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Chapter 17 - Acute Kidney Injury in Pregnancy

Causes not Due to Preeclampsia

from Section 6 - Acute Kidney Injury

Published online by Cambridge University Press:  19 May 2018

Kate Bramham
Affiliation:
King’s College Hospital, London
Matt Hall
Affiliation:
Nottingham University Hospitals
Catherine Nelson-Piercy
Affiliation:
Guys's & St Thomas's NHS Foundation Trust, London
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Publisher: Cambridge University Press
Print publication year: 2018

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References

Murugan, R, Kellum, JA Acute kidney injury: What’s the prognosis? Nature reviews. Nephrology 2011; 7:4: 209217.CrossRefGoogle ScholarPubMed
Bellomo, R, Ronco, C, Kellum, JA, et al. 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. Critical care (London, England) 2004; 8:4: R204R212.Google Scholar
Levin, A, Warnock, DG, Mehta, RL, et al. Improving outcomes from acute kidney injury: Report of an initiative. American journal of kidney diseases: The official journal of the National Kidney Foundation 2007; 50:1: 14.CrossRefGoogle ScholarPubMed
Girling, JC Re-evaluation of plasma creatinine concentration in normal pregnancy. Journal of obstetrics and gynaecology: The journal of the Institute of Obstetrics and Gynaecology 2000; 20:2: 128131.Google Scholar
Bayliss, D, Davison, JM Pregnancy and renal disease. In Comprehensive clinical nephrology., ed. Jurgen, F, Johnson, RJ, Feehally, J 2014. 5th edn., Elsevier, New York. 498505.Google Scholar
Brown, MA, Mangos, GJ, Peek, M, Plaat, F Renal disease In De Swiet’s medical disorders in obstetric practice. ed. Powrie, R, Greene, MF, Camann, W 2010. 5th edn., Chichester: Blackwell, 182209.Google Scholar
Millache, A, Ateka, O, Palma Reis, I, et al. Acute kidney injury in pregnancy: Experience from a large tertiary care referral centre. American Society of Nephrology, San Diego, CA, USA. Oct 30–Nov 4, 2012.Google Scholar
American College of Obstetricians and Gynecologists & Task Force on Hypertension in Pregnancy. Hypertension in pregnancy. Report of the American College of Obstetricians and Gynecologists’ Task Force on Hypertension in Pregnancy Obstetrics and gynecology 2013; 122:5: 11221131.Google Scholar
Acharya, A, Santos, J, Linde, B, et al. Acute kidney injury in pregnancy-current status. Advances in chronic kidney disease 2013; 20:3: 215222.Google Scholar
Beaman, M, Turney, JH, Rodger, RS, et al. Changing pattern of acute renal failure. The quarterly journal of medicine 1987; 62:237: 1523.Google ScholarPubMed
Stratta, P, Besso, L, Canavese, C, et al. Is pregnancy-related acute renal failure a disappearing clinical entity? Renal failure 1996; 18:4: 575584.Google Scholar
Prakash, J, Niwas, SS, Parekh, A, et al. Acute kidney injury in late pregnancy in developing countries. Renal failure 2010; 32:3: 309313.CrossRefGoogle ScholarPubMed
Sivakumar, V, Sivaramakrishna, G, Sainaresh, VV, et al. Pregnancy-related acute renal failure: A ten-year experience. Saudi journal of kidney diseases and transplantation: An official publication of the Saudi Center for Organ Transplantation, Saudi Arabia 2011; 22:2: 352353.Google ScholarPubMed
Gurrieri, C, Garovic, VD, Gullo, A, et al. Kidney injury during pregnancy: Associated comorbid conditions and outcomes. Archives of gynecology and obstetrics 2012; 286:3: 567573.CrossRefGoogle ScholarPubMed
Mehrabadi, A, Liu, S, Bartholomew, S, Hutcheon, JA, et al. Hypertensive disorders of pregnancy and the recent increase in obstetric acute renal failure in Canada: Population based retrospective cohort study. BMJ (Clinical research ed.) 2014; 349: 4731.Google Scholar
Palma-Reis, I, Vais, A, Nelson-Piercy, C, et al. Renal disease and hypertension in pregnancy. Clin Med (Lond). 2013; Feb;13(1):5762.Google Scholar
Dashe, JS, Ramin, SM, Cunningham, FG The long-term consequences of thrombotic microangiopathy (thrombotic thrombocytopenic purpura and hemolytic uremic syndrome) in pregnancy. Obstetrics and gynecology 1998; 91:5:P1: 662668.Google Scholar
Sibai, BM. Imitators of severe preeclampsia. Obstetrics and gynecology 2007; 109:4: 956966.CrossRefGoogle ScholarPubMed
Martin, JN Jr, Bailey, AP, Rehberg, JF et al. Thrombotic thrombocytopenic purpura in 166 pregnancies: 1955–2006. American journal of obstetrics and gynecology 2008; 199:2: 98104.CrossRefGoogle ScholarPubMed
Ganesan, C, Maynard, SE Acute kidney injury in pregnancy: The thrombotic microangiopathies. Journal of nephrology 2011; 24:5: 554563.CrossRefGoogle ScholarPubMed
Scully, M, Yarranton, H, Liesner, R, et al. Regional UK TTP registry: Correlation with laboratory ADAMTS 13 analysis and clinical features. British journal of haematology 2008; 142 5: 819826.CrossRefGoogle ScholarPubMed
