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Published on: May 10, 2013
Creatinine-based formulae for the estimation of glomerular filtration rate in heart transplant recipients
Pierre Delanaye1, Eric Nellessen, Stéphanie Grosch
1Department of Nephrology, University of Liege, CHU, Sart Tilman, Liege, Belgium. pierre_delanaye@yahoo.fr
Insights
The MDRD formula is the most accurate for estimating kidney function in heart transplant patients. For precise measurements, (51)Cr-EDTA clearance is recommended over creatinine-based formulas.
Area of Science:
- Nephrology
- Cardiology
- Transplantation Medicine
Background:
- Chronic renal failure (CRF) is a frequent complication post-heart transplantation.
- Serum creatinine has limitations in accurately assessing glomerular filtration rate (GFR).
- Limited evidence exists for creatinine-based GFR estimation formulas in heart transplant recipients.
Purpose of the Study:
- To compare the accuracy and precision of different creatinine-based formulas for GFR estimation in heart transplant patients.
- To evaluate the performance of Cockcroft, MDRD, and Mayo Clinic formulas against a reference GFR measurement.
Main Methods:
- GFR was measured using (51)Cr-EDTA plasma clearance in 27 heart transplant patients.
- Accuracy and precision were assessed using Bland and Altman analysis.
- Cockcroft, simplified MDRD, and Mayo Clinic formulas were compared to measured GFR.
Main Results:
- The mean GFR was 39 ± 15 mL/min/1.73 m(2).
- All formulas showed good correlation with measured GFR.
- The MDRD formula demonstrated higher accuracy (bias +12 mL/min/1.73 m(2)) compared to Cockcroft (+19.9) and Mayo Clinic (+22.1).
- MDRD had a lower rate of significant estimation error (>20 mL/min/1.73 m(2)) at 14% versus 51% (Cockcroft) and 55% (Mayo Clinic).
Conclusions:
- The MDRD formula is the most precise and accurate creatinine-based method for GFR estimation in heart transplant patients.
- For highly accurate GFR measurement, reference methods like (51)Cr-EDTA plasma clearance are recommended.
Abstract:
Chronic renal failure (CRF) is a common complication in heart transplant patients. Serum creatinine has clear limitations for the detection and estimation of glomerular filtration rate (GFR). Various creatinine-based formulae are classically used for GFR estimation, but little scientific evidence exists for such use in a heart transplant population. GFR was measured using the plasmatic clearance of the glomerular tracer (51)Cr-EDTA in 27 heart transplant patients with two measures for 22 of the patients. Forty-nine measures were thus available for analysis. The precision and accuracy (Bland and Altman analysis) of the Cockcroft, simplified Modified Diet in Renal Diseases (MDRD) and new Mayo Clinic formulae were compared. The mean GFR of the population was 39 +/- 15 mL/min/1.73 m(2). All formulae were well correlated with the GFR. With the Bland and Altman analysis, the accuracy of the MDRD formula appeared higher than that of the Cockcroft or the Mayo Clinic formulae (bias of +12 mL/min/1.73 m(2), vs. +19.9 mL/min/1.73 m(2), and +22.1 mL/min/1.73 m(2), respectively). The difference between the estimated and measured GFR was higher than 20 mL/min/1.73 m(2) in 51% and 55% cases when using the Cockcroft and the Mayo Clinic formulae respectively, whereas the difference was only noted in 14% cases when the MDRD was used. Among creatinine-based formulae, the MDRD appears the most precise and accurate for estimating the GFR in heart transplant patients. However, when the GFR must be measured with high accuracy, we recommend the use of a reference method like inulin or (51)Cr-EDTA plasma clearance techniques.
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