Fontan-associated liver disease: pathophysiology, investigations, predictors of severity and management.


Journal

European journal of gastroenterology & hepatology
ISSN: 1473-5687
Titre abrégé: Eur J Gastroenterol Hepatol
Pays: England
ID NLM: 9000874

Informations de publication

Date de publication:
08 2020
Historique:
pubmed: 19 12 2019
medline: 29 7 2021
entrez: 19 12 2019
Statut: ppublish

Résumé

Cardiac hepatopathy is the liver injury resulting from congestion and ischaemia associated with acute or chronic heart failure. The improved longevity of adults with operated congenital heart disease who develop heart failure as an increasingly late event makes this form of liver injury increasingly clinically relevant. Patients with congenital heart disease with a single ventricle anomaly, who require creation of a Fontan circulation, are particularly vulnerable as they have elevated venous filling pressures with chronic liver congestion. Progression to liver fibrosis and eventually cirrhosis may occur, with its associated risks of liver failure and hepatocellular carcinoma. This risk likely increases over the patient's lifetime, related to the duration post-surgical repair and reflects the chronicity of congestion. Liver biopsy is rarely performed due to a higher risk of complications in the setting of elevated venous pressures, and the frequent use of anticoagulation. Non-invasive methods of liver assessment are poorly validated and different factors require consideration compared to other chronic liver diseases. This review discusses the current understanding of cardiac hepatopathy in congenital heart disease patients with a Fontan circulation. This entity has recently been called Fontan Associated Liver Disease in the literature, with the term useful in recognising that the pathophysiology is incompletely understood, and that long-standing venous pressure elevation and hypoxaemia are presumed to play an additional significant role in the pathogenesis of the liver injury.

Identifiants

pubmed: 31851099
doi: 10.1097/MEG.0000000000001641
pii: 00042737-202008000-00002
doi:

