65
Views
71
CrossRef citations to date
0
Altmetric
Original Article

Contrast media as markers for glomerular filtration: A pharmacokinetic comparison of four agents

, &
Pages 247-253 | Received 21 Sep 1987, Accepted 03 Nov 1987, Published online: 05 Aug 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (21)

Ulf Nyman, Anders Grubb, Gunnar Sterner & Jonas Björk. (2011) The CKD-EPI and MDRD equations to estimate GFR. Validation in the Swedish Lund-Malmö Study cohort. Scandinavian Journal of Clinical and Laboratory Investigation 71:2, pages 129-138.
Read now
Miklós Lipcsey, Mia Furebring, Sten Rubertsson & Anders Larsson. (2011) Significant differences when using creatinine, modification of diet in renal disease, or cystatin C for estimating glomerular filtration rate in ICU patients. Upsala Journal of Medical Sciences 116:1, pages 39-46.
Read now
Anders Larsson, Maria Palm, Lars-Olof Hansson & Ove Axelsson. (2010) Cystatin C and modification of diet in renal disease (MDRD) estimated glomerular filtration rate differ during normal pregnancy. Acta Obstetricia et Gynecologica Scandinavica 89:7, pages 939-944.
Read now
G. Sterner, B. Frennby, S. Mansson, U. Nyman, D. Van Westen & T. Almén. (2008) Determining ‘true’ glomerular filtration rate in healthy adults using infusion of inulin and comparing it with values obtained using other clearance techniques or prediction equations. Scandinavian Journal of Urology and Nephrology 42:3, pages 278-285.
Read now
Ulf Nyman, Jonas Björk, Veronica Lindström & Anders Grubb. (2008) The Lund–Malmö creatinine‐based glomerular filtration rate prediction equation for adults also performs well in children. Scandinavian Journal of Clinical and Laboratory Investigation 68:7, pages 568-576.
Read now
A.‐S. Jonsson, M. Flodin, L.‐O. Hansson & A. Larsson. (2007) Estimated glomerular filtration rate (eGFRCystC) from serum cystatin C shows strong agreement with iohexol clearance in patients with low GFR. Scandinavian Journal of Clinical and Laboratory Investigation 67:8, pages 801-809.
Read now
J. Biörk, S. ‐E. Bäck, G. Sterner, J. Carlson, V. Lindström, O. Bakoush, P. Simonsson, A. Grubb & U. Nyman. (2007) Prediction of relative glomerular filtration rate in adults: New improved equations based on Swedish Caucasians and standardized plasma‐creatinine assays. Scandinavian Journal of Clinical and Laboratory Investigation 67:7, pages 678-695.
Read now
M. Flodin, A.‐S. Jonsson, L.‐O. Hansson, L.‐Å. Danielsson & A. Larsson. (2007) Evaluation of Gentian cystatin C reagent on Abbott Ci8200 and calculation of glomerular filtration rate expressed in mL/min/1.73 m2 from the cystatin C values in mg/L. Scandinavian Journal of Clinical and Laboratory Investigation 67:5, pages 560-567.
Read now
U. Nyman, J. Björk, G. Sterner, S.‐E. Bäck, J. Carlson, V. Lindström, O. Bakoush & A. Grubb. (2006) Standardization of p‐creatinine assays and use of lean body mass allow improved prediction of calculated glomerular filtration rate in adults: A new equation. Scandinavian Journal of Clinical and Laboratory Investigation 66:6, pages 451-468.
Read now
A. Grubb, J. Björk, V. Lindström, G. Sterner, P. Bondesson & U. Nyman. (2005) A cystatin C‐based formula without anthropometric variables estimates glomerular filtration rate better than creatinine clearance using the Cockcroft‐Gault formula. Scandinavian Journal of Clinical and Laboratory Investigation 65:2, pages 153-162.
Read now
A. Larsson, J. Malm, A. Grubb & L.-O. Hansson. (2004) Calculation of glomerular filtration rate expressed in mL/min from plasma cystatin C values in mg/L. Scandinavian Journal of Clinical and Laboratory Investigation 64:1, pages 25-30.
