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Updated: May 26, 2026

Murine Renal Transplantation Procedure
Published on: July 10, 2009
Comparing cystatin C and creatinine in the diagnosis of pediatric acute renal allograft dysfunction
Pauline R Slort1, Nergiz Ozden, Lars Pape
1Department of Pediatric Nephrology, VU University Medical Center, Postbox 7057, 1007 MB Amsterdam, The Netherlands.
Insights
Serum cystatin C did not prove superior to creatinine for detecting acute kidney injury in pediatric kidney transplant patients. Both markers showed similar detection capabilities for allograft dysfunction.
Area of Science:
- Pediatric Nephrology
- Transplantation Immunology
- Biomarker Discovery
Background:
- Serum creatinine is standard for monitoring kidney allograft function.
- Serum cystatin C shows promise as a more sensitive marker for chronic and acute kidney dysfunction in adults.
- Pediatric RIFLE criteria are used to define acute kidney injury.
Purpose of the Study:
- To compare the efficacy of serum cystatin C versus creatinine in detecting acute allograft dysfunction in children post-renal transplantation.
- To evaluate cystatin C and creatinine performance using pediatric RIFLE criteria for acute kidney injury.
Main Methods:
- Retrospective chart review of 24 pediatric renal transplant recipients.
- Daily measurement of serum creatinine and cystatin C post-transplant.
- Allograft dysfunction defined by a sustained rise in marker concentration above baseline.
Main Results:
- 13 episodes of allograft dysfunction were identified.
- Both markers showed comparable sensitivity in classifying acute kidney injury severity (RIFLE stages).
- Creatinine rise preceded cystatin C rise in 3 cases; cystatin C preceded creatinine in 1 case; no significant time lag difference was observed.
Conclusions:
- Serum cystatin C is not superior to serum creatinine for detecting acute allograft dysfunction in pediatric kidney transplant recipients.
- Both biomarkers demonstrated similar performance in identifying acute kidney injury in this population.
- Further research may explore combined biomarker use or different pediatric populations.
Background:
Allograft function following renal transplantation is commonly monitored using serum creatinine. Multiple cross-sectional studies have shown that serum cystatin C is superior to creatinine for detection of mild to moderate chronic kidney dysfunction. Recent data in adults indicate that cystatin C might also be a more sensitive marker of acute renal dysfunction. This study aims to compare cystatin C and creatinine for detection of acute allograft dysfunction in children using pediatric RIFLE (risk of renal dysfunction, injury to the kidney, failure or loss of kidney function, end stage renal disease) criteria for acute kidney injury.
Methods:
Retrospective chart review of post-transplant period in 24 patients in whom creatinine and cystatin C were measured every day. Allograft dysfunction was defined as a sustained rise in marker concentration above the mean of the three preceding measurements.
Results:
In total, there were 13 episodes of allograft dysfunction. Maximum RIFLE stages with creatinine were 'R' in 7, 'I' in 4, and 'F' in 2, with cystatin C 'R' in 6, 'I' in 4 and 'F' in 3, respectively. In 9/13 cases, both markers rose simultaneously, in three, the rise in creatinine preceded cystatin C by 1-5 days (median 4). In one case, the rise in cystatin C preceded creatinine by 1 day. The time lag was not statistically different. The maximum relative rise of creatinine was significantly higher than cystatin C. By multiple linear regression analysis, the maximum rise of cystatin C was related to the maximum rise of creatinine, but independent of patient age, gender, steroid dose, and anthropometric data.
Conclusions:
In this pediatric population, cystatin C was not superior to creatinine for the detection of acute allograft dysfunction.
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