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Differential effect of inflammatory stimuli on murine plasma C4 and factor B concentrations
M J Garlepp1, M J Fritzler, D A Hart
1Department of Medicine, University of Calgary, Alberta.
Abstract:
The in vivo effects of a variety of inflammatory stimuli on complement C4 and factor B plasma levels have been examined. MRL/++ (H-2k) mice were given intraperitoneal injections of lipopolysaccharide, turpentine, Corynebacterium parvum pyridine extract residue or high doses of indomethacin. All of these treatments induced an increase in plasma factor B concentrations, which in the case of C. parvum was dose dependent and persisted for at least 7 days. Lipopolysaccharide, turpentine and indomethacin produced decreases in plasma complement C4. C. parvum, however, produced an increase in plasma complement C4 to approximately 240% of controls which was independent of gender. It was also independent of major histocompatibility complex haplotype, since the same effect was seen in C57B1/6J-bg/bg and C57B1/6J-bg/+ mice. The gross increment in complement C4 was, however, related to the major histocompatibility complex. H-2K mice ("low complement C4") had smaller increments than H-2b ("high complement C4"). Mycobacterium bovis (BCG) also produced a transient increase in C4 in the H-2b mice as well as a prolonged increase in factor B levels. These data (i) suggest that different inflammatory stimuli induce different mediators which may have differential effects on factor B and complement C4 synthesis, and (ii) emphasize the independent regulation of complement C4 and factor B. Qualitative variations in the mediators elaborated during chronic inflammatory diseases may help determine complement C4 fluctuations in systemic lupus erythematosus and the wide range of complement C4 concentrations seen in MRL/1 pr mice with active immune complex disease.
Insights
Different inflammatory stimuli uniquely alter plasma levels of complement C4 and factor B in mice. These findings highlight the independent regulation of these crucial immune system proteins.
Area of Science:
- Immunology
- Biochemistry
- Genetics
Background:
- Complement C4 and factor B are key proteins in the immune system.
- Inflammatory responses can significantly impact complement protein levels.
- Understanding these interactions is vital for autoimmune disease research.
Purpose of the Study:
- To investigate the in vivo effects of various inflammatory stimuli on plasma levels of complement C4 and factor B.
- To determine if these effects are stimulus-dependent and related to genetic factors.
Main Methods:
- Mice (MRL/++ H-2k) were administered intraperitoneal injections of lipopolysaccharide, turpentine, Corynebacterium parvum, or indomethacin.
- Plasma levels of complement C4 and factor B were measured.
- Effects were analyzed in relation to stimulus type, dose, duration, gender, and major histocompatibility complex (MHC) haplotype.
Main Results:
- All tested stimuli increased plasma factor B levels; C. parvum showed dose-dependent and sustained increases.
- Lipopolysaccharide, turpentine, and indomethacin decreased plasma complement C4.
- C. parvum significantly increased complement C4, an effect independent of gender and MHC haplotype, though the magnitude of increase varied with MHC.
- Mycobacterium bovis (BCG) caused transient C4 increase and prolonged factor B increase in H-2b mice.
Conclusions:
- Different inflammatory stimuli induce distinct mediators affecting factor B and complement C4 synthesis differently.
- Complement C4 and factor B exhibit independent regulation.
- Mediator variations in chronic inflammation may explain complement C4 fluctuations in diseases like lupus erythematosus.