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Non-invasive Imaging of Acute Allograft Rejection after Rat Renal Transplantation Using 18F-FDG PET
Published on: April 28, 2013
Renal transplants with delayed graft function show decreased renal function despite monitoring with postabsorptive
J Dominguez1, A Gonzalez, N Crossley
1Department of Urology, Facultad de Medicina, Pontificia Universidad Católica de Chile, Santiago, Chile. javierdomi@hotmail.com
Abstract:
Cyclosporine (CyA) monitoring with postabsorptive levels can predict the risk of an acute rejection episode (ARE). Large doses of CyA are needed to obtain adequate drug exposure. The impact of this strategy on renal function, especially in patients with delayed graft function (DGF), is unknown. We report our experience comparing C3 (3-hour postdose) monitoring with a historical series of cadaveric renal transplants. Sixty-three consecutive patients who received cadaveric renal transplants were followed for 1 year. Group A (historical n = 31) patients received 6 mg/kg/d CyA with the dose adjusted according to the trough level (target, 250-350 ng/mL), group B (study n = 32) received 10 mg/kg/d CyA with dose adjustments based upon C3 (target, 1100-1500 ng/mL). All patients received cyclosporine prednisone and a third agents. The general characteristics of the donors and recipients were comparable. The incidence of biopsy-proven ARE at 1 year in group A was 42% and 19% in group B (P <.05). Patients achieving C3 levels >1000 ng/mL at 1 week displayed significantly lower ARE rates (8% vs 50%; P <.05). The rate of DGF was similar in both groups, but the duration was longer in group B (15 vs 21 days, P <.05). The serum creatinine (SCr) level was significantly higher in group B at 3 months (1.47 mg/dL group A vs 1.76 mg/dL group B; P <.05). Patients in group B with DGF showed significantly higher SCr values at 1 year (1.18mg% vs 2.03 mg%; P <.05). C3 level monitoring of CyA yields excellent results in terms of decreased ARE, but an increased SCR was observed among patients with DGF.
Insights
Monitoring cyclosporine (CyA) with 3-hour postdose levels (C3) significantly reduced acute rejection episodes (ARE) in kidney transplant patients. However, this strategy was associated with increased serum creatinine levels, particularly in patients experiencing delayed graft function (DGF).
Area of Science:
- Nephrology
- Pharmacology
- Transplantation Immunology
Background:
- Cyclosporine (CyA) monitoring using postabsorptive levels aims to predict acute rejection episodes (ARE).
- High CyA doses are often required for adequate drug exposure, but their impact on renal function, especially with delayed graft function (DGF), remains unclear.
Purpose of the Study:
- To compare the efficacy and safety of 3-hour postdose (C3) cyclosporine monitoring versus traditional trough level monitoring in cadaveric renal transplant recipients.
Main Methods:
- A study of 63 cadaveric renal transplant recipients over 1 year.
- Group A (n=31) received CyA with trough level monitoring (250-350 ng/mL).
- Group B (n=32) received CyA with C3 monitoring (1100-1500 ng/mL). Both groups received prednisone and a third agent.
Main Results:
- Biopsy-proven ARE incidence was lower in Group B (19%) compared to Group A (42%) (P < .05).
- Patients with C3 levels >1000 ng/mL at 1 week had significantly lower ARE rates (8% vs 50%; P < .05).
- DGF rates were similar, but duration was longer in Group B (21 vs 15 days; P < .05). Group B showed higher serum creatinine (SCr) at 3 months (1.76 vs 1.47 mg/dL; P < .05) and at 1 year for patients with DGF (2.03 vs 1.18 mg%; P < .05).
Conclusions:
- C3 level monitoring of cyclosporine effectively reduces acute rejection episodes in renal transplant recipients.
- This monitoring strategy may lead to increased serum creatinine levels, especially in patients with delayed graft function.
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