Read now
E. Vinge, B. Lindergård, P. Nilsson–Ehle & A. Grubb. (1999) Relationships among serum cystatin C, serum creatinine, lean tissue mass and glomerular filtration rate in healthy adults. Scandinavian Journal of Clinical and Laboratory Investigation 59:8, pages 587-592.
Read now
Carlo Donadio, Gianfranco Tramonti, Annalisa Lucchesi, Roberto Giordani, Amalia Lucchetti & Claudio Bianchi. (1998) Gamma-Glutamyltransferase is a Reliable Marker for Tubular Effects of Contrast Media. Renal Failure 20:2, pages 319-324.
Read now
Carlo Donadio, Gianfranco Tramonti, Annalisa Lucchesi, Roberto Giordani, Amalia Lucchetti & Claudio Bianchi. (1996) Tubular Toxicity Is the Main Renal Effect of Contrast Media. Renal Failure 18:4, pages 647-656.
Read now
J. ø. Nossen, J. Å. Jakobsen, P. Kjærsgaard, E. Andrew, P. B. Jacobsen & K. J. Berg. (1995) Elimination of the non-ionic X-ray contrast media iodixanol and iohexol in patients with severely impaired renal function. Scandinavian Journal of Clinical and Laboratory Investigation 55:4, pages 341-350.
Read now
K. J. Berg, F. Kolmannskog, P. E. Lillevold, K. P. Nordal, L. Ressem, K. Rootwelt & M. G. Svaland. (1992) Iopentol in patients with chronic renal failure: Its effects on renal function and its use as glomerular filtration rate parameter. Scandinavian Journal of Clinical and Laboratory Investigation 52:1, pages 27-33.
Read now
A. Arvidsson & A. Hedman. (1990) Plasma and renal clearance of iohexol–a study on the reproducibility of a method for the glomerular filtration rate. Scandinavian Journal of Clinical and Laboratory Investigation 50:7, pages 757-761.
Read now
E Krutzén, S-E. Bäck & P. Nilsson-Ehle. (1990) Determination of glomerular filtration rate using iohexol clearance and capillary sampling. Scandinavian Journal of Clinical and Laboratory Investigation 50:3, pages 279-283.
Read now
S E. Back, B. Ljungberg, I. Nilsson-Ehle, O Borgaå & P. Nilsson-Ehle. (1989) Age dependence of renal function: clearance of iohexol and P-amino hippurate in healthy males. Scandinavian Journal of Clinical and Laboratory Investigation 49:7, pages 641-646.
Read now

Articles from other publishers (50)

Pierre Delanaye, Christine A. White, Natalie Ebert & Andrew D. Rule. 2020. Chronic Renal Disease. Chronic Renal Disease 37 54 .
Marina Vlajković, Miloš Stević, Andjelka Slavković, Branka Mitić, Vesna Živković, Vera Artiko & Milovan Matović. (2019) COMPARISON OF SCHWARTZ EGFR-CR WITH GFR MEASURED BY TC-99M-DTPA CLEARANCE IN HEALTHY CHILDREN AND IN CHILDREN WITH URINARY TRACT INFECTION WITH AND WITHOUT VESICOURETERAL REFLUX. Acta Medica Medianae, pages 168-176.
Crossref
Amy Staples, Craig Wong & George J. Schwartz. (2018) Iohexol-measured glomerular filtration rate in children and adolescents with chronic kidney disease: a pilot study comparing venous and finger stick methods. Pediatric Nephrology 34:3, pages 459-464.
Crossref
George J Schwartz, Hongyue Wang, Brian Erway, Gunnar Nordin, Jesse Seegmiller, John C Lieske, Sten-Erik Bäck, W Greg Miller & John H Eckfeldt. (2018) Multicenter Laboratory Comparison of Iohexol Measurement. The Journal of Applied Laboratory Medicine 2:5, pages 711-724.
Crossref
Ayesa N. Mian & George J. Schwartz. (2017) Measurement and Estimation of Glomerular Filtration Rate in Children. Advances in Chronic Kidney Disease 24:6, pages 348-356.
Crossref
Maharajan Raman, Rachel J. Middleton, Philip A. Kalra & Darren Green. (2017) Estimating renal function in old people: an in-depth review. International Urology and Nephrology 49:11, pages 1979-1988.
