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Complete Description of the Three Pathways of the Complement System in a Series of 430 Patients with Rheumatoid
Dara Rodríguez-González1, María García-González2, Fuensanta Gómez-Bernal1
1Division of Central Laboratory, Hospital Universitario de Canarias, 38320 Santa Cruz de Tenerife, Spain.
Insights
Rheumatoid arthritis disease activity boosts complement system activity and levels. However, rheumatoid factor or ACPA positivity indicates complement consumption in RA patients.
Area of Science:
- Immunology
- Rheumatology
- Biochemistry
Background:
- The complement (C) system plays a role in rheumatoid arthritis (RA) pathogenesis.
- Comprehensive characterization of all three C pathways in RA patients is lacking.
Purpose of the Study:
- To investigate the association between detailed complement system analysis and RA patient characteristics.
- To correlate complement system status with disease activity, rheumatoid factor (RF), and anti-citrullinated protein autoantibodies (ACPA) levels.
Main Methods:
- Assessed functional assays and serum component levels for classical, alternative, and lectin C pathways in 430 RA patients.
- Measured components including C1q, factor D, properdin, C1-inhibitor, C2, C4, C4b, C3, C3a, C5, C5a, and C9.
- Utilized multivariable linear regression analysis to identify correlations.
Main Results:
- Disease activity positively correlated with C system proteins and functional assays, particularly terminal and common pathways.
- Higher disease activity linked to increased classical pathway function and terminal pathway products.
- RF or ACPA positivity associated with decreased classical pathway activity and lower C3a/C4b levels, indicating complement consumption.
Conclusions:
- RA disease activity is associated with increased complement system activation and component levels.
- Presence of RF or ACPA in RA patients suggests complement consumption.
- Detailed complement profiling in RA may inform targeted therapeutic strategies.
Abstract:
The complement (C) system is implicated in the etiopathogenesis of rheumatoid arthritis (RA). However, there is a lack of studies characterizing all three C pathways in RA patients. This study aimed to evaluate the association between an in-depth examination of the C system and RA patient characteristics, focusing on disease activity and the presence of rheumatoid factor and anti-citrullinated protein autoantibodies (ACPA). In a cohort of 430 RA patients, functional assays of the three C pathways (classical, alternative, and lectin) and serum levels of their components were assessed. Components included C1q (classical); factor D and properdin (alternative); lectin (lectin); C1-inhibitor; C2, C4, and C4b (classical and lectin); C3, C3a, and C4b (common); and C5, C5a, and C9 (terminal). A multivariable linear regression analysis showed significant positive correlations between C-reactive protein and C system proteins and functional assays, especially in the terminal and common pathways. Disease activity, measured by scores with or without acute phase reactants, positively correlated with the classical pathway functional test and terminal pathway products. Conversely, rheumatoid factor or ACPA presence was associated with lower classical pathway values and decreased C3a and C4b levels, suggesting complement depletion. In conclusion, RA disease activity increases C molecules and functional complement assays, while rheumatoid factor or ACPA positivity is linked to C consumption. Our study offers a detailed analysis of the complement system's role in RA, potentially guiding the development of more targeted and effective treatment strategies.
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