Skip to main content
Top
Published in: Pediatric Cardiology 1/2012

01-01-2012 | Original Article

Acute Kidney Injury After Cardiac Surgery in Infants and Children: Evaluation of the Role of Angiotensin-Converting Enzyme Inhibitors

Authors: Christina M. Phelps, Jennifer Eshelman, Eduardo Da Cruz, Zhaoxing Pan, Jon Kaufman

Published in: Pediatric Cardiology | Issue 1/2012

Login to get access

Abstract

Children with congenital heart disease who undergo cardiac surgery are vulnerable to acute kidney injury (AKI). This study sought to evaluate the role of angiotensin-converting enzyme (ACE) inhibitors and other nephrotoxic medications in the risk for the development of AKI in neonates and children undergoing cardiac surgery. A retrospective review of all patients younger than 2 years admitted to the cardiac intensive care unit after cardiac surgery from March 2007 to September 2008 was conducted. Patients were included in the review if they received furosemide alone or in combination with an ACE inhibitor. Creatinine clearance was calculated, and the patient’s maximal degree of AKI was classified by pRIFLE. A P value less than 0.05 was considered significant. Of the 319 patients who met the inclusion criteria, 149 (47%) received furosemide therapy alone and 170 (53%) received a combination of furosemide and an ACE inhibitor. Patients in the furosemide-only group (age, 5 months) were older than the patients who received both furosemide and an ACE inhibitor (age, 3.8 months; P = 0.024). Despite statistically higher Aristotle scores in the ACE-inhibitor group, the intraoperative variables did not differ between the two groups. Postoperatively, the ACE-inhibitor group had a decreased creatinine clearance (55.3 ml/min/1.73 m2) compared with the furosemide group (64.4 ml/min/1.73 m2; P = 0.015) and an increased incidence of a pRIFLE maximal score of “F” (odds ratio [OR], 1.75; P = 0.033). However, after adjustment for additional risk factors, no difference in the occurrence of AKI resulted (OR, 0.939; P = 0.85) when patients received an ACE inhibitor. More than half of the study population received ACE inhibitors, but this treatment was not associated with an increase in AKI.
Literature
1.
go back to reference Agras P, Derbent M, Ozcay F et al (2005) Effect of congenital heart disease on renal function in childhood. Nephron Physiol 99:10–15CrossRef Agras P, Derbent M, Ozcay F et al (2005) Effect of congenital heart disease on renal function in childhood. Nephron Physiol 99:10–15CrossRef
2.
go back to reference Ahmed A (2002) Use of angiotensin-converting enzyme inhibitors in patients with heart failure and renal insufficiency: how concerned should we be by the rise in serum creatinine? J Am Geriatr Soc 50:1297–1300PubMedCrossRef Ahmed A (2002) Use of angiotensin-converting enzyme inhibitors in patients with heart failure and renal insufficiency: how concerned should we be by the rise in serum creatinine? J Am Geriatr Soc 50:1297–1300PubMedCrossRef
3.
go back to reference Akcan-Arikan A, Zappitelli M, Loftis L, Washburn K, Jefferson L, Goldstein S (2007) Modified RIFLE criteria in critically ill children with acute kidney injury. Kidney Int 71:1028–1035PubMedCrossRef Akcan-Arikan A, Zappitelli M, Loftis L, Washburn K, Jefferson L, Goldstein S (2007) Modified RIFLE criteria in critically ill children with acute kidney injury. Kidney Int 71:1028–1035PubMedCrossRef
4.
go back to reference Bakris G, Weir M (2000) Angiotensin-converting enzyme inhibitor-associated elevations in serum creatinine: is this a cause for concern? Arch Intern Med 160:685–693PubMedCrossRef Bakris G, Weir M (2000) Angiotensin-converting enzyme inhibitor-associated elevations in serum creatinine: is this a cause for concern? Arch Intern Med 160:685–693PubMedCrossRef
5.