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

907-915

Références

Diller GP, Kempny A, Alonso-Gonzalez R, Swan L, Uebing A, Li W, et al. Survival prospects and circumstances of death in contemporary adult congenital heart disease patients under follow-up at a large tertiary centre. Circulation. 2015; 132:2118–2125
Rychik J, Veldtman G, Rand E, Russo P, Rome JJ, Krok K, et al. The precarious state of the liver after a Fontan operation: summary of a multidisciplinary symposium. Pediatr Cardiol. 2012; 33:1001–1012
Greenway SC, Crossland DS, Hudson M, Martin SR, Myers RP, Prieur T, et al. Fontan-associated liver disease: implications for heart transplantation. J Heart Lung Transplant. 2016; 35:26–33
Møller S, Bernardi M. Interactions of the heart and the liver. Eur Heart J. 2013; 34:2804–2811
Weisberg IS, Jacobson IM. Cardiovascular diseases and the liver. Clin Liver Dis. 2011; 15:1–20
Moons P, Bovijn L, Budts W, Belmans A, Gewillig M. Temporal trends in survival to adulthood among patients born with congenital heart disease from 1970 to 1992 in belgium. Circulation. 2010; 122:2264–2272
Budts W, Roos-Hesselink J, Rädle-Hurst T, Eicken A, McDonagh TA, Lambrinou E, et al. Treatment of heart failure in adult congenital heart disease: a position paper of the working group of grown-up congenital heart disease and the heart failure association of the European Society of Cardiology. Eur Heart J. 2016; 37:1419–1427
Kendall TJ, Stedman B, Hacking N, Haw M, Vettukattill JJ, Salmon AP, et al. Hepatic fibrosis and cirrhosis in the Fontan circulation: a detailed morphological study. J Clin Pathol. 2008; 61:504–508
Schwartz MC, Sullivan LM, Glatz AC, Rand E, Russo P, Goldberg DJ, et al. Portal and sinusoidal fibrosis are common on liver biopsy after Fontan surgery. Pediatr Cardiol. 2013; 34:135–142
Kiesewetter CH, Sheron N, Vettukattill JJ, Hacking N, Stedman B, Millward-Sadler H, et al. Hepatic changes in the failing Fontan circulation. Heart. 2007; 93:579–584
Johnson JA, Cetta F, Graham RP, Smyrk TC, Driscoll DJ, Phillips SD, John AS. Identifying predictors of hepatic disease in patients after the Fontan operation: a postmortem analysis. J Thorac Cardiovasc Surg. 2013; 146:140–145
Schwartz MC, Sullivan L, Cohen MS, Russo P, John AS, Guo R, et al. Hepatic pathology may develop before the Fontan operation in children with functional single ventricle: an autopsy study. J Thorac Cardiovasc Surg. 2012; 143:904–909
Ghaferi AA, Hutchins GM. Progression of liver pathology in patients undergoing the Fontan procedure: chronic passive congestion, cardiac cirrhosis, hepatic adenoma, and hepatocellular carcinoma. J Thorac Cardiovasc Surg. 2005; 129:1348–1352
Elder RW, McCabe NM, Hebson C, Veledar E, Romero R, Ford RM, et al. Features of portal hypertension are associated with major adverse events in Fontan patients: the VAST study. Int J Cardiol. 2013; 168:3764–3769
Kaulitz R, Haber P, Sturm E, Schäfer J, Hofbeck M. Serial evaluation of hepatic function profile after Fontan operation. Herz. 2014; 39:98–104
Pundi K, Pundi KN, Kamath PS, Cetta F, Li Z, Poterucha JT, et al. Liver disease in patients after the Fontan operation. Am J Cardiol. 2016; 117:456–460
Baek JS, Bae EJ, Ko JS, Kim GB, Kwon BS, Lee SY, et al. Late hepatic complications after Fontan operation; non-invasive markers of hepatic fibrosis and risk factors. Heart. 2010; 96:1750–1755
Serai SD, Wallihan DB, Venkatesh SK, Ehman RL, Campbell KM, Sticka J, et al. Magnetic resonance elastography of the liver in patients status-post Fontan procedure: feasibility and preliminary results. Congenit Heart Dis. 2014; 9:7–14
Wallihan DB, Podberesky DJ. Hepatic pathology after Fontan palliation: spectrum of imaging findings. Pediatr Radiol. 2013; 43:330–338
