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Published in: Pediatric Nephrology 2/2017

01-02-2017 | Educational Review

Measuring and estimating glomerular filtration rate in children

Author: Hans Pottel

Published in: Pediatric Nephrology | Issue 2/2017

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Abstract

Glomerular filtration rate (GFR) is the best index for kidney function in health and disease. Knowledge of the GFR is essential for the detection (diagnosis) and monitoring of renal function during disease progression and for ensuring correct medication doses. Inulin clearance (plasma or urine) is currently considered to be the gold standard for measuring GFR, but in clinical practice the measurement of other exogenous filtration markers from the plasma often replaces that of inulin clearance. Different protocols can be used to determine the area under the plasma disappearance curve, and an understanding of these methods is important. GFR can also be estimated by GFR equations (eGFR), which are most often used in clinical practice because they only require a knowledge of the serum creatinine or cystatin C level and demographic information. eGFR equations are easy to use but they do have their limitations, and it is important to know how these equations were derived and in which circumstances they can be used most accurately. The aim of this review is to explain how GFR can be measured using the renal clearance and the plasma clearance method and which eGFR equations can be applied to children, as well as how and when these equations can be used in clinical practice.
Literature
1.
go back to reference Gaspari F, Perico N, Remuzzi G (1997) Measurement of glomerular filtration rate. Kidney Int Suppl 63:S151–S154PubMed Gaspari F, Perico N, Remuzzi G (1997) Measurement of glomerular filtration rate. Kidney Int Suppl 63:S151–S154PubMed
3.
go back to reference Kidney Disease: Improving Global Outcomes (KDIGO) CKD Work Group (2013) KDIGO 2012 Clinical practice guideline for the evaluation and management of chronic kidney disease. Kidney Int Suppl 3:1–150CrossRef Kidney Disease: Improving Global Outcomes (KDIGO) CKD Work Group (2013) KDIGO 2012 Clinical practice guideline for the evaluation and management of chronic kidney disease. Kidney Int Suppl 3:1–150CrossRef
4.
go back to reference Du Bois D, Du Bois EF (1916) Clinical calorimetry: tenth paper a formula to estimate the approximate surface area if height and weight be known. Arch Intern Med 17:863–871CrossRef Du Bois D, Du Bois EF (1916) Clinical calorimetry: tenth paper a formula to estimate the approximate surface area if height and weight be known. Arch Intern Med 17:863–871CrossRef
5.
go back to reference van der Sijs H, Guchelaar HJ (2002) Formulas for calculating body surface area. Ann Pharmacother 36:345–346CrossRefPubMed van der Sijs H, Guchelaar HJ (2002) Formulas for calculating body surface area. Ann Pharmacother 36:345–346CrossRefPubMed
6.
go back to reference Haycock GB, Schwartz GJ, Wisotsky DH (1978) Geometric method for measuring body surface area: a height–weight formula validated in infants, children, and adults. J Pediatr 93:62–66CrossRefPubMed Haycock GB, Schwartz GJ, Wisotsky DH (1978) Geometric method for measuring body surface area: a height–weight formula validated in infants, children, and adults. J Pediatr 93:62–66CrossRefPubMed
7.
go back to reference Mosteller R (1987) Simplified calculation of body surface area. New Engl J Med 317:1098PubMed Mosteller R (1987) Simplified calculation of body surface area. New Engl J Med 317:1098PubMed
8.
go back to reference Smith HW (1951) The kidney: structure and function in health and disease. Oxford University Press, New York Smith HW (1951) The kidney: structure and function in health and disease. Oxford University Press, New York
11.
go back to reference Stevens LA, Levey AS (2009) Measured GFR as a confirmatory test for estimated GFR. J Am Soc Nephrol 20:2305–2313CrossRefPubMed Stevens LA, Levey AS (2009) Measured GFR as a confirmatory test for estimated GFR. J Am Soc Nephrol 20:2305–2313CrossRefPubMed
12.
go back to reference Soveri I, Berg UB, Björk J, Elinder CG, Grubb A, Mejare I, Sterner G, Bäck SE, on behalf of the SBU GFR Review Group (2014) Measuring GFR: a systematic review. Am J Kidney Dis 64:411–424CrossRefPubMed Soveri I, Berg UB, Björk J, Elinder CG, Grubb A, Mejare I, Sterner G, Bäck SE, on behalf of the SBU GFR Review Group (2014) Measuring GFR: a systematic review. Am J Kidney Dis 64:411–424CrossRefPubMed
13.
