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Creatinine Kinetics and the Definition of Acute Kidney Injury

Journal of the American Society of Nephrology · 2009 · Vol. 20(3) · pp. 672–679
Sushrut S. WaikarJoseph V. Bonventre

Abstract

Acute kidney injury (AKI) is a common and devastating medical condition, but no widely accepted definition exists. A recent classification system by the Acute Dialysis Quality Initiative (RIFLE) defines AKI largely by percentage increases in serum creatinine (SCr) over baseline. The Acute Kidney Injury Network defines the first stage by either an absolute or a percentage increase in SCr. To examine the implications of various definitions, we solved differential equations on the basis of mass balance principles. We simulated creatinine kinetics after AKI in the setting of normal baseline kidney function and stages 2, 3, and 4 chronic kidney disease (CKD). The percentage changes in SCr after severe AKI are highly dependent on baseline kidney function. Twenty-four hours after a 90% reduction in creatinine clearance, the rise in SCr was 246% with normal baseline kidney function, 174% in stage 2 CKD, 92% in stage 3 CKD, and only 47% in stage 4 CKD. By contrast, the absolute increase was nearly identical (1.8 to 2.0 mg/dl) across the spectrum of baseline kidney function. Time to reach a 50% increase in SCr was directly related to baseline kidney function: From 4 h (normal baseline) up to 27 h for stage 4 CKD. By contrast, the time to reach a 0.5-mg/dl increase in SCr was virtually identical after moderate to severe AKI (>50% reduction in creatinine clearance). We propose an alternative definition of AKI that incorporates absolute changes in SCr over a 24- to 48-h time period.

Acute Kidney Injury ResearchChronic Kidney Disease and DiabetesDialysis and Renal Disease ManagementAcute kidney injuryCreatinineKidney diseaseRenal functionMedicineRifleDialysisUrologyInternal medicineKidney

MeSH terms

CreatinineHumansModels, BiologicalTime FactorsRenal Insufficiency, ChronicAcute Kidney Injury

Funding

  • National Institutes of Health
Citations
660
FWCI
14.99
field-weighted impact
References
26
Percentile
99%
vs. same field & year
Citations per year
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