Fujimura, Y, Matsumoto, M, Kokame, K, et al. Pregnancy-induced thrombocytopenia and TTP, and the risk of fetal death, in Upshaw-Schulman syndrome: A series of 15 pregnancies in 9 genotyped patients. British journal of haematology 2009; 144:5: 742754.CrossRefGoogle ScholarPubMed
Scully, M, Hunt, BJ, Benjamin, S, Liesner, R, et al. Guidelines on the diagnosis and management of thrombotic thrombocytopenic purpura and other thrombotic microangiopathies. British journal of haematology 2012; 58:3: 323335.Google Scholar
Hyrich, KL, Verstappen, SM Biologic therapies and pregnancy: The story so far. Rheumatology (Oxford, England) 2014; 53:8: 13771385.CrossRefGoogle ScholarPubMed
Vesely, SK, Li, X, McMinn, JR, et al. Pregnancy outcomes after recovery from thrombotic thrombocytopenic purpura-hemolytic uremic syndrome. Transfusion 2004; 44: 11491158.Google Scholar
Fakhouri, F, Roumenina, L, Provot, F, et al. Pregnancy-associated hemolytic uremic syndrome revisited in the era of complement gene mutations. Journal of the American Society of Nephrology: JASN 2010; 21:5: 859867.Google Scholar
De Sousa Amorim, E, Blasco, M, Quintana, L, Sole, M, de Cordoba, SR, Campistol, JM Eculizumab in pregnancy-associated atypical hemolytic uremic syndrome: insights for optimizing management. Journal of nephrology 2015; Feb 25: [Epub ahead of print].Google Scholar
Cervera, R, Serrano, R, Pons-Estel, GJ, et al. Morbidity and mortality in the antiphospholipid syndrome during a 10-year period: A multicentre prospective study of 1000 patients. Annals of the rheumatic diseases 2015; 74:6: 10111018.Google Scholar
Hanouna, G, Morel, N, Le Thi Huong, D, et al. Catastrophic antiphospholipid syndrome and pregnancy: An experience of 13 cases. Rheumatology (Oxford, England) 2013; 52:9: 16351641.CrossRefGoogle ScholarPubMed
Kronbichler, A, Frank, R, Kirschfink, M, Szilagyi, A, Csuka, D, Prohaszka, Z, Schratzberger, P, Lhotta, K, Mayer, G Efficacy of eculizumab in a patient with immunoadsorption-dependent catastrophic antiphospholipid syndrome: A case report. Medicine 2014; 93:26: pp. e143.Google Scholar
Knight, M, Nelson-Piercy, C, Kurinczuk, JJ, et al. A prospective national study of acute fatty liver of pregnancy in the UK. Gut 2008; 57:7: 951956.Google Scholar
Wilcken, B, Leung, LC, Hammond, J, et al. Pregnancy and fetal long-chain 3-hydroxyacyl coenzyme A dehydrogenase deficiency. Lancet 1993; 341:8842: 407408.Google Scholar
Ch’ng, CL, Morgan, M, Hainsworth, I, et al. Prospective study of liver dysfunction in pregnancy in Southwest Wales. Gut 2002; 51:6: 876880.CrossRefGoogle ScholarPubMed
Acosta, CD, Kurinczuk, JJ, Lucas, DN, et al. Severe maternal sepsis in the UK, 2011–2012: A national case-control study. PLoS medicine 2014; 11:7: e1001672.CrossRefGoogle ScholarPubMed
Matuszkiewicz-Rowinska, J, Malyszko, J, Wieliczko, M Urinary tract infections in pregnancy: Old and new unresolved diagnostic and therapeutic problems. Archives of medical science: AMS 2015; 11:1: 6777.Google Scholar
Jolley, JA, Wing, DA Pyelonephritis in pregnancy: An update on treatment options for optimal outcomes. Drugs 2010; 70:13: 16431655.Google Scholar
Dotters-Katz, SK, Heine, RP, Grotegut, CA Medical and infectious complications associated with pyelonephritis among pregnant women at delivery. Infectious diseases in obstetrics and gynecology 2013; 124102:6.Google Scholar
Chugh, KS, Singhal, PC, Sharma, BK, et al. Acute renal failure of obstetric origin. Obstetrics and gynecology 1976; 48:6: 642646.Google Scholar
Iglesias, MH, Giesbrecht, EM, von Dadelszen, P, et al. Postpartum hyperkalemia associated with magnesium sulfate. Hypertension in pregnancy 2011; 30:4: 481484.Google Scholar
Andrade, R., McGwin, G Jr, Alarcon, GS, et al. Predictors of post-partum damage accrual in systemic lupus erythematosus: Data from LUMINA, a multiethnic US cohort (XXXVIII). Rheumatology (Oxford, England) 2006; 45:11: 13801384.Google Scholar
Jena, M, Mitch, WE Rapidly reversible acute renal failure from ureteral obstruction in pregnancy. American journal of kidney diseases: The official journal of the National Kidney Foundation 1996; 28:3: 457460.CrossRefGoogle ScholarPubMed
Brandes, JC, Fritsche, C Obstructive acute renal failure by a gravid uterus: A case report and review. American journal of kidney diseases: The official journal of the National Kidney Foundation 1991; 18:3: 398401.Google Scholar
Yossepowitch, O, Baniel, J, Livne, PM Urological injuries during cesarean section: Intraoperative diagnosis and management. The journal of urology 2004; 172:1: 196199.CrossRefGoogle ScholarPubMed
London Acute Kidney Injury Network. 2016. Obstetric AKI. Available at: http://londonaki.net/downloads/LondonAKInetwork-obstetric.pdf. (Accessed 8 February 2018).Google Scholar
Tsui, A, Rajani, C, Doshi, R, et al. Improving recognition and management of acute kidney injury. Acute medicine 2013; 13:3: 108112.CrossRefGoogle Scholar

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