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Published on: January 2, 2013
Complement component C3 and C5b-9 deposition on hypoxia reperfused endothelial cells by non-HLA antibodies against
Tineke Kardol-Hoefnagel1, Laura A Michielsen2, Anna M Ehlers1,3
1Center for Translational Immunology, University Medical Center Utrecht, Utrecht, The Netherlands.
Insights
Antibodies targeting Rho GDP-dissociation inhibitor 2 (RhoGDI2) may harm kidney transplants. These antibodies activate complement, potentially causing tissue injury during ischemia reperfusion, contributing to graft loss.
Area of Science:
- Transplant immunology
- Autoimmunity
- Complement system
Background:
- Antibodies against Rho GDP-dissociation inhibitor 2 (RhoGDI2) correlate with poor kidney graft survival.
- The pathogenic role of anti-RhoGDI2 antibodies in graft loss, particularly after ischemia, is not fully understood.
Purpose of the Study:
- To investigate the pathogenic role of anti-RhoGDI2 antibodies in kidney transplant graft loss.
- To analyze the IgG subclass profile and titer dynamics of anti-RhoGDI2 antibodies.
- To assess RhoGDI2 expression on endothelial cells and the complement-fixing ability of these antibodies.
Main Methods:
- Analysis of IgG subclass and antibody titers in kidney transplant recipients.
- Investigation of RhoGDI2 expression on endothelial cells post-hypoxia reperfusion.
- Complement fixation assays using imaging flow cytometry.
Main Results:
- Anti-RhoGDI2 antibodies in patients were predominantly IgG1, with stable titers unaffected by rejection.
- RhoGDI2 expression on endothelial cells appeared to increase after hypoxia reperfusion.
- Anti-RhoGDI2 antibodies, including patient-derived ones, demonstrated complement-fixing properties, co-localizing with C3 on endothelial cells.
Conclusions:
- Anti-RhoGDI2 antibodies may play a pathogenic role in kidney graft loss.
- Complement activation by these antibodies during ischemia reperfusion is a potential mechanism for tissue injury.
Abstract:
Antibodies against Rho GDP-dissociation inhibitor 2 (RhoGDI2) are associated with inferior graft survival in transplant patients receiving a kidney from deceased donors. Although this suggests that these antibodies contribute to graft injury because of ischemia, it remains unknown whether they are also pathogenically involved in the process of graft loss. To study this, we firstly analyzed the IgG subclass profile of anti-RhoGDI2 antibodies in kidney transplant recipients, and whether antibody titers change over time or because of acute rejection. Next, we investigated the expression of RhoGDI2 on primary kidney and lung endothelial cells (ECs) upon hypoxia reperfusion. In addition, the complement-fixing properties of anti-RhoGDI2 antibodies were studied using imaging flow cytometry. Anti-RhoGDI2 antibodies in patients are mainly IgG1, and titers remained stable and seemed not be changed because of rejection. Antibodies against RhoGDI2, which surface expression seemed to increase upon hypoxia reperfusion, co-localized with C3 on ECs. Binding of human IgG1 monoclonal anti-RhoGDI2 antibodies as well as patient derived antibodies, resulted in complement activation, suggesting that these antibodies are complement fixing. This study suggested a potential pathogenic role of anti-RhoGDI2 antibodies in kidney graft loss. During ischemia reperfusion, the ability of these antibodies to fix complement could be one of the mechanisms resulting in tissue injury.
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