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CD28-b7 blockade in organ dysfunction secondary to cold ischemia/reperfusion injury
A Chandraker1, M Takada, K C Nadeau
1Laboratory of Immunogenetics and Transplantation, Brigham and Women's Hospital, Boston, Massachusetts, USA.
Abstract:
Ischemic injury to cadaver organs is a major risk factor for development of chronic organ dysfunction. We have recently shown that the B7 costimulatory pathway plays a critical role in early organ dysfunction developing after renal cold ischemia/reperfusion injury. We extended these observations to investigate the role of this pathway in the development and progression of chronic organ dysfunction following such injury. Uninephrectomized rats which underwent cold ischemia/reperfusion injury developed progressive proteinuria as compared to uninephrectomized controls. Animals treated with CTLA4Ig, which blocks B7 costimulation, starting on the day of injury had significantly better long-term survival and developed significantly less proteinuria than control animals treated with control Ig. RT-PCR analysis of kidney tissue showed significant reduction in expression of activation and inflammatory cytokines, chemoattractants, and growth factors, as compared to controls. Delaying administration of CTLA4Ig for one week, but not four weeks, after injury was still effective in ameliorating development of progressive proteinuria. Interestingly, selective blockade of B7-1 by a mutant form of CTLA4Ig had no effect on early or chronic organ dysfunction. These findings indicate the long-term functional and molecular consequences of experimental cold ischemia/reperfusion injury, and suggest that B7-2 is critical in the development of organ dysfunction following ischemic injury, even in the absence of alloantigen.
Insights
Blocking the B7 costimulatory pathway with CTLA4Ig significantly reduces chronic kidney dysfunction after ischemic injury. This intervention improves long-term survival and lessens proteinuria by decreasing inflammatory factors.
Area of Science:
- Nephrology
- Immunology
- Transplantation
Background:
- Ischemic injury to transplanted organs is a major cause of chronic dysfunction.
- The B7 costimulatory pathway is implicated in early organ dysfunction post-ischemia/reperfusion injury.
Purpose of the Study:
- To investigate the role of the B7 costimulatory pathway in chronic organ dysfunction following renal cold ischemia/reperfusion injury.
- To assess the therapeutic potential of blocking this pathway in mitigating long-term organ damage.
Main Methods:
- Uninephrectomized rats underwent cold ischemia/reperfusion injury.
- Treatment with CTLA4Ig (B7 costimulation blockade) or control Ig was administered.
- Long-term survival, proteinuria, and kidney tissue gene expression (RT-PCR) were analyzed.
Main Results:
- CTLA4Ig treatment significantly improved long-term survival and reduced proteinuria compared to controls.
- Delayed CTLA4Ig administration (one week post-injury) remained effective.
- Selective blockade of B7-1 had no effect, suggesting B7-2's critical role.
Conclusions:
- The B7 costimulatory pathway, particularly B7-2, is crucial for developing chronic organ dysfunction after ischemic injury.
- CTLA4Ig is a promising therapeutic strategy for preventing long-term consequences of renal ischemia/reperfusion injury.

