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Published on: May 4, 2017
Inhibition of Classical and Alternative Complement Pathway by Ravulizumab and Eculizumab
Lea Gerischer1,2, Frauke Stascheit1,2, Maximilian Mönch3
1Department of Neurology With Experimental Neurology and Integrated Myasthenia Center, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin and Humboldt-Universität Zu Berlin, Berlin, Germany.
Objective:
To explore the feasibility of classical (CH50) and alternative (AH50) complement pathway activity as potential biomarkers for treatment guidance and monitoring during therapy with ravulizumab in patients with generalized myasthenia gravis (gMG) and compare these to therapeutic drug monitoring under eculizumab.
Methods:
In this prospective, exploratory real-world study CH50 and AH50, eculizumab and ravulizumab blood levels were assessed in patients with acetylcholine-receptor-antibody (AChR-ab) positive gMG. Patients were either pretreated with eculizumab or C5-inhibitor naïve. Samples were collected before the next infusion (end-of-dose). Laboratory data were correlated with patient-reported subjective duration of the ravulizumab effect.
Results:
Overall, 61 patients were enrolled. At the end of their respective dosing interval, median AH50 levels were more strongly suppressed with eculizumab than with ravulizumab (1% [0%-2%] versus 5% [3%-9%]; Cohen's d 2.2 [95% CI 1.5-2.8]). Patients who discontinued ravulizumab due to insufficient effects (n = 19; 33%) had higher median AH50 levels than those who continued (7% [4%-13%] versus 5% [3%-8%]; Cohen's d -0.9 [95% CI -1.3 to -0.4]). In 81% (n = 46) of patients, the therapeutic effect of ravulizumab diminished before the subsequent infusion after the standard 8-week interval. Higher AH50 levels were correlated with earlier symptom recurrence.
Interpretation:
Our results indicate potential differences in the ability of eculizumab and ravulizumab to suppress complement pathway activity through their respective dosing intervals. Additionally, higher AH50 levels might be a potential biomarker to predict poor therapy response and faster wearing off of ravulizumab's effect. However, these findings need to be validated in large multicenter studies.
Insights
Alternative pathway activity (AH50) may predict treatment response in generalized myasthenia gravis (gMG) patients receiving ravulizumab. Higher AH50 levels correlate with diminished therapeutic effects and earlier symptom recurrence, suggesting its potential as a biomarker.
Area of Science:
- Immunology
- Neurology
- Pharmacology
Background:
- Generalized myasthenia gravis (gMG) is an autoimmune disorder affecting neuromuscular transmission.
- Complement pathway activation plays a role in gMG pathogenesis.
- Current C5 inhibitors like eculizumab and ravulizumab target this pathway.
Purpose of the Study:
- To assess classical (CH50) and alternative (AH50) complement pathway activity as biomarkers for ravulizumab therapy in gMG.
- To compare complement activity monitoring with therapeutic drug monitoring of eculizumab.
- To explore AH50's role in predicting treatment response and duration.
Main Methods:
- Prospective, exploratory real-world study of 61 AChR-ab positive gMG patients.
- Assessed CH50 and AH50 levels, and eculizumab/ravulizumab levels at end-of-dose.
- Correlated laboratory data with patient-reported duration of ravulizumab effect.
Main Results:
- AH50 levels were less suppressed with ravulizumab (5%) compared to eculizumab (1%) at end-of-dose.
- Patients discontinuing ravulizumab due to insufficient effect had higher AH50 levels (7% vs 5%).
- 81% of patients experienced diminished ravulizumab effect before the 8-week interval; higher AH50 correlated with earlier recurrence.
Conclusions:
- Ravulizumab and eculizumab may differ in complement pathway suppression over their dosing intervals.
- Elevated AH50 levels may indicate poor response and faster wearing off of ravulizumab.
- Further validation in large multicenter studies is necessary.
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