go back to reference Bellomo R, Ronco C, Kellum J, Mehta R, Palevsky P (2004) 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 Med 8:R204–R212 Bellomo R, Ronco C, Kellum J, Mehta R, Palevsky P (2004) 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 Med 8:R204–R212
6.
go back to reference Bellomo R, Auriemma S, Fabbri A et al (2008) The pathophysiology of cardiac surgery-associated acute kidney injury (CSA-AKI). Int J Artif Organs 31:166–178PubMed Bellomo R, Auriemma S, Fabbri A et al (2008) The pathophysiology of cardiac surgery-associated acute kidney injury (CSA-AKI). Int J Artif Organs 31:166–178PubMed
7.
go back to reference Benedetto U, Sciarretta S, Roscitano A, Fiorani B, Refice S, Angeloni E, Sinatra R (2008) Preoperative angiotension-converting enzyme inhibitors and acute kidney injury after coronary artery bypass grafting. Ann Thorac Surg 86:1160–1165PubMedCrossRef Benedetto U, Sciarretta S, Roscitano A, Fiorani B, Refice S, Angeloni E, Sinatra R (2008) Preoperative angiotension-converting enzyme inhibitors and acute kidney injury after coronary artery bypass grafting. Ann Thorac Surg 86:1160–1165PubMedCrossRef
8.
go back to reference Dent CL, Ma Q, Dastrala S et al (2007) Plasma neutrophil gelatinase-associated lipocalin predicts acute kidney injury, morbidity, and mortality after pediatric cardiac surgery: a prospective uncontrolled cohort study. Crit Care 11:R127PubMedCrossRef Dent CL, Ma Q, Dastrala S et al (2007) Plasma neutrophil gelatinase-associated lipocalin predicts acute kidney injury, morbidity, and mortality after pediatric cardiac surgery: a prospective uncontrolled cohort study. Crit Care 11:R127PubMedCrossRef
9.
go back to reference Dittrich S, Kurschat K, Dähnert I, Vogel M, Müller C, Alexi-Meskishvili V, Lange PE (2000) Renal function after cardiopulmonary bypass surgery in cyanotic congenital heart disease. Int J Cardiol 73:173–179PubMedCrossRef Dittrich S, Kurschat K, Dähnert I, Vogel M, Müller C, Alexi-Meskishvili V, Lange PE (2000) Renal function after cardiopulmonary bypass surgery in cyanotic congenital heart disease. Int J Cardiol 73:173–179PubMedCrossRef
10.
go back to reference Gantenbein MH, Bauersfeld U, Frey B, Neuhaus T, Sennhauser F, Bernet V (2008) Side effects of angiotensin-converting enzyme inhibitor (captopril) in newborns and young infants. J Perinat Med 36:448–452PubMedCrossRef Gantenbein MH, Bauersfeld U, Frey B, Neuhaus T, Sennhauser F, Bernet V (2008) Side effects of angiotensin-converting enzyme inhibitor (captopril) in newborns and young infants. J Perinat Med 36:448–452PubMedCrossRef
11.
go back to reference Hix JK, Thakar CV, Katz EM, Yared JP, Sabik J, Paganini EP (2006) Effect of off-pump coronary artery bypass graft surgery on postoperative acute kidney injury and mortality. Crit Care Med 34:2979–2983PubMed Hix JK, Thakar CV, Katz EM, Yared JP, Sabik J, Paganini EP (2006) Effect of off-pump coronary artery bypass graft surgery on postoperative acute kidney injury and mortality. Crit Care Med 34:2979–2983PubMed
12.
go back to reference Hoste EA, Clermont G, Kersten A et al (2006) RIFLE criteria for acute kidney injury are associated with hospital mortality in critically ill patients: a cohort analysis. Crit Care Med 10:R73 Hoste EA, Clermont G, Kersten A et al (2006) RIFLE criteria for acute kidney injury are associated with hospital mortality in critically ill patients: a cohort analysis. Crit Care Med 10:R73
13.
go back to reference Jo S, Rosner M, Okusa M (2007) Pharmacologic treatment of acute kidney injury: why drugs haven’t worked and what is on the horizon. Clin J Am Soc Nephrol 2:356–365PubMedCrossRef Jo S, Rosner M, Okusa M (2007) Pharmacologic treatment of acute kidney injury: why drugs haven’t worked and what is on the horizon. Clin J Am Soc Nephrol 2:356–365PubMedCrossRef
14.