go back to reference Schwartz GJ, Work DF (2009) Measurement and estimation of GFR in children and adolescents. Clin J Am Soc Nephrol 4:1832–1843CrossRefPubMed Schwartz GJ, Work DF (2009) Measurement and estimation of GFR in children and adolescents. Clin J Am Soc Nephrol 4:1832–1843CrossRefPubMed
14.
go back to reference Sterner G, Frennby B, Mansson S, Nyman U, Van Westen D, Almén T (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. Scand J Urol Nephrol 42:278–285CrossRefPubMed Sterner G, Frennby B, Mansson S, Nyman U, Van Westen D, Almén T (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. Scand J Urol Nephrol 42:278–285CrossRefPubMed
15.
go back to reference Bröchner-Mortensen J (1972) A simple method for the determination of glomerular filtration rate. Scand J Clin Lab Invest 30:271–274CrossRefPubMed Bröchner-Mortensen J (1972) A simple method for the determination of glomerular filtration rate. Scand J Clin Lab Invest 30:271–274CrossRefPubMed
16.
go back to reference Schwartz GJ, Furth S, Cole SR, Warady B, Muñoz A (2006) Glomerular filtration rate via plasma iohexol disappearance: pilot study for chronic kidney disease in children. Kidney Int 69:2070–2077CrossRefPubMed Schwartz GJ, Furth S, Cole SR, Warady B, Muñoz A (2006) Glomerular filtration rate via plasma iohexol disappearance: pilot study for chronic kidney disease in children. Kidney Int 69:2070–2077CrossRefPubMed
17.
go back to reference Schwartz GJ, Abraham AG, Furth SL, Warady BA, Muñoz A (2010) Optimizing iohexol plasma disappearance curves to measure the glomerular filtration rate in children with chronic kidney disease. Kidney Int 77:65–71CrossRefPubMedPubMedCentral Schwartz GJ, Abraham AG, Furth SL, Warady BA, Muñoz A (2010) Optimizing iohexol plasma disappearance curves to measure the glomerular filtration rate in children with chronic kidney disease. Kidney Int 77:65–71CrossRefPubMedPubMedCentral
18.
go back to reference Ng DK, Schwartz GJ, Jacobson LP, Palella FJ, Margolick JB, Warady BA, Furth SL, Muñoz A (2011) Universal GFR determination based on two time points during plasma iohexol disappearance. Kidney Int 80:423–430CrossRefPubMedPubMedCentral Ng DK, Schwartz GJ, Jacobson LP, Palella FJ, Margolick JB, Warady BA, Furth SL, Muñoz A (2011) Universal GFR determination based on two time points during plasma iohexol disappearance. Kidney Int 80:423–430CrossRefPubMedPubMedCentral
19.
go back to reference Fleming JS (2007) An improved equation for correcting slope-intercept measurements of glomerular filtration rate for the single exponential approximation. Nucl Med Commun 28:315–320CrossRefPubMed Fleming JS (2007) An improved equation for correcting slope-intercept measurements of glomerular filtration rate for the single exponential approximation. Nucl Med Commun 28:315–320CrossRefPubMed
20.
go back to reference Bröchner-Mortensen J, Jødal (2009) Reassessment of a classical single injection 51Cr-EDTA clearance method for determination of renal function in children and adults. Part II: empirically determined relationships between total and one-pool clearance. Scand J Clin Lab Invest 69:314–322CrossRefPubMed Bröchner-Mortensen J, Jødal (2009) Reassessment of a classical single injection 51Cr-EDTA clearance method for determination of renal function in children and adults. Part II: empirically determined relationships between total and one-pool clearance. Scand J Clin Lab Invest 69:314–322CrossRefPubMed
21.
go back to reference Pottel H, Gheysens O (2015) Response to the letter concerning measuring glomerular filtration rate using chromium-51 EDTA: body surface area normalization before or after Bröchner-Mortensen correction? Nucl Med Commun 36:297–300CrossRefPubMed Pottel H, Gheysens O (2015) Response to the letter concerning measuring glomerular filtration rate using chromium-51 EDTA: body surface area normalization before or after Bröchner-Mortensen correction? Nucl Med Commun 36:297–300CrossRefPubMed
22.