Crossref
Apeksha Niraula, Madhab Lamsal, Nirmal Baral, Shankar Majhi, Seraj Ahmed Khan, Pritha Basnet & Kashyap Dahal. (2017) Cystatin-C as a Marker for Renal Impairment in Preeclampsia. Journal of Biomarkers 2017, pages 1-7.
Crossref
Pierre Delanaye, Natalie Ebert, Toralf Melsom, Flavio Gaspari, Christophe Mariat, Etienne Cavalier, Jonas Björk, Anders Christensson, Ulf Nyman, Esteban Porrini, Giuseppe Remuzzi, Piero Ruggenenti, Elke Schaeffner, Inga Soveri, Gunnar Sterner, Bjørn Odvar Eriksen & Sten-Erik Bäck. (2016) Iohexol plasma clearance for measuring glomerular filtration rate in clinical practice and research: a review. Part 1: How to measure glomerular filtration rate with iohexol?. Clinical Kidney Journal 9:5, pages 682-699.
Crossref
Jesse C. Seegmiller, Bradley E. Burns, Carrie A. Schinstock, John C. Lieske & Timothy S. Larson. (2016) Discordance Between Iothalamate and Iohexol Urinary Clearances. American Journal of Kidney Diseases 67:1, pages 49-55.
Crossref
Natalie Ebert, Amina Loesment, Peter Martus, Olga Jakob, Jens Gaedeke, Martin Kuhlmann, Jan Bartel, Mirjam Schuchardt, Markus Tölle, Tao Huang, Markus van der Giet & Elke Schaeffner. (2015) Iohexol plasma clearance measurement in older adults with chronic kidney disease—sampling time matters. Nephrology Dialysis Transplantation 30:8, pages 1307-1314.
Crossref
Jonas Björk, Anders Grubb, Anders Larsson, Lars-Olof Hansson, Mats Flodin, Gunnar Sterner, Veronica Lindström & Ulf Nyman. (2015) Accuracy of GFR estimating equations combining standardized cystatin C and creatinine assays: a cross-sectional study in Sweden. Clinical Chemistry and Laboratory Medicine (CCLM) 53:3.
Crossref
J. Michael Yardman-Frank, Renee-Claude Mercier, Craig S. Wong & A. Mary Vilay. (2015) Iohexol Transmembrane Clearance during Modeled Continuous Renal Replacement Therapy. Blood Purification 39:1-3, pages 188-192.
Crossref
N.C. Finch, R. Heiene, J. Elliott, H.M. Syme & A.M. Peters. (2015) Determination of Extracellular Fluid Volume in Healthy and Azotemic Cats. Journal of Veterinary Internal Medicine 29:1, pages 35-42.
Crossref
Pierre Delanaye & Andrew D. Rule. 2015. Chronic Renal Disease. Chronic Renal Disease 31 42 .
Naim Issa, Aleksandra Kukla, Scott Jackson, Samy M. Riad, Meredith C. Foster, Arthur J. Matas, John H. Eckfeldt & Hassan N. Ibrahim. (2014) Comparison of Cystatin C and Creatinine-Based Equations for GFR Estimation After Living Kidney Donation. Transplantation 98:8, pages 871-877.
Crossref
Hester N. Blufpand, Gertjan J.L. Kaspers & Arend Bökenkamp. (2014) Nierfunctie bij kinderen. Tijdschrift voor Kindergeneeskunde 82:4, pages 126-133.
Crossref
Ulf Nyman, Anders Grubb, Anders Larsson, Lars-Olof Hansson, Mats Flodin, Gunnar Nordin, Veronica Lindström & Jonas Björk. (2014) The revised Lund-Malmö GFR estimating equation outperforms MDRD and CKD-EPI across GFR, age and BMI intervals in a large Swedish population. Clinical Chemistry and Laboratory Medicine (CCLM) 52:6.
Crossref
Anna Schulz, Falko Boeringer, Janine Swifka, Axel Kretschmer, Mandy Schaefer, Vera JankowskiMarkus van der Giet, Mirjam Schuchardt, Markus Toelle, Martin Tepel, George Schlieper, Walter Zidek & Joachim Jankowski. (2014) A highly sensitive method for quantification of iohexol. Anal. Methods 6:11, pages 3706-3712.
