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Published on: February 8, 2019
Pathology after eculizumab in dense deposit disease and C3 GN
Leal C Herlitz1, Andrew S Bomback, Glen S Markowitz
1Division of Renal Pathology, Department of Pathology and Cell Biology, Columbia University Medical Center, New York, NY 10032, USA. LB684@columbia.edu
Insights
Eculizumab showed partial benefit in C3 glomerulopathies by blocking the complement pathway. However, persistent C3 and C5b-9 deposits and new IgG deposits were observed, indicating complex drug-tissue interactions.
Area of Science:
- Nephrology
- Immunology
- Complement System Biology
Background:
- C3 glomerulopathies (C3G) involve alternative complement pathway dysregulation.
- Eculizumab targets complement component C5, potentially benefiting C3G.
Purpose of the Study:
- To evaluate renal biopsy findings before and after eculizumab therapy in C3G patients.
- To assess the efficacy of C5 blockade in dense deposit disease and C3 GN.
Main Methods:
- Analysis of renal biopsies (immunofluorescence, electron microscopy) pre- and post-eculizumab treatment.
- Clinical assessment of disease activity and chronicity.
Main Results:
- Three of five patients showed reduced glomerular activity and neutrophil infiltration.
- Persistent C3 and C5b-9 deposits were noted, suggesting a long half-life of C5b-9.
- De novo monoclonal IgG deposits (IgG2/IgG4) appeared post-treatment, mimicking monoclonal Ig deposition disease.
Conclusions:
- Eculizumab offers partial benefit in some C3G cases by inhibiting C5a production.
- Persistent complement deposits and novel IgG deposits suggest complex long-term drug-tissue interactions.
- The clinical significance of these findings and the de novo IgG deposits remains uncertain.
Abstract:
Eculizumab might benefit C3 glomerulopathies mediated by dysregulation of the alternative complement pathway. Here, we report renal biopsy findings before and after eculizumab therapy in three patients with dense deposit disease and two with C3 GN. All pretreatment biopsies had glomerular and tubular basement membrane deposits that stained exclusively for C3 without significant Ig. After 1 year of therapy, there was reduction in active glomerular proliferation and neutrophil infiltration in three of five patients, consistent with effective C5 blockade, which prevents production of chemotactin C5a. One individual with mild mesangial disease had no significant change in activity or chronicity. One patient exhibited persistent activity and worsening chronicity despite therapy. Immunofluorescence showed no significant reduction in C3 or C5b-9, and electron microscopy revealed persistent deposits in all cases, suggesting a long t(1/2) of C5b-9 in extracellular matrix. Normal renal biopsies stained positive for C5b-9 in glomeruli, tubular basement membranes, and vessel walls, albeit at lower intensity than in C3 glomerulopathy. This indication of physiologic levels of C5b-9 activation in normal kidney potentially explains the localization of deposits in patients with dysregulation of the alternative complement pathway. All post-treatment biopsies showed de novo monoclonal staining for IgG-κ in the same distribution as C3 and C5b-9, mimicking monoclonal Ig deposition disease (MIDD). Staining of the γ heavy chain was restricted to the IgG2 and IgG4 subclasses, suggesting the binding of monoclonal eculizumab to C5 in renal tissues. The long-term effects of this apparent drug-tissue interaction are unknown.
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