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Published on: January 7, 2013
Assessment of renal function in renal transplant patients using cystatin C. A comparison to other renal function
L Risch1, A Blumberg, A R Huber
1Department of Laboratory Medicine, Kantonsspital Aarau, Switzerland.
Insights
Cystatin C (CysC) offers a superior assessment of kidney transplant function compared to serum creatinine. While CysC shows greater variability, it better detects early changes in glomerular filtration rate (GFR).
Area of Science:
- Nephrology
- Transplantation Medicine
- Biomarker Research
Background:
- Limited evidence exists on cystatin C's role in renal transplant recipients.
- Accurate monitoring of kidney function is crucial post-transplantation.
Purpose of the Study:
- To evaluate cystatin C as a marker for renal function in transplant patients.
- To compare cystatin C with traditional markers like serum creatinine and creatinine clearance.
Main Methods:
- Measured cystatin C, creatinine clearance, serum creatinine, beta2-microglobulin, and iothalamate clearance in 30 renal transplant patients.
- Analyzed correlations, ROC curves, sensitivity, and specificity.
- Compared intraindividual variation of cystatin C and serum creatinine in 85 patients.
Main Results:
- Cystatin C demonstrated the strongest correlation with glomerular filtration rate (GFR).
- Cystatin C was superior to serum creatinine and comparable to creatinine clearance in diagnostic accuracy.
- Intraindividual variation of cystatin C was higher than serum creatinine, potentially indicating better detection of early GFR changes.
Conclusions:
- Cystatin C provides an easy and accurate assessment of GFR in stable renal transplant patients.
- Cystatin C is superior to serum creatinine for monitoring renal function post-transplant.
- Higher CysC variability may aid in early detection of transplant dysfunction.
Abstract:
To date, little evidence is available to define the role of cystatin C in patients with renal transplants. Thus, to assess, whether cystatin C (CysC) provides better information on renal function than other markers, CysC, creatinine clearance (CrCl), serum creatinine (SCr), beta2-microglobulin (beta2-M), and 125I-Iothalamate clearance were determined in 30 patients. Correlation and ROC curves were obtained and characteristics like sensitivity and specificity were calculated. Further, to evaluate the usefulness of these markers for monitoring, intraindividual coefficients of variation for CysC and SCr measurements were compared in 85 renal transplant patients. CysC correlated best with GFR, whereas SCr, CrCl and beta2-M all had lower correlation coefficients. CysC was superior to SCr, even when renal function equations of were used. The diagnostic accuracy of CysC was significantly better than SCr. but did not differ significantly from CrCl and beta2-M. Together, our data show that in patients with renal transplants, CysC has a similar diagnostic value as CrCl. However, it is superior to determinations of SCr. The intraindividual variation of CysC is significantly greater than that of SCr. This might be due to better ability of CysC to reflect temporary changes especially in mildly impaired GFR, most critical for early detection of rejection and other function impairment. In conclusion, CysC allows for easy and accurate assessment of renal function (GFR) in steady state renal transplant patients and is clearly superior to the commonly used serum creatinine.
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