Crossref
Aftab S. Chishti. 2014. Kidney and Urinary Tract Diseases in the Newborn. Kidney and Urinary Tract Diseases in the Newborn 117 126 .
Zvetanka Zhivkova & Irini Doytchinova. (2013) Quantitative Structure – Clearance Relationships of Acidic Drugs. Molecular Pharmaceutics 10:10, pages 3758-3768.
Crossref
Ahmad Taher Azar. 2013. Modelling and Control of Dialysis Systems. Modelling and Control of Dialysis Systems 45 98 .
Guido Filler, Shih-Han S. Huang & Abeer Yasin. (2012) The usefulness of cystatin C and related formulae in pediatrics. Clinical Chemistry and Laboratory Medicine (CCLM) 50:12, pages 2081-2091.
Crossref
Ayesa N. Mian & George J. Schwartz. 2011. Pediatric Critical Care. Pediatric Critical Care 998 1008 .
H.J. Zdolsek, B. Kågedal, B. Lisander & R.G. Hahn. (2010) Glomerular filtration rate is increased in burn patients. Burns 36:8, pages 1271-1276.
Crossref
Frank Dieterle & Frank D. Sistare. 2010. Biomarkers. Biomarkers 237 279 .
Maria-Eleni Roumelioti, Alicia Wentz, Michael F. Schneider, Arlene C. Gerson, Stephen Hooper, Mark Benfield, Bradley A. Warady, Susan L. Furth & Mark L. Unruh. (2010) Sleep and Fatigue Symptoms in Children and Adolescents With CKD: A Cross-sectional Analysis From the Chronic Kidney Disease in Children (CKiD) Study. American Journal of Kidney Diseases 55:2, pages 269-280.
Crossref
George J. Schwartz & Dana F. Work. (2009) Measurement and Estimation of GFR in Children and Adolescents. Clinical Journal of the American Society of Nephrology 4:11, pages 1832-1843.
Crossref
Meghan Sebasky, Aleksandra Kukla, Erin Leister, Hongfei Guo, Sanjeev K. Akkina, Yasser El-Shahawy, Arthur J. Matas & Hassan N. Ibrahim. (2009) Appraisal of GFR-Estimating Equations Following Kidney Donation. American Journal of Kidney Diseases 53:6, pages 1050-1058.
Crossref
George J. Schwartz, Alvaro Muñoz, Michael F. Schneider, Robert H. Mak, Frederick Kaskel, Bradley A. Warady & Susan L. Furth. (2009) New Equations to Estimate GFR in Children with CKD. Journal of the American Society of Nephrology 20:3, pages 629-637.
Crossref
Daniel W. Louvar, Tyson B. Rogers, Robert F. Bailey, Arthur J. Matas & Hassan N. Ibrahim. (2007) Cystatin C Is Not Superior to Creatinine-Based Models in Estimating Glomerular Filtration Rate in Former Kidney Donors. Transplantation 84:9, pages 1112-1117.
Crossref
George J. Schwartz & Susan L. Furth. (2007) Glomerular filtration rate measurement and estimation in chronic kidney disease. Pediatric Nephrology 22:11, pages 1839-1848.
Crossref
H.N. Ibrahim, T. Rogers, A. Tello & A. Matas. (2006) The Performance of Three Serum Creatinine-Based Formulas in Estimating GFR in Former Kidney Donors. American Journal of Transplantation 6:6, pages 1479-1485.
Crossref
G.J. Schwartz, S. Furth, S.R. Cole, B. Warady & A. Muñoz. (2006) Glomerular filtration rate via plasma iohexol disappearance: Pilot study for chronic kidney disease in children. Kidney International 69:11, pages 2070-2077.
Crossref
Joachim H. Zdolsek, Björn Lisander & Robert G. Hahn. (2005) Measuring the Size of the Extracellular Fluid Space Using Bromide, Iohexol, and Sodium Dilution. Anesthesia & Analgesia, pages 1770-1777.
Crossref
Susanne Heiwe, Naomi Clyne, Anna Tollbäck & Kristian Borg. (2005) Effects of Regular Resistance Training on Muscle Histopathology and Morphometry in Elderly Patients With Chronic Kidney Disease. American Journal of Physical Medicine & Rehabilitation 84:11, pages 865-874.
