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Antirheumatic therapy is associated with reduced complement activation in rheumatoid arthritis
Thao H P Nguyen1,2, Ingrid Hokstad3, Morten Wang Fagerland4
1Lillehammer Hospital for Rheumatic Diseases, Lillehammer, Norway.
Insights
Rheumatoid arthritis patients show elevated complement activation, indicated by soluble terminal complement complex (TCC). Antirheumatic treatments like methotrexate (MTX) and tumor necrosis factor inhibitors (TNFi) reduce TCC, with TNFi±MTX achieving sustained reduction and improving cardiovascular biomarkers.
Area of Science:
- Immunology
- Cardiovascular Medicine
- Rheumatology
Background:
- The complement system is implicated in cardiovascular disease (CVD) pathophysiology and rheumatoid arthritis (RA) associated atherogenesis.
- Limited data exists on complement activation during RA treatment and its link to premature CVD in RA patients.
Purpose of the Study:
- To investigate the impact of methotrexate (MTX) and tumor necrosis factor inhibitors (TNFi) on complement activation in RA patients.
- To assess associations between soluble terminal complement complex (TCC) levels and inflammatory/cardiovascular biomarkers.
Main Methods:
- Studied 64 RA patients on MTX monotherapy or TNFi±MTX.
- Measured TCC levels via ELISA at baseline, 6 weeks, and 6 months.
- Correlated TCC with inflammatory markers (CRP, ESR, IL-6) and lipid profiles.
Main Results:
- Elevated baseline TCC levels (89% above reference) were observed in RA patients.
- TCC significantly decreased after 6 weeks of treatment, with sustained reduction seen after 6 months of TNFi±MTX.
- Reduced TCC correlated with decreased inflammation and improved lipid profiles; higher baseline TCC was linked to endothelial dysfunction.
Conclusions:
- Active RA is associated with increased complement activation (elevated TCC).
- Antirheumatic treatments reduce TCC, with TNFi±MTX providing sustained effects over 6 months.
- Elevated baseline TCC in RA patients with endothelial dysfunction suggests complement's role in RA-related atherosclerosis.
Background:
The complement system plays an important role in pathophysiology of cardiovascular disease (CVD), and might be involved in accelerated atherogenesis in rheumatoid arthritis (RA). The role of complement activation in response to treatment, and in development of premature CVD in RA, is limited. Therefore, we examined the effects of methotrexate (MTX) and tumor necrosis factor inhibitors (TNFi) on complement activation using soluble terminal complement complex (TCC) levels in RA; and assessed associations between TCC and inflammatory and cardiovascular biomarkers.
Methods:
We assessed 64 RA patients starting with MTX monotherapy (n = 34) or TNFi with or without MTX co-medication (TNFi±MTX, n = 30). ELISA was used to measure TCC in EDTA plasma. The patients were examined at baseline, after 6 weeks and 6 months of treatment.
Results:
Median TCC was 1.10 CAU/mL, and 57 (89%) patients had TCC above the estimated upper reference limit (<0.70). Compared to baseline, TCC levels were significantly lower at 6-week visit (0.85 CAU/mL, p<0.0001), without significant differences between the two treatment regimens. Notably, sustained reduction in TCC was only achieved after 6 months on TNFi±MTX (0.80 CAU/mL, p = 0.006). Reductions in TCC after treatment were related to decreased C-reactive protein (CRP), erythrocyte sedimentation rate (ESR) and interleukin 6, and increased levels of total, high and low-density lipoprotein cholesterol. Similarly, baseline TCC was significantly related to baseline CRP, ESR and interleukin 6. Patients with endothelial dysfunction had higher baseline TCC than those without (median 1.4 versus 1.0 CAU/mL, p = 0.023).
Conclusions:
Patients with active RA had elevated TCC, indicating increased complement activation. TCC decreased with antirheumatic treatment already after 6 weeks. However, only treatment with TNFi±MTX led to sustained reduction in TCC during the 6-month follow-up period. RA patients with endothelial dysfunction had higher baseline TCC compared to those without, possibly reflecting involvement of complement in the atherosclerotic process in RA.
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