Harada R, Hamasaki Y, Okuda Y, Hamada R, Ishikura K (2022) Epidemiology of pediatric chronic kidney disease/kidney failure: learning from registries and cohort studies. Pediatr Nephrol 37:1215–1229
Tuttle KR, Alicic RZ, Duru OK, Jones CR, Daratha KB, Nicholas SB, McPherson SM, Neumiller JJ, Bell DS, Mangione CM (2019) Clinical characteristics of and risk factors for chronic kidney disease among adults and children: an analysis of the CURE-CKD registry. JAMA Netw Open 2:e1918169–e1918169
Article PubMed PubMed Central Google Scholar
Ashuntantang G, Osafo C, Olowu WA, Arogundade F, Niang A, Porter J, Naicker S, Luyckx VA (2017) Outcomes in adults and children with end-stage kidney disease requiring dialysis in sub-Saharan Africa: a systematic review. Lancet Glob Health 5:e408–e417
National Population Commission (NPC) (2006) Nigeria National Census: Population Distribution by Sex, State, LGAs and Senatorial District: 2006 Census Priority Tables (vol. 3). http://www.population.gov.ng/index.php/publication/140-popn-distri-by-sex-state-jgas-and-senatorial-distr-2006. Accessed 10 Nov 2022
Ng DK, Schwartz GJ, Schneider MF, Furth SL, Warady BA (2018) Combination of pediatric and adult formulas yield valid glomerular filtration rate estimates in young adults with a history of pediatric chronic kidney disease. Kidney Int 94:170–177
Article PubMed PubMed Central Google Scholar
Ng DK, Schwartz GJ, Warady BA, Furth SL, Muñoz A (2017) Relationships of measured iohexol GFR and estimated GFR with CKD-related biomarkers in children and adolescents. Am J Kidney Dis 70:397–405
Article CAS PubMed PubMed Central Google Scholar
Azzi A, Cachat F, Faouzi M, Mosig D, Ramseyer P, Girardin E, Chehade H (2015) Is there an age cutoff to apply adult formulas for GFR estimation in children? J Nephrol 28:59–66
Article CAS PubMed Google Scholar
Olowu WA, Adefehinti O, Aladekomo TA (2013) Epidemiology and clinicopathologic outcome of pediatric chronic kidney disease in Nigeria, a single centre study. Arab J Nephrol Transplant 6:105–113
Ladapo TA, Esezobor CI, Lesi FE (2014) Pediatric kidney diseases in an African country: prevalence, spectrum and outcome. Saudi J Kidney Dis Transpl 25:1110–1116
Abd ElHafeez S, Bolignano D, D’Arrigo G, Dounousi E, Tripepi G, Zoccali C (2018) Prevalence and burden of chronic kidney disease among the general population and high-risk groups in Africa: a systematic review. BMJ Open 8:e015069
Article PubMed PubMed Central Google Scholar
Asinobi AO, Ademola AD, Ogunkunle OO, Mott SA (2014) Paediatric end-stage renal disease in a tertiary hospital in South West Nigeria. BMC Nephrol 15:25
Article PubMed PubMed Central Google Scholar
Gbadegesin R, Asinobi A, Osinusi K, Adeyemo A (1995) Is the height/plasma creatinine formula of Schwartz useful as a screening test in detecting Nigeria children with low GFR? West Afr J Med 14:242–245
Gbadegesin R, Adeyemo A, Asinobi A, Osinusi K (1997) Inaccuracy of the Schwartz formula in estimating glomerular filtration rate in Nigerian children. Ann Trop Paediatr 17:179–185
Article CAS PubMed Google Scholar
Schwartz GJ, Munoz A, Schneider MF, Mak RH, Kaskel F, Warady BA, Furth SL (2009) New equations to estimate GFR in children with CKD. J Am Soc Nephrol 20:629
Article PubMed PubMed Central Google Scholar
Pottel H, Björk J, Delanaye P, Nyman U (2022) Evaluation of the creatinine-based chronic kidney disease in children (under 25 years) equation in healthy children and adolescents. Pediatr Nephrol 37:2213–2216