go back to reference Christensen AB, Groth S (1986) Determination of 99m Tc-DTPA clearance by a single plasma method. Clin Physiol 6:579–588CrossRefPubMed Christensen AB, Groth S (1986) Determination of 99m Tc-DTPA clearance by a single plasma method. Clin Physiol 6:579–588CrossRefPubMed
23.
go back to reference Jacobsson L (1981) A method for the calculation of renal determination by one plasma sample. Clin Physiol 3:297–305CrossRef Jacobsson L (1981) A method for the calculation of renal determination by one plasma sample. Clin Physiol 3:297–305CrossRef
24.
go back to reference Ham HR, Piepsz A (1991) Estimation of glomerular filtration rate in infants and in children using a single-plasma sample method. J Nucl Med 32:1294–1297PubMed Ham HR, Piepsz A (1991) Estimation of glomerular filtration rate in infants and in children using a single-plasma sample method. J Nucl Med 32:1294–1297PubMed
25.
go back to reference Piepsz A, Tondeur M, Ham HR (2006) Revisiting normal (51)Cr-ethylenediaminetetraacetic acid clearance values in children. Eur J Nucl Med Mol Imaging 33:1477–1482CrossRefPubMed Piepsz A, Tondeur M, Ham HR (2006) Revisiting normal (51)Cr-ethylenediaminetetraacetic acid clearance values in children. Eur J Nucl Med Mol Imaging 33:1477–1482CrossRefPubMed
26.
go back to reference Piepsz A, Tondeur M, Ham H (2008) Escaping the correction for body surface area when calculating glomerular filtration rate in children. Eur J Nucl Med Mol Imaging 35:1669–1672CrossRefPubMed Piepsz A, Tondeur M, Ham H (2008) Escaping the correction for body surface area when calculating glomerular filtration rate in children. Eur J Nucl Med Mol Imaging 35:1669–1672CrossRefPubMed
27.
go back to reference Pottel H, Mottaghy FM, Zaman Z, Martens F (2010) On the relationship between glomerular filtration rate and serum creatinine in children. Pediatr Nephrol 25:927–934CrossRefPubMed Pottel H, Mottaghy FM, Zaman Z, Martens F (2010) On the relationship between glomerular filtration rate and serum creatinine in children. Pediatr Nephrol 25:927–934CrossRefPubMed
28.
go back to reference Brodehl J, Gellissen K, Weber H (1982) Postnatal development of tubular phosphate reabsorption. Clin Nephrol 17:163–171PubMed Brodehl J, Gellissen K, Weber H (1982) Postnatal development of tubular phosphate reabsorption. Clin Nephrol 17:163–171PubMed
29.
go back to reference Gibb DM, Dalton NR, Barratt MT (1989) Measurement of glomerular filtration rate in children with insulin-dependent diabetes mellitus. Clin Chim Acta 182:131–139CrossRefPubMed Gibb DM, Dalton NR, Barratt MT (1989) Measurement of glomerular filtration rate in children with insulin-dependent diabetes mellitus. Clin Chim Acta 182:131–139CrossRefPubMed
30.
go back to reference Bröchner-Mortensen J (1973) The glomerular filtration rate during moderate hyperglycemia in normal man. Acta Med Scand 1–2:31–37PubMed Bröchner-Mortensen J (1973) The glomerular filtration rate during moderate hyperglycemia in normal man. Acta Med Scand 1–2:31–37PubMed
31.
go back to reference Delanaye P, Schaeffner E, Ebert N, Cavalier E, Mariat C, Krzesinski J-M, Moranne O (2012) Normal reference values for glomerular filtration rate: what do we really know? Nephrol Dial Transplant 27:2664–2672CrossRefPubMed Delanaye P, Schaeffner E, Ebert N, Cavalier E, Mariat C, Krzesinski J-M, Moranne O (2012) Normal reference values for glomerular filtration rate: what do we really know? Nephrol Dial Transplant 27:2664–2672CrossRefPubMed
32.
go back to reference Poggio ED, Rule AD, Tanchanco R, Arrigain S, Butler RS, Srinivas T, Stephany BR, Meyer KH, Nurko S, Fatica RA, Shoskes DA, Krishnamurthi V, Goldfarb DA, Gill I, Schreiber MJ (2009) Demographic and clinical characteristics associated with glomerular filtration rates in living kidney donors. Kidney Int 75:1079–1087CrossRefPubMedPubMedCentral Poggio ED, Rule AD, Tanchanco R, Arrigain S, Butler RS, Srinivas T, Stephany BR, Meyer KH, Nurko S, Fatica RA, Shoskes DA, Krishnamurthi V, Goldfarb DA, Gill I, Schreiber MJ (2009) Demographic and clinical characteristics associated with glomerular filtration rates in living kidney donors. Kidney Int 75:1079–1087CrossRefPubMedPubMedCentral
33.
