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Published on: June 8, 2022
Long-term data on two sisters with C3GN due to an identical, homozygous CFH mutation and autoantibodies
Insights
Two sisters with identical C3GN mutations showed different disease courses due to varying autoantibodies. Personalized medicine is key for complement-associated kidney diseases.
Area of Science:
- Nephrology
- Immunology
- Genetics
Background:
- C3 glomerulonephritis (C3GN) is a severe kidney disease from complement dysregulation, with debated therapies and scarce long-term data, especially post-transplant.
- Recurrence of C3GN after kidney transplantation is common, complicating management and prognosis.
Observation:
- This study details the 20+ year clinical courses of two sisters with a homozygous complement factor H (CFH) mutation and autoantibodies.
- The sisters exhibited discordant C3GN progression: one maintained normal kidney function, while the other developed end-stage kidney disease.
Findings:
- Genetic analysis revealed no additional mutations. However, autoantibodies differed: patient A's antibodies inhibited C3b deposition, while patient B's antibodies enhanced complement activation.
- Patient B received eculizumab peri-transplant, achieving stable graft function without C3GN recurrence.
Implications:
- This case highlights the critical role of autoantibody profiles in determining C3GN clinical outcomes.
- It underscores the need for personalized medicine in complement-associated kidney diseases, based on individual risk assessment.
Abstract:
C3 glomerulonephritis (C3GN) is a rare but severe form of kidney disease caused by fluid-phase dysregulation of the alternative complement pathway. Causative mutations in complement regulating genes as well as auto-immune forms of C3GN have been described. However, therapy and prognosis in individual patients remain a matter of debate and long-term data are scarce. This also applies for the management of transplant patients as disease recurrence post-transplant is frequent. Here, we depict the clinical courses of two sisters with the unique combination of an identical, homozygous mutation in the complement factor H (CFH) gene as well as autoantibodies with a clinical follow-up of more than 20 years. Interestingly, the sisters presented with discordant clinical courses of C3GN with normal kidney function in one (patient A) and end-stage kidney disease in the other sister (patient B). In patient B, eculizumab was administered immediately prior to and in the course after kidney transplantation, with the result of a stable graft function without any signs of disease recurrence. Comprehensive genetic work-up revealed no further disease-causing mutation in both sisters. Intriguingly, the auto-antibody profile substantially differed in both sisters: autoantibodies in patient A reduced the C3b deposition, while the antibodies identified in patient B increased complement activation and deposition of split products. This study underlines the concept of a personalized-medicine approach in complement-associated diseases after thorough evaluation of the individual risk profile in each patient.

