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Updated: May 16, 2026

Methods for Quantitative Detection of Antibody-induced Complement Activation on Red Blood Cells
Published on: January 29, 2014
A trial of complement inhibition in a patient with cryoglobulin-induced glomerulonephritis
Patricia Hirt-Minkowski1, Marten Trendelenburg, Isabel Gröschl
1Clinic for Transplantation Immunology and Nephrology, University Hospital Basel, Basel, Switzerland.
Insights
Cryoglobulinemia causes kidney inflammation. Complement C5 inhibition with eculizumab showed limited benefit, suggesting other inflammatory pathways dominate in this rare glomerulonephritis.
Area of Science:
- Nephrology
- Immunology
- Pathology
Background:
- Cryoglobulinemia can lead to immune complex-mediated glomerulonephritis.
- The role of complement in human cryoglobulin-induced glomerulonephritis is not fully understood.
- Animal models suggest complement activation is key in glomerular inflammation.
Observation:
- A patient with mixed essential cryoglobulinemia type II presented with relapsing proteinuria and renal impairment.
- Renal biopsies revealed significant immunoglobulin and complement deposits with high neutrophil counts.
- Low plasma complement levels were noted during disease flares.
Findings:
- Treatment with the anti-C5 antibody eculizumab initially stabilized renal function but failed to prevent creatinine increase.
- Plasmapheresis was reinstituted to manage renal function.
- The study highlights the complex inflammatory processes in cryoglobulin-induced glomerulonephritis.
Implications:
- Complement activation may contribute to renal damage in cryoglobulinemia.
- Targeting complement C5 alone may not be sufficient for managing all cases.
- Further research is needed to elucidate dominant inflammatory pathways in this condition.
Abstract:
Cryoglobulinemia induces an immune complex-mediated glomerulonephritis that is characterized by the presence of large immune deposits, including complement C3 and C5b-9, marked macrophage influx and mesangial cell proliferation. The precise role of complement in cryoglobulin-induced glomerulonephritis in humans remains unclear, whereas in mice there has been evidence that complement activation might be a central factor favoring glomerular inflammation, particularly by the recruitment of neutrophils. We report on an exceptional case of cryoglobulin-induced glomerulonephritis in a patient with mixed essential cryoglobulinemia type II. The clinical features included relapsing proteinuria and renal function impairment that were controlled by plasmapheresis. Complement was low in plasma and two renal biopsies at 1-year interval showed prominent immunoglobulin and complement deposits, with unusual high numbers of neutrophils. In a 1-patient clinical trial, we tested whether the monoclonal anti-C5 antibody eculizumab would be sufficient to control renal function at the time of a relapse. Although during the initial weeks renal function was stabilized, slow increase in creatinine could not be controlled by this treatment, so that plasmapheresis was reinstituted. This result suggests that despite evidence for a role of complement in enhancing renal damage in this patient, other inflammatory processes dominated.
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