go back to reference Roelants M, Hauspie R, Hoppenbrouwers K (2009) References for growth and pubertal development from birth to 21 years in Flanders, Belgium. Ann Hum Biol 36:680–694CrossRefPubMed Roelants M, Hauspie R, Hoppenbrouwers K (2009) References for growth and pubertal development from birth to 21 years in Flanders, Belgium. Ann Hum Biol 36:680–694CrossRefPubMed
34.
go back to reference Pottel H, Vrydags N, Mahieu B, Vandewynckele E, Croes K, Martens F (2008) Establishing age/sex related serum creatinine reference intervals from hospital laboratory data based on different statistical methods. Clin Chim Acta 396:49–55CrossRefPubMed Pottel H, Vrydags N, Mahieu B, Vandewynckele E, Croes K, Martens F (2008) Establishing age/sex related serum creatinine reference intervals from hospital laboratory data based on different statistical methods. Clin Chim Acta 396:49–55CrossRefPubMed
35.
go back to reference Schwartz GJ (2014) In Focus Height : the missing link in estimating glomerular fi ltration rate in children and adolescents. Nephrol Dial Transplant 29:944–947CrossRefPubMedPubMedCentral Schwartz GJ (2014) In Focus Height : the missing link in estimating glomerular fi ltration rate in children and adolescents. Nephrol Dial Transplant 29:944–947CrossRefPubMedPubMedCentral
36.
37.
go back to reference Fleming JS, Zivanovic M, Blake GM, Burniston M, Cosgriff PS (2004) Guidelines for the measurement of glomerular filtration rate using plasma sampling. Nucl Med Commun 25:759–769CrossRefPubMed Fleming JS, Zivanovic M, Blake GM, Burniston M, Cosgriff PS (2004) Guidelines for the measurement of glomerular filtration rate using plasma sampling. Nucl Med Commun 25:759–769CrossRefPubMed
38.
go back to reference Schwartz GJ, Muñoz A, Schneider MF, Mak RH, Kaskel F, Warady BAFS (2009) New equations to estimate GFR in children with CKD. J Am Soc Nephrol 20:629–637CrossRefPubMedPubMedCentral Schwartz GJ, Muñoz A, Schneider MF, Mak RH, Kaskel F, Warady BAFS (2009) New equations to estimate GFR in children with CKD. J Am Soc Nephrol 20:629–637CrossRefPubMedPubMedCentral
39.
go back to reference Schwartz GJ, Haycock GB, Edelmann CM, Spitzer M (1976) A simple estimate of glomerular filtration rate in children derived from body length and plasma creatinine. Pediatrics 58:259–263PubMed Schwartz GJ, Haycock GB, Edelmann CM, Spitzer M (1976) A simple estimate of glomerular filtration rate in children derived from body length and plasma creatinine. Pediatrics 58:259–263PubMed
40.
go back to reference Schwartz GJ, Feld LG (1984) A simple estimate of glomerular filtration rate in full-term infants during the first year of life. J Pediatr 104:849–854CrossRefPubMed Schwartz GJ, Feld LG (1984) A simple estimate of glomerular filtration rate in full-term infants during the first year of life. J Pediatr 104:849–854CrossRefPubMed
41.
go back to reference Schwartz GJ (1985) A simple estimate of glomerular filtration rate in adolescent boys. J Pediatr 106:522–526CrossRefPubMed Schwartz GJ (1985) A simple estimate of glomerular filtration rate in adolescent boys. J Pediatr 106:522–526CrossRefPubMed
42.
go back to reference de Souza VC, Rabilloud M, Cochat P, Selistre L, Hadj-Aissa A, Kassai B, Ranchin B, Berg U, Herthelius M, Dubourg L (2012) Schwartz formula: is one k-coefficient adequate for all children? PLoS One 7:1–7 de Souza VC, Rabilloud M, Cochat P, Selistre L, Hadj-Aissa A, Kassai B, Ranchin B, Berg U, Herthelius M, Dubourg L (2012) Schwartz formula: is one k-coefficient adequate for all children? PLoS One 7:1–7
43.
