264
Views
11
CrossRef citations to date
0
Altmetric
Reviews

Early diagnosis of acute kidney injury with urinary biomarkers in the newborn

, , , &
Pages 62-66 | Received 29 May 2009, Accepted 13 Jul 2009, Published online: 23 Oct 2009

References

  • Mehta R L, Kellum J A, Shah S V, Molitoris B A, Ronco C, Warnock D G, Levin A. Acute Kidney Injury Network. Acute Kidney Injury Network (AKIN): report of an initiative to improve outcomes in acute kidney injury. Crit Care 2007; 11: R31
  • Bellomo R, Kellum J A, Ronco C. Acute renal failure – definition, outcome measures, animal models, fluid therapy and information technology needs: the second international consensus conference of the acute dialysis quality initiative (ADQI) group. Crit Care 2004; 8: R204–R212
  • Goldstein S L. Pediatric acute kidney injury: it's time for real progress. Pediatr Nephrol 2006; 21: 891–895
  • American Society of Nephrology. American society of nephrology renal research report. J Am Soc Nephrol 2005; 16: 1886–1893
  • Bagshaw S M, Gibney R TN. Conventional markers of kidney function. Crit Care Med 2008; 36: S152–S158
  • Cataldi L, Mussap M, Verlato G, Plebani M, Fanos V. Neonatal Nephrology Study Group of the Italian Society of Neonatology. Netilmicin effect on urinary retinol binding protein (RBP) and N-acetyl-beta-d-glucosaminidase (NAG) in preterm newborns with and without anoxia. J Chemother 2002; 14: 76–83
  • Coscia A, Maiorca D, Martano C, Rossi C, Appino I, Cirina P, Alessi D, Fabris C. Use of netilmicin once or twice daily in preterm newborn: evaluation of nephrotoxicity by urinary alpha1-microglobulin and retinol binding protein. J Chemother 2008; 20: 324–326
  • Fanos V, Mussap M, Verlato G, Plebani M, Padovani E M. Evaluation of antibiotic-induced nephrotoxicity in preterm neonates by determining urinary alpha 1-microglobulin. Pediatr Nephrol 1996; 10: 645–647
  • Fanos V, Cataldi L. Antibacterial-induced nephrotoxicity in the newborn. Drug Saf 1999; 20: 245–267
  • Bhat M A, Shah Z A, Makhdoomi M S, Mufti M H. Theophylline for renal function in term neonates with perinatal asphyxia: a randomized, placebo-controlled trial. J Pediatr 2006; 149: 180–184
  • Skalova S, Chladek J. Urinary N-acetyl-beta-d-glucosaminidase activity in healthy children. Nephrology (Carlton) 2004; 9: 19–21
  • Vento M, Sastre J, Asensi M A, Viña J. Room-air resuscitation causes less damage to heart and kidney than 100% oxygen. Am J Respir Crit Care Med 2005; 172: 1393–1398
  • Hellerstein S, Berenbom M, Erwin P, Wilson N, DiMaggio S. The ratio of urinary cystatin C to urinary creatinine for detecting decreased GFR. Pediatr Nephrol 2004; 19: 521–525
  • Herget-Rosenthal S, van Wijk J A, Bröcker-Preuss M, Bökenkamp A. Increased urinary cystatin C reflects structural and functional renal tubular impairment independent of glomerular filtration rate. Clin Biochem 2007; 40: 946–951
  • Zaffanello M, Franchini M, Fanos V. Is serum Cystatin-C a suitable marker of renal function in children. Ann Clin Lab Sci 2007; 37: 233–240
  • Antonucci R, Cuzzolin L, Arceri A, Fanos V. Renal PGE2 in preterm infants: a possible role in the adaptation to extrauterine life. Pediatr Res 2005; 58: 356, [abstract no. 13]
  • Antonucci R, Cuzzolin L, Arceri A, Fanos V. Urinary prostaglandin E2 in the newborn and infant. Prostaglandins Other Lipid Mediat 2007; 84: 1–13
  • Mori K, Nakao K. Neutrophil gelatinase-associated lipocalin as the real-time indicator of active kidney damage. Kidney Int 2007; 71: 967–970
  • Trachtman H, Christen E, Cnaan A, Patrick J, Mai V, Mishra J, Jain A, Bullington N, Devarajan P. Urinary neutrophil gelatinase-associated lipocalin in D+HUS: a novel marker of renal injury. Pediatr Nephrol 2006; 21: 989–994
  • Mori K, Lee H T, Rapoport D, Drexler I R, Foster K, Yang J, Schmidt-Ott K M, Chen X, Li J Y, Weiss S, Mishra J, Cheema F H, Markowitz G, Suganami T, Sawai K, Mukoyama M, Kunis C, D'Agati V, Devarajan P, Barasch J. Endocytic delivery of lipocalin-siderophore-iron complex rescues the kidney from ischemia-reperfusion injury. J Clin Invest 2005; 115: 610–621
