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Hypocomplementemia as a Risk Factor for Organ Damage Accrual in Patients with Systemic Lupus Erythematosus
Warren Raymond1, Gro Eilertsen2, Johannes Nossent1,3
1Rheumatology Group, School of Medicine, University of Western Australia, Perth, Australia.
Insights
Monitoring low complement levels in systemic lupus erythematosus (SLE) patients does not predict organ damage. This study found hypocomplementemia (HC) in SLE does not correlate with disease activity or damage accrual over time.
Area of Science:
- Rheumatology
- Immunology
- Clinical Medicine
Background:
- Monitoring complement levels is common in systemic lupus erythematosus (SLE) for flare prediction.
- The utility of this monitoring strategy in preventing organ damage remains unclear.
Purpose of the Study:
- To investigate the predictive value of longitudinal complement levels for organ damage in SLE patients.
- To assess the relationship between hypocomplementemia (HC) and disease activity over time.
Main Methods:
- Longitudinal study of 102 SLE patients over a median of 13.8 years.
- Defined low complement as C3 < 0.84 g/L and/or C4 < 0.08 g/L.
- Assessed disease activity using clinical SLEDAI-2K and organ damage using SLICC-DI, with multivariate regression analysis.
Main Results:
- Hypocomplementemia (HC) observed in 67% of patients, often due to low C3.
- HC patients showed higher rates of anti-dsDNA Ab and aPL, but concurrent presence with anti-dsDNA Ab was infrequent.
- No significant difference in time-adjusted disease activity (cWAS) or organ damage accrual (SLICC-DI) between HC and non-HC groups.
Conclusions:
- Intermittent or sustained hypocomplementemia does not predict organ damage or disease activity in SLE.
- Discrepancies in low complement and anti-dsDNA Ab suggest complement activation by non-immune complex factors in SLE.
Abstract:
While it is a common practice to monitor complement levels in patients with systemic lupus erythematosus to aid in flare prediction and detection, it is unclear if this strategy is helpful in preventing subsequent organ damage. We studied longitudinal complement levels in 102 SLE patients during a median follow-up of 13.8 years (IQR 7.0, 23.1). Low complement was defined as C3 < 0.84 g/L and/or C4 < 0.08 g/L, disease activity by clinical SLEDAI-2K, and organ damage by SLICC-DI. We calculated a time averaged clinical SLEDAI score (cWAS) and performed multivariate regression models to assess the independent predictive value of low complement for organ damage at last visit. Hypocomplementemia (HC) was observed in 67% of all patients and was more often due to low C3 (97%) than low C4 (54%). Compared to patients not developing HC (33%), HC patients were more frequently positive for anti-dsDNA Ab (72% vs 36%, p < 0.01) and aPL (74% vs 40%, p < 0.01) but HC was concurrently present with anti-dsDNA Ab in only half the cases. The time-adjusted cWAS scores (1.9 vs 1.2, p = 0.9), frequency (SDI > 0, n = 60), and type of organ damage accrual were similar for patients with and without HC (OR 1.08, p > 0.20). Intermittent or sustained HC has no predictive value for damage accrual in SLE or the underlying disease activity over time. This together with significant discrepancies in the concurrence of low C3, C4, and anti-dsDNA Ab indicates frequent activation of the complement pathway by other factors than immune complexes in SLE.
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