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Updated: Aug 20, 2025

Methods for Quantitative Detection of Antibody-induced Complement Activation on Red Blood Cells
Published on: January 29, 2014
Distinction of early complement classical and lectin pathway activation via quantification of C1s/C1-INH and
Lisa Hurler1, Erik J M Toonen2, Erika Kajdácsi1
1Department of Internal Medicine and Haematology, Semmelweis University, Budapest, Hungary.
Insights
New immunoassays detect C1s/C1-INH and MASP-1/C1-INH complexes, serving as early markers for classical and lectin pathway complement activation. These validated assays aid in understanding complement-mediated diseases like COVID-19.
Area of Science:
- Immunology
- Complement System Biology
- Biochemistry
Background:
- Current complement activation markers (split products) are downstream of C3, lacking specificity for early classical (CP) or lectin pathway (LP) activation.
- C4d indicates CP/LP activation but cannot differentiate between these two pathways.
- C1 esterase inhibitor (C1-INH) regulates active enzymes (C1s/C1r for CP, MASP-1/MASP-2 for LP) via covalent complex formation.
Purpose of the Study:
- To develop and validate immunoassays for detecting C1s/C1-INH and MASP-1/C1-INH complexes.
- To assess the utility of these complexes as early markers for CP and LP activation.
- To establish reference ranges in healthy adults and validate assays in a clinical setting, including COVID-19 patients.
Main Methods:
- Development and thorough testing of two sandwich ELISAs for C1s/C1-INH and MASP-1/C1-INH complexes.
- Investigation of complex levels upon zymosan activation to assess suitability as early pathway markers.
- Clinical validation using EDTA plasma samples from 414 COVID-19 patients and 96 healthy controls.
Main Results:
- Validated immunoassays reliably measure C1s/C1-INH and MASP-1/C1-INH concentrations in plasma.
- Both complex levels increased upon zymosan activation, indicating suitability as early CP and LP activation markers.
- Reference ranges established: C1s/C1-INH (1846 ± 1060 ng/mL) and MASP-1/C1-INH (median 36.9 ng/mL).
- Significantly elevated levels of both complexes observed in COVID-19 patients compared to healthy controls (p<0.0001).
Conclusions:
- The developed immunoassays accurately measure C1-INH complex levels.
- C1s/C1-INH and MASP-1/C1-INH complexes are suitable markers for assessing early classical and lectin pathway activation.
- These novel markers offer added value for investigating complement activation in human diseases.
Abstract:
The most commonly used markers to assess complement activation are split products that are produced through activation of all three pathways and are located downstream of C3. In contrast, C4d derives from the cleavage of C4 and indicates either classical (CP) or lectin pathway (LP) activation. Although C4d is perfectly able to distinguish between CP/LP and alternative pathway (AP) activation, no well-established markers are available to differentiate between early CP and LP activation. Active enzymes of both pathways (C1s/C1r for the CP, MASP-1/MASP-2 for the LP) are regulated by C1 esterase inhibitor (C1-INH) through the formation of covalent complexes. Aim of this study was to develop validated immunoassays detecting C1s/C1-INH and MASP-1/C1-INH complex levels. Measurement of the complexes reveals information about the involvement of the respective pathways in complement-mediated diseases. Two sandwich ELISAs detecting C1s/C1-INH and MASP-1/C1-INH complex were developed and tested thoroughly, and it was investigated whether C1s/C1-INH and MASP-1/C1-INH complexes could serve as markers for either early CP or LP activation. In addition, a reference range for these complexes in healthy adults was defined, and the assays were clinically validated utilizing samples of 414 COVID-19 patients and 96 healthy controls. The immunoassays can reliably measure C1s/C1-INH and MASP-1/C1-INH complex concentrations in EDTA plasma from healthy and diseased individuals. Both complex levels are increased in serum when activated with zymosan, making them suitable markers for early classical and early lectin pathway activation. Furthermore, measurements of C1-INH complexes in 96 healthy adults showed normally distributed C1s/C1-INH complex levels with a physiological concentration of 1846 ± 1060 ng/mL (mean ± 2SD) and right-skewed distribution of MASP-1/C1-INH complex levels with a median concentration of 36.9 (13.18 - 87.89) ng/mL (2.5-97.5 percentile range), while levels of both complexes were increased in COVID-19 patients (p<0.0001). The newly developed assays measure C1-INH complex levels in an accurate way. C1s/C1-INH and MASP-1/C1-INH complexes are suitable markers to assess early classical and lectin pathway activation. An initial reference range was set and first studies showed that these markers have added value for investigating and unraveling complement activation in human disease.
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