go back to reference Kist-van Holthe tot Echten JE, Goedvolk C, Doornaar M et al (2001) Acute renal insufficiency and renal replacement therapy after pediatric cardiopulmonary bypass surgery. Pediatr Cardiol 22:321–326PubMed Kist-van Holthe tot Echten JE, Goedvolk C, Doornaar M et al (2001) Acute renal insufficiency and renal replacement therapy after pediatric cardiopulmonary bypass surgery. Pediatr Cardiol 22:321–326PubMed
15.
go back to reference Kleinknecht D, Pallot J (1998) Epidemiology and prognosis of acute renal insufficiency in 1997. Nephrologie 19:49–55PubMed Kleinknecht D, Pallot J (1998) Epidemiology and prognosis of acute renal insufficiency in 1997. Nephrologie 19:49–55PubMed
16.
go back to reference Kuitunen A, Vento A, Suojaranta-Ylinen R, Pettila V (2006) Acute renal failure after cardiac surgery: evaluation of the RIFLE classification. Ann Thorac Surg 81:542–546PubMedCrossRef Kuitunen A, Vento A, Suojaranta-Ylinen R, Pettila V (2006) Acute renal failure after cardiac surgery: evaluation of the RIFLE classification. Ann Thorac Surg 81:542–546PubMedCrossRef
17.
go back to reference Leversha A, Wilson N, Clarkson P, Calder A, Ramage M, Neutze J (1994) Efficacy and dosage of enalapril in congenital and acquired heart disease. Arch Dis Child 70:35–39PubMedCrossRef Leversha A, Wilson N, Clarkson P, Calder A, Ramage M, Neutze J (1994) Efficacy and dosage of enalapril in congenital and acquired heart disease. Arch Dis Child 70:35–39PubMedCrossRef
18.
go back to reference Mehta RH, Grab JD, O’Brien SM et al (2006) Bedside tool for predicting the risk of postoperative dialysis in patients undergoing cardiac surgery. Circulation 114:2208–2216PubMedCrossRef Mehta RH, Grab JD, O’Brien SM et al (2006) Bedside tool for predicting the risk of postoperative dialysis in patients undergoing cardiac surgery. Circulation 114:2208–2216PubMedCrossRef
19.
go back to reference Mishra J, Dent C, Tarabishi R et al (2005) Neutrophil gelatinase-associated lipocalin (NGAL) as a biomarker for acute renal injury after cardiac surgery. Lancet 365:1231–1238PubMedCrossRef Mishra J, Dent C, Tarabishi R et al (2005) Neutrophil gelatinase-associated lipocalin (NGAL) as a biomarker for acute renal injury after cardiac surgery. Lancet 365:1231–1238PubMedCrossRef
20.
go back to reference Nguyen M, Dent C, Ross G et al (2008) Urinary aprotinin as a predictor of acute kidney injury after cardiac surgery in children receiving aprotinin therapy. Pediatr Nephrol 23:1317–1326PubMedCrossRef Nguyen M, Dent C, Ross G et al (2008) Urinary aprotinin as a predictor of acute kidney injury after cardiac surgery in children receiving aprotinin therapy. Pediatr Nephrol 23:1317–1326PubMedCrossRef
21.
go back to reference Patzer L (2008) Nephrotoxicity as a cause of acute kidney injury in children. Pediatr Nephrol 23:2159–2173PubMedCrossRef Patzer L (2008) Nephrotoxicity as a cause of acute kidney injury in children. Pediatr Nephrol 23:2159–2173PubMedCrossRef
22.
go back to reference Price JF, Mott AR, Dickerson HA et al (2008) Worsening renal function in children hospitalized with decompensated heart failure: evidence for a pediatric cardiorenal syndrome? Pediatr Crit Care Med 9:279–284PubMedCrossRef Price JF, Mott AR, Dickerson HA et al (2008) Worsening renal function in children hospitalized with decompensated heart failure: evidence for a pediatric cardiorenal syndrome? Pediatr Crit Care Med 9:279–284PubMedCrossRef
23.
go back to reference Rasmussen H, Ibels L (1982) Acute renal failure: multivariate analysis of causes and risk factors. Am J Med 73:211–218PubMedCrossRef Rasmussen H, Ibels L (1982) Acute renal failure: multivariate analysis of causes and risk factors. Am J Med 73:211–218PubMedCrossRef
24.
go back to reference Rosner MH, Okusa MK (2006) Acute kidney injury associated with cardiac surgery. Clin J Am Soc Nephrol 1:19–32PubMedCrossRef Rosner MH, Okusa MK (2006) Acute kidney injury associated with cardiac surgery. Clin J Am Soc Nephrol 1:19–32PubMedCrossRef