Saliba T, Dorkhom S, O’Reilly EM, Ludwig E, Gansukh B, Abou-Alfa GK. Hepatocellular carcinoma in two patients with cardiac cirrhosis. Eur J Gastroenterol Hepatol. 2010; 22:889–891
Asrani SK, Warnes CA, Kamath PS. Hepatocellular carcinoma after the Fontan procedure. N Engl J Med. 2013; 368:1756–1757
Wang A, Book WM, McConnell M, Lyle T, Rodby K, Mahle WT. Prevalence of hepatitis C infection in adult patients who underwent congenital heart surgery prior to screening in 1992. Am J Cardiol. 2007; 100:1307–1309
ANZ Fontan Registry MCRI, Royal Children’s Hospital. Australian and New Zealand Fontan Registry: Report 2015. 2016
d’Udekem Y, Iyengar AJ, Cochrane AD, Grigg LE, Ramsay JM, Wheaton GR, et al. The Fontan procedure: contemporary techniques have improved long-term outcomes. Circulation. 2007; 116:I157–I164
Asrani SK, Asrani NS, Freese DK, Phillips SD, Warnes CA, Heimbach J, Kamath PS. Congenital heart disease and the liver. Hepatology. 2012; 56:1160–1169
Agnoletti G, Ferraro G, Bordese R, Marini D, Gala S, Bergamasco L, et al. Fontan circulation causes early, severe liver damage. Should we offer patients a tailored strategy? Int J Cardiol. 2016; 209:60–65
Camposilvan S, Milanesi O, Stellin G, Pettenazzo A, Zancan L, D’Antiga L. Liver and cardiac function in the long term after Fontan operation. Ann Thorac Surg. 2008; 86:177–182
Wu FM, Kogon B, Earing MG, Aboulhosn JA, Broberg CS, John AS, et al.; Alliance for Adult Research in Congenital Cardiology (AARCC) Investigators. Liver health in adults with Fontan circulation: a multicenter cross-sectional study. J Thorac Cardiovasc Surg. 2017; 153:656–664
Nandwana SB, Olaiya B, Cox K, Sahu A, Mittal P. Abdominal imaging surveillance in adult patients after Fontan procedure: risk of chronic liver disease and hepatocellular carcinoma. Curr Probl Diagn Radiol. 2018; 47:19–22
Wilson TG, d’Udekem Y, Winlaw DS, Cordina RL, Celermajer DS, Wheaton GR, et al.; Australian and New Zealand Fontan Registry. Hepatic and renal end-organ damage in the Fontan circulation: a report from the australian and new zealand Fontan registry. Int J Cardiol. 2018; 273:100–107
Myers RP, Cerini R, Sayegh R, Moreau R, Degott C, Lebrec D, Lee SS. Cardiac hepatopathy: clinical, hemodynamic, and histologic characteristics and correlations. Hepatology. 2003; 37:393–400
Fabián J, Horák J, Hlavácová R, Vosmík J. Portal haemodynamics in subjects without signs of liver disease. Cor Vasa. 1984; 26:200–209
Simonetto DA, Yang HY, Yin M, de Assuncao TM, Kwon JH, Hilscher M, et al. Chronic passive venous congestion drives hepatic fibrogenesis via sinusoidal thrombosis and mechanical forces. Hepatology. 2015; 61:648–659
Henrion J. Hypoxic hepatitis. Liver Int. 2012; 32:1039–1052
Megalla S, Holtzman D, Aronow WS, Nazari R, Korenfeld S, Schwarcz A, et al. Predictors of cardiac hepatopathy in patients with right heart failure. Med Sci Monit. 2011; 17:CR537–CR541
Seeto RK, Fenn B, Rockey DC. Ischemic hepatitis: clinical presentation and pathogenesis. Am J Med. 2000; 109:109–113
Lightsey JM, Rockey DC. Current concepts in ischemic hepatitis. Curr Opin Gastroenterol. 2017; 33:158–163
Munsterman ID, Duijnhouwer AL, Kendall TJ, Bronkhorst CM, Ronot M, van Wettere M, et al.; Nijmegen Fontan Initiative. The clinical spectrum of Fontan -associated liver disease: results from a prospective multimodality screening cohort. Eur Heart J. 2019; 40:1057–1068
Wu FM, Ukomadu C, Odze RD, Valente AM, Mayer JE Jr, Earing MG. Liver disease in the patient with Fontan circulation. Congenit Heart Dis. 2011; 6:190–201
Ford RM, Book W, Spivey JR. Liver disease related to the heart. Transplant Rev (Orlando). 2015; 29:33–37
Sheer TA, Joo E, Runyon BA. Usefulness of serum N-terminal-probnp in distinguishing ascites due to cirrhosis from ascites due to heart failure. J Clin Gastroenterol. 2010; 44:e23–e26