go back to reference Zappitelli M, Zhang X, Foster BJ (2010) Estimating glomerular filtration rate in children at serial follow-up when height is unknown. Clin J Am Soc Nephrol 5:1763–1769CrossRefPubMedPubMedCentral Zappitelli M, Zhang X, Foster BJ (2010) Estimating glomerular filtration rate in children at serial follow-up when height is unknown. Clin J Am Soc Nephrol 5:1763–1769CrossRefPubMedPubMedCentral
44.
go back to reference Bacchetta J, Cochat P, Rognant N, Ranchin B, Hadj-Aissa A, Dubourg L (2011) Which creatinine and cystatin C equations can be reliably used in children? Clin J Am Soc Nephrol 6:552–560CrossRefPubMedPubMedCentral Bacchetta J, Cochat P, Rognant N, Ranchin B, Hadj-Aissa A, Dubourg L (2011) Which creatinine and cystatin C equations can be reliably used in children? Clin J Am Soc Nephrol 6:552–560CrossRefPubMedPubMedCentral
45.
go back to reference Andersen TB, Eskild-Jensen A, Frøkiaer J, Brøchner-Mortensen J (2009) Measuring glomerular filtration rate in children; can cystatin C replace established methods? A review. Pediatr Nephrol 24:929–941CrossRefPubMed Andersen TB, Eskild-Jensen A, Frøkiaer J, Brøchner-Mortensen J (2009) Measuring glomerular filtration rate in children; can cystatin C replace established methods? A review. Pediatr Nephrol 24:929–941CrossRefPubMed
46.
go back to reference Pottel H, Hoste L, Martens F (2012) A simple height-independent equation for estimating glomerular filtration rate in children. Pediatr Nephrol 27:973–979CrossRefPubMed Pottel H, Hoste L, Martens F (2012) A simple height-independent equation for estimating glomerular filtration rate in children. Pediatr Nephrol 27:973–979CrossRefPubMed
47.
go back to reference Pottel H, Hoste L, Delanaye P (2015) Abnormal glomerular filtration rate in children, adolescents and young adults starts below 75 mL/min/1.73 m2. Pediatr Nephrol 30:821–828CrossRefPubMed Pottel H, Hoste L, Delanaye P (2015) Abnormal glomerular filtration rate in children, adolescents and young adults starts below 75 mL/min/1.73 m2. Pediatr Nephrol 30:821–828CrossRefPubMed
48.
go back to reference Hoste L, Dubourg L, Selistre L, De Souza VC, Ranchin B, Hadj-Aïssa A, Cochat P, Martens F, Pottel H (2013) A new equation to estimate the glomerular filtration rate in children, adolescents and young adults. Nephrol Dial Transplant 29:944–947 Hoste L, Dubourg L, Selistre L, De Souza VC, Ranchin B, Hadj-Aïssa A, Cochat P, Martens F, Pottel H (2013) A new equation to estimate the glomerular filtration rate in children, adolescents and young adults. Nephrol Dial Transplant 29:944–947
49.
go back to reference Pottel H, Hoste L, Dubourg L, Ebert N, Schaeffner E, Eriksen BO, Melsom T, Lamb EJ, Rule AD, Turner ST, Glassock RJ, De Souza V, Selistre L, Mariat C, Martens F, Delanaye P (2016) An estimated glomerular filtration rate equation for the full age spectrum. Nephrol Dial Transplant. doi:10.1093/ndt/gfv454 Pottel H, Hoste L, Dubourg L, Ebert N, Schaeffner E, Eriksen BO, Melsom T, Lamb EJ, Rule AD, Turner ST, Glassock RJ, De Souza V, Selistre L, Mariat C, Martens F, Delanaye P (2016) An estimated glomerular filtration rate equation for the full age spectrum. Nephrol Dial Transplant. doi:10.​1093/​ndt/​gfv454
50.
go back to reference Mattman A, Eintracht S, Mock T, Schick G, Seccombe DW, Hurley RM, White CT (2006) Estimating pediatric glomerular filtration rates in the era of chronic kidney disease staging. J Am Soc Nephrol 17:487–496CrossRefPubMed Mattman A, Eintracht S, Mock T, Schick G, Seccombe DW, Hurley RM, White CT (2006) Estimating pediatric glomerular filtration rates in the era of chronic kidney disease staging. J Am Soc Nephrol 17:487–496CrossRefPubMed
51.