  • Mishra J, Mori K, Ma Q, Kelly C, Barasch J, Devarajan P. Neutrophil gelatinase-associated lipocalin: a novel early urinary biomarker for cisplatin nephrotoxicity. Am J Nephrol 2004; 24: 307–315
  • Lavery A P, Meinzen-Derr J K, Anderson E, Ma Q, Bennett M R, Devarajan P, Schibler K R. Urinary NGAL in premature infants. Pediatr Res 2008; 64: 423–428
  • Grandaliano G, Gesualdo L, Bartoli F, Ranieri E, Monno R, Leggio A, Paradies G, Caldarulo E, Infante B, Schena F P. MCP-1 and EGF renal expression and urine excretion in human congenital obstructive nephropathy. Kidney Int 2000; 58: 182–181
  • Bartoli F, Gesualdo L, Paradies G, Caldarulo E, Infante B, Grandaliano G, Monno R, Leggio S, Salzillo F, Schena F P, Leggio A. Renal expression of monocyte chemotactic protein-1 and epidermal growth factor in children with obstructive hydronephrosis. J Pediatr Surg 2000; 35: 569–572
  • Taha M A, Shokeir A A, Osman H G, Abd el-Aziz Ael A, Farahat S E. Diagnosis of ureteropelvic junction obstruction in children: role of endothelin-1 in voided urine. Urology 2007; 69: 560–564, discussion 564–565
  • Ichimura T, Hung C C, Yang S A, Stevens J L, Bonventre J V. Kidney injury molecule-1: a tissue and urinary biomarker for nephrotoxicant-induced renal injury. Am J Physiol Renal Physiol 2004; 286: F552–F563
  • Parikh C R, Devarajan P. New biomarkers of acute kidney injury. Crit Care Med 2008; 36: S159–S165
  • Yokoyama T, Kamijo-Ikemori A, Sugaya T, Hoshino S, Yasuda T, Kimura K. Urinary excretion of liver type fatty acid binding protein accurately reflects the degree of tubulointerstitial damage. Am J Pathol 2009; 174: 2096–2106
  • Tsukahara H, Sugaya T, Hayakawa K, Mori Y, Hiraoka M, Hata A, Mayumi M. Quantification of L-type fatty acid binding protein in the urine of preterm neonates. Early Hum Dev 2005; 81: 643–646
  • Sheu J N, Chen M C, Cheng S L, Lee I C, Chen S M, Tsay G J. Urine interleukin-1β in children with acute pyelonephritis and renal scarring. Nephrology 2007; 12: 487–493
  • Sheu J N, Chen M C, Chen S M, Chen S L, Chiou S Y, Lue K H. Relationship between serum and urine interleukin-6 elevations and renal scarring in children with acute pyelonephritis. Scand J Urol Nephrol 2009; 43: 133–137
  • Hentschel M, Gildein P, Brandis M, Zimmerhackl L B. Endothelin (ET-1) is involved in the contrast media induced nephrotoxicity in children with congenital heart disease. Clin Nephrol 1995; 43: S12–S15
  • Achenbach J, Mengel M, Tossidou I, Peters I, Park J K, Haubitz M, Ehrich J H, Haller H, Schiffer M. Parietal epithelia cells in the urine as a marker of disease activity in glomerular diseases. Nephrol Dial Transplant 2008; 23: 3138–3145
  • Yu B, Li S, Yao Y, Lin Z. Changes in beta(1) integrin in renal tubular epithelial cells after intrauterine asphyxia of rabbit pups. J Perinat Med 2009; 37: 59–65
  • Lange-Sperandio B, Schimpgen K, Rodenbeck B, Chavakis T, Bierhaus A, Nawroth P, Thornhill B, Schaefer F, Chevalier R L. Distinct roles of Mac-1 and its counter-receptors in neonatal obstructive nephropathy. Kidney Int 2006; 69: 81–88
  • Thongboonkerd V, Malasit P. Renal and urinary proteomics: current applications and challenges. Proteomics 2005; 5: 1033–1042
  • Nguyen M T, Dent C L, Ross G F, Harris N, Manning P B, Mitsnefes M M, Devarajan P. Urinary aprotinin as a predictor of acute kidney injury after cardiac surgery in children receiving aprotinin therapy. Pediatr Nephrol 2008; 23: 1317–1326
  • Fanos V, Cuzzolin L. Causes and manifestations of nephrotoxicity. Comprehensive Pediatric Nephrology, D F Geary, F Schaefer. Mosby Elsevier, Philadelphia 2008; 1003–1006
  • Askenazi D J, Feig D I, Graham N M, Hui-Stickle S, Goldstein S L. 3–5 year longitudinal follow-up of pediatric patients after acute renal failure. Kidney Int 2006; 69: 184–189

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.