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Effect of mycophenolate mofetil on rat kidney grafts with prolonged cold preservation
1Department of Urology, Charité Universitaetsmedizin Berlin Campus Mitte, Berlin, Germany. Florian.Fuller@charite.de
Abstract:
The impact of mycophenolate mofetil (MMF) on initial renal transplant function is not well characterized. We tested how MMF may modulate graft function and survival in a syngeneic rat kidney transplantation model after prolonged cold preservation. Donor kidneys were preserved in University of Wisconsin for either 24 or 39 h prior to transplantation into nephrectomized rats. Recipients received MMF (20 mg/kg/day) or vehicle. Mycophenolic acid (MPA) blood concentrations were measured by high-performance liquid chromatography. The inflammatory response, tubular epithelial proliferation, and histologic damage 3 days post-transplantation were assessed microscopically. In the 24 h cold storage (c.s.) group serum-creatinine was measured. In the 39 h c.s. group 1-week recipient survival was determined. After 24 h of c.s., recipient survival was 100%. The number of T-cell infiltrates was low and not influenced by MMF, whereas renal ED1+ cell infiltration was significantly suppressed by MMF. Tubular cell proliferation was enhanced by MMF. Serum-creatinine levels and renal histology were comparable between MMF and vehicle-treated animals. In the 39 h c.s. group, recipient survival was 20% in MMF-treated vs 90% in vehicle-treated animals (P=0.001). MMF effectively suppressed inflammatory cell infiltration and inhibited tubular cell proliferation. MMF-induced structural damage was most striking in the renal papilla. In rat kidney grafts with moderate preservation injury (24 h c.s.), MMF, given at an immunosuppressive dose, showed predominantly antiinflammatory effects without compromising graft function. In grafts with severe preservation injury (39 h c.s.), MMF caused irreversible structural damage and inhibited tubular cell regeneration resulting in renal failure.
Insights
Mycophenolate mofetil (MMF) showed anti-inflammatory effects in rat kidney transplants with moderate preservation injury. However, MMF caused severe damage and renal failure in grafts with prolonged cold storage.
Area of Science:
- Nephrology
- Immunology
- Transplantation Biology
Background:
- The impact of mycophenolate mofetil (MMF) on early kidney transplant function requires further characterization.
- Prolonged cold preservation is a significant factor in kidney graft outcomes.
Purpose of the Study:
- To investigate the effects of MMF on renal graft function and survival in a rat kidney transplantation model.
- To assess MMF's modulation of inflammatory responses and tubular cell proliferation following cold preservation.
Main Methods:
- Syngeneic rat kidney transplantation model with 24 or 39 hours of cold preservation.
- Recipient administration of MMF (20 mg/kg/day) or vehicle.
- Assessment of inflammatory markers, tubular cell proliferation, histology, serum creatinine, and recipient survival.
Main Results:
- In 24h cold storage, MMF suppressed ED1+ cell infiltration and enhanced tubular cell proliferation without compromising graft function.
- In 39h cold storage, MMF significantly reduced recipient survival (20% vs 90%) and induced structural damage, particularly in the renal papilla.
- MMF demonstrated anti-inflammatory effects but inhibited tubular cell regeneration in severely preserved grafts.
Conclusions:
- MMF exhibits anti-inflammatory properties in kidney grafts with moderate preservation injury, without impairing function.
- In cases of severe preservation injury, MMF can lead to irreversible structural damage and graft failure due to inhibited regeneration.
- The effect of MMF on kidney transplant outcomes is dependent on the degree of cold preservation injury.

