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Updated: Jul 30, 2026

The Mouse Isolated Perfused Kidney Technique
Published on: November 17, 2016
The Sigma-1 Receptor Is a Novel Target for Improving Cold Preservation in Rodent Kidney Transplants
Adam Hosszu1,2, Akos R Toth1,2, Tamas Lakat1,2
1MTA-SE Lendület "Momentum" Diabetes Research Group, 1083 Budapest, Hungary.
Abstract:
Kidney transplantation is the preferred treatment for patients with end-stage kidney disease. Maintaining organ viability between donation and transplantation, as well as minimizing ischemic injury, are critically important for long-term graft function and survival. Moreover, the increasing shortage of transplantable organs is a considerable problem; thus, optimizing the condition of grafts is a pivotal task. Here, rodent models of kidney transplantation and cold storage were used to demonstrate that supplementation of a preservation solution with Sigma-1 receptor (S1R) agonist fluvoxamine (FLU) reduces cold and warm ischemic injury. Post-transplant kidney function was improved, histological injury was mitigated, and mRNA expression of two tubular injury markers-kidney injury molecule-1 and neutrophil gelatinase-associated lipocalin-was robustly reduced. In addition, renal inflammation was diminished, as shown by reduced leukocyte infiltration and pro-inflammatory cytokine expression. In the cold ischemia model, FLU ameliorated structural injury profoundly after 2 h as well as 24 h. The reduced number of TUNEL-positive and Caspase 3-positive cells suggests the anti-apoptotic effect of FLU. None of these beneficial effects of FLU were observed in S1R-/- mice. Of note, organ damage in FLU-treated kidneys after 24 h of cold storage was similar to just 2 h without FLU. These results indicate that S1R agonists can prolong storage time and have great potential in improving organ preservation and in alleviating the problem of organ shortages.
Insights
Fluvoxamine, a Sigma-1 receptor agonist, significantly reduces kidney injury during cold storage, improving transplant outcomes and potentially easing organ shortages.
Area of Science:
- Nephrology
- Transplantation immunology
- Pharmacology
Background:
- Kidney transplantation is the primary treatment for end-stage kidney disease.
- Maintaining organ viability and minimizing ischemic injury are crucial for graft survival.
- Organ shortages necessitate optimizing graft preservation techniques.
Purpose of the Study:
- To investigate the efficacy of Sigma-1 receptor (S1R) agonist fluvoxamine (FLU) in preserving kidney grafts.
- To evaluate the impact of FLU on cold and warm ischemic injury in rodent kidney transplantation models.
Main Methods:
- Rodent models of kidney transplantation and cold storage were utilized.
- Kidney preservation solutions were supplemented with fluvoxamine.
- Assessment of kidney function, histological injury, inflammatory markers, and apoptosis was performed.
- Experiments were conducted using both wild-type and S1R knockout mice.
Main Results:
- Fluvoxamine supplementation reduced both cold and warm ischemic injury in kidney grafts.
- Post-transplant kidney function improved, with mitigated histological damage and reduced expression of injury markers (KIM-1, NGAL).
- FLU demonstrated anti-apoptotic effects and diminished renal inflammation, with benefits absent in S1R knockout mice.
- Organ damage after 24h cold storage with FLU was comparable to 2h without FLU.
Conclusions:
- S1R agonists like fluvoxamine can significantly enhance kidney graft preservation.
- These findings suggest S1R agonists have the potential to extend organ storage times.
- This approach could help alleviate the critical shortage of transplantable organs.
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