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Updated: Mar 25, 2026

Methods for Quantitative Detection of Antibody-induced Complement Activation on Red Blood Cells
Published on: January 29, 2014
New insight into the effects of heparinoids on complement inhibition by C1-inhibitor
F Poppelaars1, J Damman2, E L de Vrij3
1Department of Internal Medicine, Division of Nephrology, University of Groningen, University Medical Center Groninge, Groningen.
Insights
Heparinoids enhance C1-esterase inhibitor (C1-INH) to block all three complement pathways (classical, lectin, and alternative). This combination shows promise for treating complement-mediated diseases with minimal impact on blood coagulation at low doses.
Area of Science:
- Immunology and Pharmacology
Background:
- Complement activation is implicated in various diseases, making complement inhibition a key therapeutic strategy.
- C1-esterase inhibitor (C1-INH) regulates classical (CP) and lectin pathways (LP), but its effect on the alternative pathway (AP) is debated.
- Heparin and glycosaminoglycans potentiate C1-INH's CP inhibition, yet their effects on LP and AP inhibition are unknown.
Purpose of the Study:
- To investigate the impact of C1-esterase inhibitor (C1-INH) on the classical (CP), lectin (LP), and alternative (AP) complement pathways, with and without heparinoids.
- To assess the combined effects of heparinoids and C1-INH on blood coagulation.
- To evaluate the therapeutic potential of combining heparinoids with C1-INH for complement-mediated diseases.
Main Methods:
- Dose-dependent analysis of C1-INH, heparinoids, and their combinations using pooled serum.
- Measurement of functional complement activities across all three pathways (CP, LP, AP) via the Wielisa® kit.
- Determination of activated partial thromboplastin time (aPTT) to assess effects on blood coagulation.
Main Results:
- Both C1-INH and heparinoids individually inhibited all three complement pathways significantly.
- Heparinoids significantly enhanced C1-INH's inhibitory capacity on the CP and LP.
- Heparinoids also potentiated C1-INH's AP inhibition within specific concentration ranges, with minimal impact on coagulation at low combined concentrations.
Conclusions:
- Heparinoids significantly potentiate the inhibitory effects of C1-INH across all three complement pathways.
- The combination of heparinoids and C1-INH presents a promising therapeutic option for complement-mediated diseases.
- This combined approach may offer a potentially cost-effective treatment strategy.
Abstract:
Complement activation is of major importance in numerous pathological conditions. Therefore, targeted complement inhibition is a promising therapeutic strategy. C1-esterase inhibitor (C1-INH) controls activation of the classical pathway (CP) and the lectin pathway (LP). However, conflicting data exist on inhibition of the alternative pathway (AP) by C1-INH. The inhibitory capacity of C1-INH for the CP is potentiated by heparin and other glycosaminoglycans, but no data exist for the LP and AP. The current study investigates the effects of C1-INH in the presence or absence of different clinically used heparinoids on the CP, LP and AP. Furthermore, the combined effects of heparinoids and C1-INH on coagulation were investigated. C1-INH, heparinoids or combinations were analysed in a dose-dependent fashion in the presence of pooled serum. Functional complement activities were measured simultaneously using the Wielisa(®) -kit. The activated partial thrombin time was determined using an automated coagulation analyser. The results showed that all three complement pathways were inhibited significantly by C1-INH or heparinoids. Next to their individual effects on complement activation, heparinoids also enhanced the inhibitory capacity of C1-INH significantly on the CP and LP. For the AP, significant potentiation of C1-INH by heparinoids was found; however, this was restricted to certain concentration ranges. At low concentrations the effect on blood coagulation by combining heparinoids with C1-INH was minimal. In conclusion, our study shows significant potentiating effects of heparinoids on the inhibition of all complement pathways by C1-INH. Therefore, their combined use is a promising and a potentially cost-effective treatment option for complement-mediated diseases.
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