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Rituximab fails where eculizumab restores renal function in C3nef-related DDD
Caroline Rousset-Rouvière1, Mathilde Cailliez, Florentine Garaix
1Unité de Néphrologie Pédiatrique, Hôpital La Timone, AP-HM, Université de la Méditerranée, Marseille, France, caroline.rousset-rouviere@ap-hm.fr.
Insights
Eculizumab effectively treated a child with C3 nephritic factor (C3NeF)-associated dense deposit disease (DDD), halting rapid kidney failure. This highlights complement pathway-targeted therapy for severe C3 glomerulopathy.
Area of Science:
- Nephrology
- Immunology
- Complement System Biology
Background:
- Dense deposit disease (DDD), a C3 glomerulopathy (C3G), is a rare kidney disease often leading to end-stage renal disease.
- DDD pathogenesis involves complement alternative pathway dysregulation, sometimes with C3 nephritic factor (C3NeF).
- Current treatments include plasma exchange, CD20 antibodies, and terminal complement blockade with eculizumab.
Observation:
- An 8-year-old child with C3NeF and refractory DDD presented with nephritic syndrome and C3 undetectability.
- Initial treatment with methylprednisolone and mycophenolate mofetil led to remission, but relapse occurred after corticosteroid withdrawal.
- Despite intensified immunosuppression (rituximab), the patient developed acute renal failure requiring dialysis.
Findings:
- Eculizumab treatment rapidly resolved hematuria and improved kidney function, avoiding dialysis.
- Bimonthly eculizumab injections normalized renal function and reduced proteinuria to <0.5 g/day.
- The patient maintained remission on continuous eculizumab therapy.
Implications:
- Complement pathway-targeted therapy, specifically eculizumab, shows promise for rapidly progressive DDD.
- Early intervention with complement inhibitors may prevent irreversible glomerulosclerosis in C3G.
- This case underscores the critical role of complement alternative pathway dysregulation in C3G with DDD.
Background:
Dense deposit disease (DDD), a C3 glomerulopathy (C3G), is a rare disease with unfavorable progression towards end-stage kidney disease. The pathogenesis of DDD is due to cytotoxic effects related to acquired or genetic dysregulation of the complement alternative pathway, which is at times accompanied by the production of C3 nephritic factor (C3NeF), an auto-antibody directed against the alternative C3 convertase. Available treatments include plasma exchange, CD20-targeted antibodies, and a terminal complement blockade via the anti-C5 monoclonal antibody eculizumab.
Case-Diagnosis/Treatment:
We report here the case of an 8-year-old child with C3NeF and refractory DDD who presented with a nephritic syndrome. She tested positive for C3NeF activity; C3 was undetectable. Genetic analyses of the alternative complement pathway were normal. Methylprednisolone pulses and mycophenolate mofetil treatment resulted in complete recovery of renal function and a reduction in proteinuria. Corticosteroids were tapered and then withdrawn. Four months after corticosteroid discontinuation, hematuria and proteinuria recurred, and a renal biopsy confirmed an active DDD with a majority of extracapillary crescents. Despite an increase in immunosuppressive drugs, including methylprednisolone pulses and rituximab therapy, the patient suffered acute renal failure within 3 weeks, requiring dialysis. Eculizumab treatment resulted in a quick and impressive response. Hematuria very quickly resolved, kidney function improved, and no further dialysis was required. The patient received bimonthly eculizumab injections of 600 mg, allowing for normalization of renal function and reduction of proteinuria to <0.5 g per day. Since then, she continues to receive eculizumab.
Conclusion:
Complement regulation pathway-targeted therapy may be a specific and useful treatment for rapidly progressing DDD prior to the development of glomerulosclerosis. Our data provide evidence supporting the pivotal role of complement alternative pathway abnormalities in C3G with DDD.
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