go back to reference Gao A, Cachat F, Faouzi M, Bardy D, Mosig D, Meyrat BJ, Girardin E, Chehade H (2013) Comparison of the glomerular filtration rate in children by the new revised Schwartz formula and a new generalized formula. Kidney Int 83:524–530CrossRefPubMed Gao A, Cachat F, Faouzi M, Bardy D, Mosig D, Meyrat BJ, Girardin E, Chehade H (2013) Comparison of the glomerular filtration rate in children by the new revised Schwartz formula and a new generalized formula. Kidney Int 83:524–530CrossRefPubMed
52.
go back to reference Nyman U, Björk J, Lindström V, Grubb A (2008) The Lund-Malmö creatinine-based glomerular filtration rate prediction equation for adults also performs well in children. Scand J Clin Lab Invest 68:568–576CrossRefPubMed Nyman U, Björk J, Lindström V, Grubb A (2008) The Lund-Malmö creatinine-based glomerular filtration rate prediction equation for adults also performs well in children. Scand J Clin Lab Invest 68:568–576CrossRefPubMed
53.
go back to reference Selistre L, De Souza V, Cochat P, Ferreira Antonello IC, Hadj-Aissa A, Ranchin B, Dolomanova O, Varennes A, Beyerle F, Bacchetta J, Dubourg L (2012) GFR estimation in adolescents and young adults. J Am Soc Nephrol 23:989–996CrossRefPubMed Selistre L, De Souza V, Cochat P, Ferreira Antonello IC, Hadj-Aissa A, Ranchin B, Dolomanova O, Varennes A, Beyerle F, Bacchetta J, Dubourg L (2012) GFR estimation in adolescents and young adults. J Am Soc Nephrol 23:989–996CrossRefPubMed
54.
go back to reference Astor BC (2012) Chronic kidney disease: estimating GFR-the right equation for the right population. Nat Rev Nephrol 8:379–380CrossRefPubMed Astor BC (2012) Chronic kidney disease: estimating GFR-the right equation for the right population. Nat Rev Nephrol 8:379–380CrossRefPubMed
55.
go back to reference Braat E, Hoste L, De Waele L, Gheysens O, Vermeersch P, Goffin K, Pottel H, Goemans N, Levtchenko E (2015) Renal function in children and adolescents with Duchenne muscular dystrophy. Neuromuscul Disord 25:381–387CrossRefPubMed Braat E, Hoste L, De Waele L, Gheysens O, Vermeersch P, Goffin K, Pottel H, Goemans N, Levtchenko E (2015) Renal function in children and adolescents with Duchenne muscular dystrophy. Neuromuscul Disord 25:381–387CrossRefPubMed
56.
go back to reference Abitbol CL, Seeherunvong W, Galarza MG, Katsoufis C, Francoeur D, Defreitas M, Edwards-Richards A, Sankar Raj VM, Chandar J, Duara S, Yasin S, Zilleruelo G (2014) Neonatal kidney size and function in preterm infants: what is a true estimate of glomerular filtration rate? J Pediatr 164:1026–1031CrossRefPubMed Abitbol CL, Seeherunvong W, Galarza MG, Katsoufis C, Francoeur D, Defreitas M, Edwards-Richards A, Sankar Raj VM, Chandar J, Duara S, Yasin S, Zilleruelo G (2014) Neonatal kidney size and function in preterm infants: what is a true estimate of glomerular filtration rate? J Pediatr 164:1026–1031CrossRefPubMed
57.
go back to reference Filler G, Bökenkamp A, Hofmann W, Le Bricon T, Martínez-Brú C, Grubb A (2005) Cystatin C as a marker of GFR - history, indications, and future research. Clin Biochem 38:1–8CrossRefPubMed Filler G, Bökenkamp A, Hofmann W, Le Bricon T, Martínez-Brú C, Grubb A (2005) Cystatin C as a marker of GFR - history, indications, and future research. Clin Biochem 38:1–8CrossRefPubMed
58.
go back to reference Hoek FJ (2003) A comparison between cystatin C, plasma creatinine and the Cockcroft and Gault formula for the estimation of glomerular filtration rate. Nephrol Dial Transplant 18:2024–2031CrossRefPubMed Hoek FJ (2003) A comparison between cystatin C, plasma creatinine and the Cockcroft and Gault formula for the estimation of glomerular filtration rate. Nephrol Dial Transplant 18:2024–2031CrossRefPubMed
59.