25.
go back to reference Schneider J, Khemani R, Grushkin C, Bart R (2010) Serum creatinine as stratified in the RIFLE score for acute kidney injury is associated with mortality and length of stay for children in the pediatric intensive care unit. Crit Care Med 38:939–940 Schneider J, Khemani R, Grushkin C, Bart R (2010) Serum creatinine as stratified in the RIFLE score for acute kidney injury is associated with mortality and length of stay for children in the pediatric intensive care unit. Crit Care Med 38:939–940
26.
go back to reference Schwartz G, Haycock G, Edelman C, Spitzer A (1976) A simple estimate of glomerular filtration rate in children derived from body length and plasma creatinine. Pediatrics 58:259–263PubMed Schwartz G, Haycock G, Edelman C, Spitzer A (1976) A simple estimate of glomerular filtration rate in children derived from body length and plasma creatinine. Pediatrics 58:259–263PubMed
27.
go back to reference Schwartz G, Feld L, Langford D (1984) A simple estimate of glomerular filtration rate in full-term infants during the first year of life. J Pediatr 104:849–854PubMedCrossRef Schwartz G, Feld L, Langford D (1984) A simple estimate of glomerular filtration rate in full-term infants during the first year of life. J Pediatr 104:849–854PubMedCrossRef
28.
go back to reference Schwartz G, Brion L, Spitzer A (1987) The use of plasma creatinine concentration for estimating glomerular filtration rate in infants, children, and adolescents. Pediatr Clin North Am 34:571–590PubMed Schwartz G, Brion L, Spitzer A (1987) The use of plasma creatinine concentration for estimating glomerular filtration rate in infants, children, and adolescents. Pediatr Clin North Am 34:571–590PubMed
29.
go back to reference Skippen P, Krahan G (2005) Acute renal failure in children undergoing cardiopulmonary bypass. Crit Care Resusc 76:1443–1449 Skippen P, Krahan G (2005) Acute renal failure in children undergoing cardiopulmonary bypass. Crit Care Resusc 76:1443–1449
30.
go back to reference Smith G, Vaccarino V, Kosiborod M et al (2003) Worsening renal function: what is a clinically meaningful change in creatinine during hospitalization with heart failure? J Card Fail 9:13–25PubMedCrossRef Smith G, Vaccarino V, Kosiborod M et al (2003) Worsening renal function: what is a clinically meaningful change in creatinine during hospitalization with heart failure? J Card Fail 9:13–25PubMedCrossRef
31.
go back to reference Waikar SS, Liu KD, Chertow GM (2008) Diagnosis, epidemiology, and outcomes of acute kidney injury. Clin J Am Soc Nephrol 3:844–861PubMedCrossRef Waikar SS, Liu KD, Chertow GM (2008) Diagnosis, epidemiology, and outcomes of acute kidney injury. Clin J Am Soc Nephrol 3:844–861PubMedCrossRef
32.
go back to reference Zappitelli M, Bernier PL, Saczkowski RS, Tchervenkov CI, Gottesman R (2009) A small postoperative rise in serum creatinine predicts acute kidney injury in children undergoing cardiac surgery. Kidney Int 76(8):885–892PubMedCrossRef Zappitelli M, Bernier PL, Saczkowski RS, Tchervenkov CI, Gottesman R (2009) A small postoperative rise in serum creatinine predicts acute kidney injury in children undergoing cardiac surgery. Kidney Int 76(8):885–892PubMedCrossRef
Metadata
Title
Acute Kidney Injury After Cardiac Surgery in Infants and Children: Evaluation of the Role of Angiotensin-Converting Enzyme Inhibitors
Authors
Christina M. Phelps
Jennifer Eshelman
Eduardo Da Cruz
Zhaoxing Pan
Jon Kaufman
Publication date
01-01-2012
Publisher
Springer-Verlag
Published in
Pediatric Cardiology / Issue 1/2012
Print ISSN: 0172-0643
Electronic ISSN: 1432-1971
DOI
https://doi.org/10.1007/s00246-011-0046-1

Other articles of this Issue 1/2012

Pediatric Cardiology 1/2012 Go to the issue

From Other Journals

From Other Journals