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C3 glomerulonephritis: clinicopathological findings, complement abnormalities, glomerular proteomic profile,
Sanjeev Sethi1, Fernando C Fervenza, Yuzhou Zhang
1Division of Anatomic Pathology, Department of Laboratory Medicine and Pathology, Mayo Clinic, Rochester, MN 55905, USA. Sethi.sanjeev@mayo.edu
Insights
C3 glomerulonephritis (C3GN) stems from alternative complement pathway (AP) issues. Diverse genetic and acquired AP abnormalities cause C3GN, impacting glomerular function and leading to kidney injury.
Area of Science:
- Nephrology
- Immunology
- Complement System
Background:
- C3 glomerulonephritis (C3GN) is a kidney disease linked to the alternative complement pathway (AP).
- Understanding C3GN's diverse causes and clinical course is crucial for patient management.
Purpose of the Study:
- To investigate the clinical features, pathological findings, AP abnormalities, and outcomes in C3GN patients.
- To identify specific genetic and acquired factors contributing to C3GN.
Main Methods:
- Analysis of 12 C3GN cases including clinical data, kidney biopsies, AP pathway assessment, and glomerular proteomics.
- Utilized laser dissection and mass spectrometry for detailed glomerular analysis.
Main Results:
- C3GN affected all ages and genders, presenting with hematuria and proteinuria; renal function was mostly stable.
- Heterogeneous AP abnormalities included C3 nephritic factors, Factor H alleles (H402, V62), autoantibodies, and gene mutations (CFH, CFI, CFHR).
- Glomerular proteomic analysis revealed accumulation of AP and terminal complement proteins.
Conclusions:
- C3GN arises from varied alternative complement pathway dysregulation.
- These abnormalities lead to glomerular injury and kidney disease progression.
Abstract:
C3 glomerulonephritis (C3GN) is a recently described disorder that typically results from abnormalities in the alternative pathway (AP) of complement. Here, we describe the clinical features, kidney biopsy findings, AP abnormalities, glomerular proteomic profile, and follow-up in 12 cases of C3GN. This disorder equally affected all ages, both genders, and typically presented with hematuria and proteinuria. In both the short and long term, renal function remained stable in the majority of patients with native kidney disease. In two patients, C3GN recurred within 1 year of transplantation and resulted in a decline in allograft function. Kidney biopsy mainly showed a membranoproliferative pattern, although both mesangial proliferative and diffuse endocapillary proliferative glomerulonephritis were noted. AP abnormalities were heterogeneous, both acquired and genetic. The most common acquired abnormality was the presence of C3 nephritic factors, while the most common genetic finding was the presence of H402 and V62 alleles of Factor H. In addition to these risk factors, other abnormalities included Factor H autoantibodies and mutations in CFH, CFI, and CFHR genes. Laser dissection and mass spectrometry of glomeruli from patients with C3GN showed accumulation of AP and terminal complement complex proteins. Thus, C3GN results from diverse abnormalities of the alternative complement pathway leading to subsequent glomerular injury.
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