Hoste L, Dubourg L, Selistre L, De Souza VC, Ranchin B, Hadj-Aïssa A, Cochat P, Martens F, Pottel H (2014) A new equation to estimate the glomerular filtration rate in children, adolescents and young adults. Nephrol Dial Transplant 29:1082–1091
Article CAS PubMed Google Scholar
Schwaderer AL, Maier P, Greenbaum LA, Furth SL, Schwartz GJ (2023) Application of GFR estimating equations to children with normal, near-normal, or discordant GFR. Pediatr Nephrol 38:4051–4059
Pottel H, Hoste L, Martens F (2012) A simple height-independent equation for estimating glomerular filtration rate in children. Pediatr Nephrol 27:973–979
Ng DK, Furth SL, Warady BA, Crews DC, Seegmiller JC, Schwartz GJ, Fathallah-Shaykh S, Nayak A, Turman M, Blydt-Hansen T (2022) Self-reported race, serum creatinine, cystatin C, and GFR in children and young adults with pediatric kidney diseases: a report from the chronic kidney disease in children (CKiD) study. Am J Kidney Dis 80:174-185.e171
Article CAS PubMed Google Scholar
Porrini E, Ruggenenti P, Luis-Lima S, Carrara F, Jiménez A, de Vries AP, Torres A, Gaspari F, Remuzzi G (2019) Estimated GFR: time for a critical appraisal. Nat Rev Nephrol 15:177–190
Article CAS PubMed Google Scholar
Alao MA, Asinobi O, Ibrahim O, Lagunju I (2021) Spot urine protein-to-creatinine ratio compared with dipstick proteinuria as a primary screening tool for renal disease in a community setting. Saudi J Kidney Dis Transpl 32:1655–1665
Mosteller RD (1987) Simplified calculation of body surface area. N Engl J Med 317:1098
Article CAS PubMed Google Scholar
Flynn JT, Kaelber DC, Baker-Smith CM, Blowey D, Carroll AE, Daniels SR, de Ferranti SD, Dionne JM, Falkner B, Flinn SK (2017) Clinical practice guideline for screening and management of high blood pressure in children and adolescents. Pediatrics 140:e20171904
Hoste L, Deiteren K, Pottel H, Callewaert N, Martens F (2015) Routine serum creatinine measurements: how well do we perform? BMC Nephrol 16:21
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 82:445–453
Article CAS PubMed PubMed Central Google Scholar
Chehade H, Cachat F, Jannot A-S, Meyrat B-J, 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 9:54–63
Article CAS PubMed Google Scholar
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 21:1299–1306
Pierce CB, Muñoz A, Ng DK, Warady BA, Furth SL, Schwartz GJ (2021) Age-and sex-dependent clinical equations to estimate glomerular filtration rates in children and young adults with chronic kidney disease. Kidney Int 99:948–956
Pottel H, Delanaye P, Schaeffner E, Dubourg L, Eriksen BO, Melsom T, Lamb EJ, Rule AD, Turner ST, Glassock RJ (2017) Estimating glomerular filtration rate for the full age spectrum from serum creatinine and cystatin C. Nephrol Dial Transplant 32:497–507
CAS PubMed PubMed Central Google Scholar
Pottel H, Hoste L, Dubourg L, Ebert N, Schaeffner E, Eriksen BO, Melsom T, Lamb EJ, Rule AD, Turner ST (2016) An estimated glomerular filtration rate equation for the full age spectrum. Nephrol Dial Transplant 31:798–806
Article PubMed PubMed Central Google Scholar
Pottel H, Björk J, Courbebaisse M, Couzi L, Ebert N, Eriksen BO, Dalton RN, Dubourg L, Gaillard F, Garrouste C (2021) Development and validation of a modified full age spectrum creatinine-based equation to estimate glomerular filtration rate: a cross-sectional analysis of pooled data. Ann Intern Med 174:183–191
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 48:221–230
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