Generation of a New Cystatin C–Based Estimating Equation for Glomerular Filtration Rate by Use of 7 Assays Standardized to the International Calibrator

Author:

Grubb Anders1,Horio Masaru2,Hansson Lars-Olof3,Björk Jonas4,Nyman Ulf5,Flodin Mats3,Larsson Anders3,Bökenkamp Arend6,Yasuda Yoshinari2,Blufpand Hester6,Lindström Veronica1,Zegers Ingrid7,Althaus Harald8,Blirup-Jensen Søren1,Itoh Yoshi9,Sjöström Per10,Nordin Gunnar11,Christensson Anders12,Klima Horst13,Sunde Kathrin14,Hjort-Christensen Per15,Armbruster David16,Ferrero Carlo17

Affiliation:

1. Department of Clinical Chemistry, Laboratory Medicine, University Hospital, Lund, Sweden

2. Department of Functional Diagnostic Science, Osaka University Graduate School of Medicine, Suita, Osaka, Japan

3. Department of Medical Sciences, Uppsala University, Uppsala, Sweden

4. Department of Occupational and Environmental Medicine, Lund University, Lund, Sweden

5. Department of Radiology, Central Hospital, Kristianstad, University of Lund, Sweden

6. Department of Pediatric Nephrology, VU University Medical Center, Amsterdam, The Netherlands

7. Institute for Reference Materials and Measurements, Joint Research Centre, European Commission, Geel, Belgium

8. Siemens Healthcare Diagnostics Products GmbH, Marburg, Germany

9. Department of Laboratory Medicine, EIJU, General Hospital, Tokyo, Japan

10. Department of Medicine, Örebro University Hospital, Örebro, Sweden

11. Equalis, Uppsala, Sweden

12. Department of Nephrology and Transplantation, Skåne University Hospital, Lund, Sweden

13. Roche Diagnostics GmbH, Penzberg, Germany

14. Gentian Technology AS, Moss, Norway

15. Dako Denmark A/S, Glostrup, Denmark

16. Abbott Diagnostics, Lake Forest, IL

17. Sentinel CH. SpA, Milan, Italy

Abstract

Abstract BACKGROUND Many different cystatin C–based equations exist for estimating glomerular filtration rate. Major reasons for this are the previous lack of an international cystatin C calibrator and the nonequivalence of results from different cystatin C assays. METHODS Use of the recently introduced certified reference material, ERM-DA471/IFCC, and further work to achieve high agreement and equivalence of 7 commercially available cystatin C assays allowed a substantial decrease of the CV of the assays, as defined by their performance in an external quality assessment for clinical laboratory investigations. By use of 2 of these assays and a population of 4690 subjects, with large subpopulations of children and Asian and Caucasian adults, with their GFR determined by either renal or plasma inulin clearance or plasma iohexol clearance, we attempted to produce a virtually assay-independent simple cystatin C–based equation for estimation of GFR. RESULTS We developed a simple cystatin C–based equation for estimation of GFR comprising only 2 variables, cystatin C concentration and age. No terms for race and sex are required for optimal diagnostic performance. The equation, eGFR=130×cystatin C−1.069×age−0.117−7, is also biologically oriented, with 1 term for the theoretical renal clearance of small molecules and 1 constant for extrarenal clearance of cystatin C. CONCLUSIONS A virtually assay-independent simple cystatin C–based and biologically oriented equation for estimation of GFR, without terms for sex and race, was produced.

Publisher

Oxford University Press (OUP)

Subject

Biochemistry (medical),Clinical Biochemistry

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