Renal handling of radiolabelled human cystatin C in the rat
- 1 January 1996
- journal article
- research article
- Published by Taylor & Francis in Scandinavian Journal of Clinical and Laboratory Investigation
- Vol. 56 (5) , 409-414
- https://doi.org/10.3109/00365519609088795
Abstract
Serum cystatin C concentration correlates negatively with glomerular filtration rate as well as or better than that of serum creatinine, suggesting a constant formation, and elimination from extracellular fluid mainly by glomerular filtration. It is not known, however, how well the renal plasma clearance of this 13-kDa basic polypeptide matches the glomerular filtration rate. This was investigated in rats during control conditions and after reduced renal perfusion pressure. 125I-cystatin C and an indicator for glomerular filtration (51Cr-EDTA or 131I-aprotinin) were injected intravenously. The renal accumulation and urinary excretion of the tracers were recorded in periods of 2.5 to 20.0 min. The renal plasma clearance of 125I-cystatin C (Ccy) based on the renal content of 125I correlated well with the glomerular filtration rate (Ccr-edta) in periods up to 6 min; i.e. Ccy=0.94 × Ccr-EDTA, r=0.99. Less than 0.5% of the filtered amount appeared in the urine. During more prolonged periods, Ccy increasingly underestimated glomerular filtration rate, reaching about 0.4 ×Ccr-EDTA in a 20-min period. Free 125I relative to total plasma 125I activity increased from about 2% at 5 min to about 70% at 20 min. In nephrectomized rats, free 125I accumulated in plasma at a slower rate, accounting for about 15% of the total activity 20 min after injection of 125I-cystatin C. We conclude that cystatin C is (a) mainly removed from the extracellular fluid by the kidneys, (b) practically freely filtered in the glomeruli, and (c) completely absorbed and rapidly broken down by the proximal tubular cells.Keywords
This publication has 12 references indexed in Scilit:
- Serum cystatin C measured by automated immunoassay: A more sensitive marker of changes in GFR than serum creatinineKidney International, 1995
- Glomerular filtration and tubular absorption of the basic polypeptide aprotininActa Physiologica Scandinavica, 1994
- Repeatable measurement of local and zonal GFR in the rat kidney with aprotininActa Physiologica Scandinavica, 1994
- A new method to measure renal tubular degradation of small filtered proteins in man using radiolabelled aprotinin (Trasylol)Clinical Science, 1992
- Efficient production of native, biologically active human cystatin C by Escherichia coliFEBS Letters, 1988
- The 2.0 A X-ray crystal structure of chicken egg white cystatin and its possible mode of interaction with cysteine proteinases.The EMBO Journal, 1988
- Serum Concentration of Cystatin C, Factor D and β2‐Microglobulin as a Measure of Glomerular Filtration RateActa Medica Scandinavica, 1985
- The blood serum concentration of cystatin C (γ-trace) as a measure of the glomerular filtration rateScandinavian Journal of Clinical and Laboratory Investigation, 1985
- Renal filtration, transport, and metabolism of low-molecular-weight proteins: A reviewKidney International, 1979
- Quantitation of γ-trace in human biological fluids: Indications for production in the central nervous systemScandinavian Journal of Clinical and Laboratory Investigation, 1979