Self-perpetuating mechanisms of immunoglobulin G aggregation in rheumatoid inflammation.
- 1 December 1985
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 76 (6) , 2084-2090
- https://doi.org/10.1172/jci112212
Abstract
When human IgG is exposed to free radical generating systems such as ultraviolet irradiation, peroxidizing lipids, or activated human neutrophils, characteristic auto-fluorescent monomeric and polymeric IgG is formed (excitation [Ex], 360 nm, emission [Em], 454 nm). 1 h ultraviolet irradiation of IgG results in the following reductions in constituent amino acids; cysteine (37.0%), tryptophan (17.0%), tyrosine (10.5%), and lysine (3.6%). The fluorescent IgG complexes, when produced in vitro, can stimulate the release of superoxide from normal human neutrophils. In the presence of excess unaltered IgG, further fluorescent damage to IgG occurs. Measurement and isolation of fluorescent monomeric and polymeric IgG by high performance liquid chromatography, from in vitro systems and from fresh rheumatoid sera and synovial fluid, indicates that identical complexes are present in vivo; all these fluorescent complexes share the property of enhancing free radical production from neutrophils. The results described in this study support the hypothesis that fluorescent monomeric and aggregated IgG may be formed in vivo by oxygen-centered free radicals derived from neutrophils, and that in rheumatoid inflammation this reaction may be self-perpetuating within the inflamed joint.This publication has 29 references indexed in Scilit:
- Direct activation of neutrophil chemiluminescence by rheumatoid sera and synovial fluid.Annals of the Rheumatic Diseases, 1983
- Fluorescence changes in human gamma-globulin induced by free-radical activityBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1983
- Generation of activated oxygen species by polymorphonuclear leukocytesFEBS Letters, 1980
- Generation of Hydroxyl Radical by Enzymes, Chemicals, and Human Phagocytes In VitroJournal of Clinical Investigation, 1979
- Superoxide generation by digitonin-stimulated guinea pig granulocytes. A basis for a continuous assay for monitoring superoxide production and for the study of the activation of the generating system.Journal of Clinical Investigation, 1978
- Human granulocyte generation of hydroxyl radical.The Journal of Experimental Medicine, 1978
- Complement and immunoglobulins stimulate superoxide production by human leukocytes independently of phagocytosis.Journal of Clinical Investigation, 1975
- ANTIGLOBULIN PRODUCTION TO ALTERED IgG IN RHEUMATOID ARTHRITISThe Lancet, 1975
- Immune complex disease.Annals of the Rheumatic Diseases, 1973
- Biological Defense Mechanisms. THE PRODUCTION BY LEUKOCYTES OF SUPEROXIDE, A POTENTIAL BACTERICIDAL AGENTJournal of Clinical Investigation, 1973