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Published on: May 10, 2013
Glomerular filtration rate estimated by cystatin C among different clinical presentations
A D Rule1, E J Bergstralh, J M Slezak
1Division of Nephrology, Mayo Clinic, Rochester, Minnesota, USA.
Insights
Cystatin C may improve glomerular filtration rate (GFR) estimates in chronic kidney disease patients, outperforming serum creatinine in specific populations. However, cystatin C levels are influenced by factors beyond GFR.
Area of Science:
- Nephrology
- Clinical Chemistry
- Biomarker Research
Background:
- Serum creatinine-based estimates of glomerular filtration rate (GFR) lack generalizability across diverse populations.
- Cystatin C is a proposed alternative biomarker for estimating GFR, offering potential advantages over serum creatinine.
Purpose of the Study:
- To compare the accuracy of cystatin C versus serum creatinine in estimating GFR across various clinical presentations.
- To develop and validate GFR estimation equations using cystatin C in specific patient groups.
Main Methods:
- Adult patients (n=460) underwent GFR measurement via iothalamate clearance.
- Serum cystatin C and creatinine levels were analyzed alongside clinical data (healthy, native chronic kidney disease, transplant recipient).
- GFR was modeled using cystatin C (or creatinine), age, gender, and clinical presentation.
Main Results:
- The relationship between cystatin C and GFR varied significantly across clinical presentations.
- GFR was estimated to be 19% higher in transplant recipients compared to native kidney disease patients at similar cystatin C levels (P<0.001).
- A cystatin C-based equation derived from native kidney disease patients (n=204) showed a higher correlation with measured GFR (r²=0.853) than serum creatinine (r²=0.827) or established equations.
Conclusions:
- Cystatin C shows promise for improving GFR estimation, particularly in chronic kidney disease patients.
- Cystatin C levels are influenced by factors other than GFR, such as inflammation or immunosuppression therapy, necessitating careful interpretation.
- Combining cystatin C and serum creatinine estimates further enhanced GFR prediction accuracy (r²=0.891).
Abstract:
Glomerular filtration rate (GFR) estimates from serum creatinine has not been generalizable across all populations. Cystatin C has been proposed as an alternative marker for estimating GFR. The objective of this study was to compare cystatin C with serum creatinine for estimating GFR among different clinical presentations. Cystatin C and serum creatinine levels were obtained from adult patients (n=460) during an evaluation that included a GFR measurement by iothalamate clearance. Medical records were abstracted for clinical presentation (healthy, native chronic kidney disease or transplant recipient) at the time of GFR measurement. GFR was modeled using the following variables: cystatin C (or serum creatinine), age, gender and clinical presentation. The relationship between cystatin C and GFR differed across clinical presentations. At the same cystatin C level, GFR was 19% higher in transplant recipients than in patients with native kidney disease (P<0.001). The association between cystatin C and GFR was stronger among native kidney disease patients than in healthy persons (P<0.001 for statistical interaction). Thus, a cystatin C equation was derived using only patients with native kidney disease (n=204). The correlation with GFR (r(2)=0.853) was slightly higher than a serum creatinine equation using the same sample (r(2)=0.827), the Modification of Diet in Renal Disease equation (r(2)=0.825) or the Cockcroft-Gault equation (r(2)=0.796). Averaged estimates between cystatin C and serum creatinine equations further improved correlation (r(2)=0.891). Cystatin C should not be interpreted as purely a marker of GFR. Other factors, possibly inflammation or immunosuppression therapy, affect cystatin C levels. While recognizing this limitation, cystatin C may improve GFR estimates in chronic kidney disease patients.
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