go back to reference Bricon TL, Thervet E, Froissart M, Benlakehal M, Legendre C, Erlich D (2000) Plasma cystatin C is superior to 24-h creatinine clearance and plasma creatinine for estimation of glomerular filtration rate 3 months after kidney transplantation. Clin Chem 46:1206–1207PubMed Bricon TL, Thervet E, Froissart M, Benlakehal M, Legendre C, Erlich D (2000) Plasma cystatin C is superior to 24-h creatinine clearance and plasma creatinine for estimation of glomerular filtration rate 3 months after kidney transplantation. Clin Chem 46:1206–1207PubMed
60.
go back to reference Larsson A, Malm J, Grubb A, Hansson LO (2004) Calculation of glomerular filtration rate expressed in mL/min from plasma cystatin C values in mg/L. Scand J Clin Lab Invest 64:25–30CrossRefPubMed Larsson A, Malm J, Grubb A, Hansson LO (2004) Calculation of glomerular filtration rate expressed in mL/min from plasma cystatin C values in mg/L. Scand J Clin Lab Invest 64:25–30CrossRefPubMed
61.
go back to reference Rule AD, Bergstralh EJ, Slezak JM, Bergert J, Larson TS (2006) Glomerular filtration rate estimated by cystatin C among different clinical presentations. Kidney Int 69:399–405CrossRefPubMed Rule AD, Bergstralh EJ, Slezak JM, Bergert J, Larson TS (2006) Glomerular filtration rate estimated by cystatin C among different clinical presentations. Kidney Int 69:399–405CrossRefPubMed
62.
go back to reference Filler G, Lepage N (2003) Should the Schwartz formula for estimation of GFR be replaced by cystatin C formula? Pediatr Nephrol 18:981–985CrossRefPubMed Filler G, Lepage N (2003) Should the Schwartz formula for estimation of GFR be replaced by cystatin C formula? Pediatr Nephrol 18:981–985CrossRefPubMed
63.
go back to reference Zappitelli M, Parvex P, Joseph L, Paradis G, Grey V, Lau S, Bell L (2006) Derivation and validation of cystatin C-based prediction equations for GFR in children. Am J Kidney Dis 48:221–230CrossRefPubMed Zappitelli M, Parvex P, Joseph L, Paradis G, Grey V, Lau S, Bell L (2006) Derivation and validation of cystatin C-based prediction equations for GFR in children. Am J Kidney Dis 48:221–230CrossRefPubMed
64.
go back to reference Fadrowski JJ, Neu AM, Schwartz GJ, Furth SL (2011) Pediatric GFR estimating equations applied to adolescents in the general population. Clin J Am Soc Nephrol 6:1427–1435CrossRefPubMedPubMedCentral Fadrowski JJ, Neu AM, Schwartz GJ, Furth SL (2011) Pediatric GFR estimating equations applied to adolescents in the general population. Clin J Am Soc Nephrol 6:1427–1435CrossRefPubMedPubMedCentral
65.
go back to reference Grubb A, Nyman U, Björk J (2012) Improved estimation of glomerular filtration rate (GFR) by comparison of eGFRcystatin C and eGFRcreatinine. Scand J Clin Lab Invest 72:73–77CrossRefPubMed Grubb A, Nyman U, Björk J (2012) Improved estimation of glomerular filtration rate (GFR) by comparison of eGFRcystatin C and eGFRcreatinine. Scand J Clin Lab Invest 72:73–77CrossRefPubMed
66.
go back to reference Grubb A, Blirup-Jensen S, Lindström V, Schmidt C, Althaus H, Zegers I (2010) First certified reference material for cystatin C in human serum ERM-DA471/IFCC. Clin Chem Lab Med 48:1619–1621CrossRefPubMed Grubb A, Blirup-Jensen S, Lindström V, Schmidt C, Althaus H, Zegers I (2010) First certified reference material for cystatin C in human serum ERM-DA471/IFCC. Clin Chem Lab Med 48:1619–1621CrossRefPubMed
67.
