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Published on: May 10, 2013
No Impact of the Analytical Method Used for Determining Cystatin C on Estimating Glomerular Filtration Rate in
Martin Alberer1, Julia Hoefele2, Marcus R Benz3
1Department of Infectious Diseases and Tropical Medicine, Ludwig-Maximilians University, Munich, Germany.
Insights
Estimating kidney function in children using creatinine and cystatin C formulas is complex due to varying analytical methods. The study found that using compatible analytical methods for cystatin C may not always yield accurate glomerular filtration rate (GFR) results compared to creatinine clearance.
Area of Science:
- Pediatric Nephrology
- Clinical Chemistry
- Biomarker Analysis
Background:
- Inulin clearance is the gold standard for pediatric kidney function but is impractical.
- Glomerular filtration rate (GFR) formulas using creatinine and cystatin C offer alternatives.
- Discrepancies in analytical methods for creatinine and cystatin C impact GFR calculation accuracy.
Purpose of the Study:
- To compare GFR results from different formulas using original vs. alternative analytical methods for cystatin C.
- To evaluate the impact of analytical method compatibility on GFR calculation performance in children.
Main Methods:
- Cystatin C (Cys C) values from an immunoturbidimetric assay were used in GFR equations validated with the same method.
- The same Cys C values were applied to GFR formulas originally validated with a nephelometric immunoassay.
- GFR calculations were compared against creatinine clearance (CrCl) as the reference.
Main Results:
- GFR classification (normal vs. reduced) was not significantly different when using Cys C from incompatible analytical methods compared to CrCl.
- Sensitivity and specificity for GFR classification were adequate.
- Formulas using Cys C from compatible analytical methods sometimes showed insufficient performance against CrCl.
Conclusions:
- Clinicians must be aware of the analytical method used for Cys C and creatinine when applying GFR formulas.
- Analytical method compatibility is important, but other factors may be more critical for accurate GFR calculation in children.
Background:
Measurement of inulin clearance is considered to be the gold standard for determining kidney function in children, but this method is time consuming and expensive. The glomerular filtration rate (GFR) is on the other hand easier to calculate by using various creatinine- and/or cystatin C (Cys C)-based formulas. However, for the determination of serum creatinine (Scr) and Cys C, different and non-interchangeable analytical methods exist. Given the fact that different analytical methods for the determination of creatinine and Cys C were used in order to validate existing GFR formulas, clinicians should be aware of the type used in their local laboratory. In this study, we compared GFR results calculated on the basis of different GFR formulas and either used Scr and Cys C values as determined by the analytical method originally employed for validation or values obtained by an alternative analytical method to evaluate any possible effects on the performance.
Methods:
Cys C values determined by means of an immunoturbidimetric assay were used for calculating the GFR using equations in which this analytical method had originally been used for validation. Additionally, these same values were then used in other GFR formulas that had originally been validated using a nephelometric immunoassay for determining Cys C. The effect of using either the compatible or the possibly incompatible analytical method for determining Cys C in the calculation of GFR was assessed in comparison with the GFR measured by creatinine clearance (CrCl).
Results:
Unexpectedly, using GFR equations that employed Cys C values derived from a possibly incompatible analytical method did not result in a significant difference concerning the classification of patients as having normal or reduced GFR compared to the classification obtained on the basis of CrCl. Sensitivity and specificity were adequate. On the other hand, formulas using Cys C values derived from a compatible analytical method partly showed insufficient performance when compared to CrCl.
Conclusion:
Although clinicians should be aware of applying a GFR formula that is compatible with the locally used analytical method for determining Cys C and creatinine, other factors might be more crucial for the calculation of correct GFR values.
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