crucial, quantitative factors responsible for E. coli-induced CD11b, phagocytosis, and oxidative burst in both cell types.

Funder

Family Blix Foundation

Sigval Bergesen d.y. and Wife Nanki’s Foundation

Sonneborn Charitable Trust

Research Council of Rikshospitalet

Publisher

Oxford University Press (OUP)

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