Crossref
Anders GrubbUlf Nyman, Jonas Björk, Veronica LindströmBengt Rippe, Gunnar Sterner & Anders Christensson. (2005) Simple Cystatin C–Based Prediction Equations for Glomerular Filtration Rate Compared with the Modification of Diet in Renal Disease Prediction Equation for Adults and the Schwartz and the Counahan–Barratt Prediction Equations for Children. Clinical Chemistry 51:8, pages 1420-1431.
Crossref
Nils Hackstein, Alexander C. Langheinrich & Wigbert S. Rau. (2002) Iopromide one‐sample clearance as a measure of glomerular filtration rate. Clinical Physiology and Functional Imaging 22:2, pages 99-107.
Crossref
Thomas C. Dowling, Reginald F. Frye, Donald S. Fraley & Gary R. Matzke. (2012) Comparison of Iothalamate Clearance Methods for Measuring GFR. Pharmacotherapy: The Journal of Human Pharmacology and Drug Therapy 19:8, pages 943-950.
Crossref
Karl Heinz Rahn, Stefan Heidenreich & Dieter Brückner. (1999) How to assess glomerular function and damage in humans. Journal of Hypertension 17:3, pages 309-317.
Crossref
T. Almén, B. Frennby & G. Sterner. 1999. Trends in Contrast Media. Trends in Contrast Media 81 94 .
M J K Blomley & P Dawson. (1996) The quantification of renal function with enhanced computed tomography. The British Journal of Radiology 69:827, pages 989-995.
Crossref
P Dawson & M J K Blomley. (1996) Contrast media as extracellular fluid space markers: adaptation of the central volume theorem. The British Journal of Radiology 69:824, pages 717-722.
Crossref
A Gleadhill & A.R Michell. (1996) Evaluation of iohexol as a marker for the clinical measurement of glomerular filtration rate in dogs. Research in Veterinary Science 60:2, pages 117-121.
Crossref
P. B. Jacobsen, L. Blindheim & T. Skotland. (2016) Bioanalytical Methods for Iodixanol and Their Application to Studies on Metabolism and Protein Binding. Acta Radiologica 36:399_suppl, pages 61-66.
Crossref
V. Reinton, K.J. Berg, M.G. Svaland, E. Andrew, P.T. Normann & K. Rootwelt. (1994) Pharmacokinetics of Gadodiamide Injection in Patients with Moderately Impaired Renal Function. Academic Radiology 1, pages S56-S61.
Crossref
Rosonald R. Bell, Paul A. Bombardt, Donald W. DuCharme, Gerald J. Kolaja, William H. Packwood, Brian E. Bothwell & Paul S. Satoh. (1994) A non-radioactive iothalamate andp-aminohippuric acid high-performance liquid chromatographic method for simultaneously measuring glomerular filtration rate and renal blood flow in the rat. Biomedical Chromatography 8:5, pages 224-229.
Crossref
Sten-Erik B?ck & Peter Nilsson-Ehle. (1993) Re: Iohexol Clearance for the Determination of Glomerular Filtration Rate in Clinical Practice: Evidence for a New Gold Standard, by S.C.W. Brown and P.H. O?Reilly of J. Urol., 146: 675-679, 1991. The Journal of Urology 149:2, pages 378.
Crossref
Yoshitaka Isaka, Yoshihiro Fujiwara, Shigeo Yamamoto, Satoshi Ochi, SungHyo Shin, Toru Inoue, Kunio Tagawa, Takenobu Kamada & Naohiko Ueda. (1992) Modified plasma clearance technique using nonradioactive iothalamate for measuring GFR. Kidney International 42:4, pages 1006-1011.
Crossref
Flavio Gaspari, Lidia Mosconi, Gianluigi Viganò, Norberto Perico, Leonarda Torre, Giorgio Virotta, Cesare Bertocchi, Giuseppe Remuzzi & Piero Ruggenenti. (1992) Measurement of GFR with a single intravenous injection of nonradioactive iothalamate. Kidney International 41:4, pages 1081-1084.
Crossref
Clas-G. Eriksson & Anders Kallner. (1991) Glomerular filtration rate: A comparison between Cr-EDTA clearance and a single sample technique with a non-ionic contrast agent. Clinical Biochemistry 24:3, pages 261-264.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.