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Non-invasive Imaging of Acute Allograft Rejection after Rat Renal Transplantation Using 18F-FDG PET
Published on: April 28, 2013
Low-dose carbon monoxide inhibits progressive chronic allograft nephropathy and restores renal allograft function
Atsunori Nakao1, Gaetano Faleo, Michael A Nalesnik
1Department of Surgery, Thomas E. Starzl Transplantation Institute, University of Pittsburgh Medical Center, Pittsburgh, PA 15213, USA.
Abstract:
Chronic allograft nephropathy (CAN) represents progressive deterioration of renal allograft function with fibroinflammatory changes. CAN, recently reclassified as interstitial fibrosis (IF) and tubular atrophy (TA) with no known specific etiology, is a major cause of late renal allograft loss and remains a significant deleterious factor of successful renal transplantation. Carbon monoxide (CO), an effector byproduct of heme oxygenase pathway, is known to have potent anti-inflammatory and antifibrotic functions. We hypothesized that inhaled CO would inhibit fibroinflammatory process of CAN and restore renal allograft function, even when the treatment was initiated after CAN was established. Lewis rat kidney grafts were orthotopically transplanted into binephrectomized allogenic Brown Norway rats under brief tacrolimus (0.5 mg/kg im, days 0-6). At day 60, CO (20 ppm) inhalation was initiated to recipients and continued until day 150 or animal death. Development of CAN was confirmed at day 60 with decreased creatinine clearance (CCr), significant proteinuria, and histopathological findings of TA, IF, and intimal arteritis. Air-treated control recipients continued to deteriorate with further declines of CCr and increases of urinary protein excretion and died with a median survival of 82 days. In contrast, progression of CAN was decelerated when recipients received CO on days 60-150, showing markedly improved graft histopathology, restored renal function, and improved recipient survival to a median of >150 days. CO significantly reduced intragraft mRNA levels for IFN-gamma and TNF-alpha at day 90. Expression of profibrotic TGF-beta/Smad was significantly suppressed with CO, together with downregulation of ERK-MAPK pathways. Continuous CO (20 ppm) treatment for days 0-30, days 30-60, or days 0-90, or daily 1-h CO (250 ppm) treatment for days 0-90, also showed efficacy in inhibiting CAN. The study demonstrates that CO is able to inhibit progression of fibroinflammatory process of CAN, restore renal allograft function, and improve survival even when the treatment is started after CAN is diagnosed.
Insights
Inhaled carbon monoxide (CO) effectively treats chronic allograft nephropathy (CAN) by reducing inflammation and fibrosis. This study shows CO can restore kidney allograft function and improve survival, even after CAN develops.
Area of Science:
- Nephrology
- Transplantation Immunology
- Gaseous Signaling Molecules
Background:
- Chronic allograft nephropathy (CAN) causes progressive kidney allograft dysfunction and is a leading cause of graft loss.
- Fibroinflammatory changes, including interstitial fibrosis (IF) and tubular atrophy (TA), characterize CAN.
- Carbon monoxide (CO), a heme oxygenase byproduct, exhibits anti-inflammatory and antifibrotic properties.
Purpose of the Study:
- To investigate the therapeutic potential of inhaled CO in inhibiting the fibroinflammatory process of established CAN.
- To assess CO's efficacy in restoring renal allograft function and improving survival in a rat model.
Main Methods:
- Lewis rat kidney allografts were transplanted into Brown Norway rats, with CAN induced and confirmed by day 60.
- Recipients received inhaled CO (20 ppm) from day 60 to 150, or air as a control.
- Renal function, graft histology, survival, and molecular markers (IFN-gamma, TNF-alpha, TGF-beta/Smad, ERK-MAPK) were analyzed.
Main Results:
- CO treatment significantly decelerated CAN progression, improving graft histology and restoring renal function (creatinine clearance, proteinuria).
- CO inhalation improved recipient survival to over 150 days compared to 82 days in controls.
- CO suppressed intragraft pro-inflammatory cytokines (IFN-gamma, TNF-alpha) and profibrotic pathways (TGF-beta/Smad, ERK-MAPK).
Conclusions:
- Inhaled CO effectively inhibits the progression of established CAN, demonstrating potent anti-inflammatory and antifibrotic effects.
- CO treatment restores renal allograft function and significantly improves long-term graft survival.
- CO represents a promising therapeutic agent for managing chronic allograft nephropathy post-transplantation.
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