go back to reference Grubb A, Horio M, Hansson L-O, Bjork J, Nyman U, Flodin M, Larsson A, Bökenkamp A, Yasuda Y, Blufpand H, Lindström V, Zegers I, Althaus H, Blirup-Jensen S, Itoh Y, Sjöström P, Nordin G, Christensson A, Klima H, Sunde K, Hjort-Christensen P, Armbruster D, Ferrero C (2014) Generation of a new cystatin c-based estimating equation for glomerular filtration rate by use of 7 assays standardized to the international calibrator. Clin Chem 60:974–986CrossRefPubMed Grubb A, Horio M, Hansson L-O, Bjork J, Nyman U, Flodin M, Larsson A, Bökenkamp A, Yasuda Y, Blufpand H, Lindström V, Zegers I, Althaus H, Blirup-Jensen S, Itoh Y, Sjöström P, Nordin G, Christensson A, Klima H, Sunde K, Hjort-Christensen P, Armbruster D, Ferrero C (2014) Generation of a new cystatin c-based estimating equation for glomerular filtration rate by use of 7 assays standardized to the international calibrator. Clin Chem 60:974–986CrossRefPubMed
68.
go back to reference Chehade H, Cachat F, Jannot AS, Meyrat BJ, Mosig D, Bardy D, Parvex P, Girardin E (2014) New combined serum creatinine and cystatin C quadratic formula for GFR assessment in children. Clin J Am Soc Nephrol 9:54–63CrossRefPubMed Chehade H, Cachat F, Jannot AS, Meyrat BJ, Mosig D, Bardy D, Parvex P, Girardin E (2014) New combined serum creatinine and cystatin C quadratic formula for GFR assessment in children. Clin J Am Soc Nephrol 9:54–63CrossRefPubMed
69.
go back to reference Bouvet Y, Bouissou F, Coulais Y, Séronie-Vivien S, Tafani M, Decramer S, Chatelut E (2006) GFR is better estimated by considering both serum cystatin C and creatinine levels. Pediatr Nephrol 21:1299–1306CrossRefPubMed Bouvet Y, Bouissou F, Coulais Y, Séronie-Vivien S, Tafani M, Decramer S, Chatelut E (2006) GFR is better estimated by considering both serum cystatin C and creatinine levels. Pediatr Nephrol 21:1299–1306CrossRefPubMed
70.
go back to reference Schwartz GJ, Schneider MF, Maier PS, Moxey-Mims M, Dharnidharka VR, Warady BA, Furth SL, Muñoz A (2012) Improved equations estimating GFR in children with chronic kidney disease using an immunonephelometric determination of cystatin C. Kidney Int 82:445–453CrossRefPubMedPubMedCentral Schwartz GJ, Schneider MF, Maier PS, Moxey-Mims M, Dharnidharka VR, Warady BA, Furth SL, Muñoz A (2012) Improved equations estimating GFR in children with chronic kidney disease using an immunonephelometric determination of cystatin C. Kidney Int 82:445–453CrossRefPubMedPubMedCentral
71.
go back to reference Benisty K, Zappitelli M (2015) Measures of GFR in health and disease. Curr Pediatr Rep 3:101–110CrossRef Benisty K, Zappitelli M (2015) Measures of GFR in health and disease. Curr Pediatr Rep 3:101–110CrossRef
72.
go back to reference Filler G, Priem F, Lepage N, Sinha P, Vollmer I, Clark H, Keely E, Matzinger M, Akbari A, Althaus H, Jung K (2002) b-trace protein, cystatin C, b2-microglobulin, and creatinine compared for detecting impaired glomerular filtration rates in children. Clin Chem 48:729–736PubMed Filler G, Priem F, Lepage N, Sinha P, Vollmer I, Clark H, Keely E, Matzinger M, Akbari A, Althaus H, Jung K (2002) b-trace protein, cystatin C, b2-microglobulin, and creatinine compared for detecting impaired glomerular filtration rates in children. Clin Chem 48:729–736PubMed
73.
go back to reference Witzel SH, Huang SHS, Braam B, Filler G (2015) Estimation of GFR using b-trace protein in children. Clin J Am Soc Nephrol 10:401–409CrossRefPubMed Witzel SH, Huang SHS, Braam B, Filler G (2015) Estimation of GFR using b-trace protein in children. Clin J Am Soc Nephrol 10:401–409CrossRefPubMed
Metadata
Title
Measuring and estimating glomerular filtration rate in children
Author
Hans Pottel
Publication date
01-02-2017
Publisher
Springer Berlin Heidelberg
Published in
Pediatric Nephrology / Issue 2/2017
Print ISSN: 0931-041X
Electronic ISSN: 1432-198X
DOI
https://doi.org/10.1007/s00467-016-3373-x

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