Josephus Jitta D, Wagenaar LJ, Mulder BJ, Guichelaar M, Bouman D, van Melle JP. Three cases of hepatocellular carcinoma in Fontan patients: review of the literature and suggestions for hepatic screening. Int J Cardiol. 2016; 206:21–26
Egbe AC, Poterucha JT, Warnes CA, Connolly HM, Baskar S, Ginde S, et al. Hepatocellular carcinoma after Fontan operation. Circulation. 2018; 138:746–748
Kwon S, Scovel L, Yeh M, Dorsey D, Dembo G, Krieger EV, et al. Surgical management of hepatocellular carcinoma after Fontan procedure. J Gastrointest Oncol. 2015; 6:E55–E60
Dorsey D, Kwon S, Krieger E, Yeung RS, Natrajan K, Dembo G. Conflicting hemodynamic goals in an adult patient with Fontan physiology presenting for resection of a hepatocellular carcinoma. J Cardiothorac Vasc Anesth. 2016; 30:452–454
Yamada K, Shinmoto H, Kawamura Y, Wakamatsu H, Kawauchi T, Soga S, et al. Transarterial embolization for pediatric hepatocellular carcinoma with cardiac cirrhosis. Pediatr Int. 2015; 57:766–770
Elder RW, Parekh S, Book WM. More on hepatocellular carcinoma after the Fontan procedure. N Engl J Med. 2013; 369:490
Bae JM, Jeon TY, Kim JS, Kim S, Hwang SM, Yoo SY, Kim JH. Fontan-associated liver disease: spectrum of US findings. Eur J Radiol. 2016; 85:850–856
Horvat N, Rocha MS, Chagas AL, Oliveira BC, Pacheco MP, Binotto MA, et al. Multimodality screening of hepatic nodules in patients with congenital heart disease after Fontan procedure: role of ultrasound, ARFI elastography, CT, and MRI. AJR Am J Roentgenol. 2018; 211:1212–1220
Bryant T, Ahmad Z, Millward-Sadler H, Burney K, Stedman B, Kendall T, et al. Arterialised hepatic nodules in the Fontan circulation: hepatico-cardiac interactions. Int J Cardiol. 2011; 151:268–272
Kim TH, Yang HK, Jang HJ, Yoo SJ, Khalili K, Kim TK. Abdominal imaging findings in adult patients with Fontan circulation. Insights Imaging. 2018; 9:357–367
Shimamatsu K, Wanless IR. Role of ischemia in causing apoptosis, atrophy, and nodular hyperplasia in human liver. Hepatology. 1997; 26:343–350
Wells ML, Fenstad ER, Poterucha JT, Hough DM, Young PM, Araoz PA, et al. Imaging findings of congestive hepatopathy. Radiographics. 2016; 36:1024–1037
Wells ML, Hough DM, Fidler JL, Kamath PS, Poterucha JT, Venkatesh SK. Benign nodules in post-Fontan livers can show imaging features considered diagnostic for hepatocellular carcinoma. Abdom Radiol (NY). 2017; 42:2623–2631
Babaoglu K, Binnetoglu FK, Aydoğan A, Altun G, Gürbüz Y, Inan N, Corapçioğlu F. Hepatic adenomatosis in a 7-year-old child treated earlier with a Fontan procedure. Pediatr Cardiol. 2010; 31:861–864
Lindsay I, Johnson J, Everitt MD, Hoffman J, Yetman AT. Impact of liver disease after the Fontan operation. Am J Cardiol. 2015; 115:249–252
Guha IN, Bokhandi S, Ahmad Z, Sheron N, Cope R, Marshall C, Veldtman G. Structural and functional uncoupling of liver performance in the Fontan circulation. Int J Cardiol. 2013; 164:77–81
Ofei SY, Gariepy C, Hanje J, Sisk T, Daniels CJ, Zaidi AN. Liver fibrosis in adults with Fontan palliation: do common screening studies predict disease severity? Int J Cardiol. 2015; 181:174–175
Meadows J, Jenkins K. Protein-losing enteropathy: integrating a new disease paradigm into recommendations for prevention and treatment. Cardiol Young. 2011; 21:363–377
Rychik J, Goldberg D, Rand E, Semeao E, Russo P, Dori Y, Dodds K. End-organ consequences of the Fontan operation: liver fibrosis, protein-losing enteropathy and plastic bronchitis. Cardiol Young. 2013; 23:831–840
Goldberg DJ, Surrey LF, Glatz AC, Dodds K, O’Byrne ML, Lin HC, et al. Hepatic fibrosis is universal following Fontan operation, and severity is associated with time from surgery: a Liver Biopsy and Hemodynamic Study. J Am Heart Assoc. 2017; 6:e004809
Srinivasan A, Guzman AK, Rand EB, Rychik J, Goldberg DJ, Russo PA, Cahill AM. Percutaneous liver biopsy in Fontan patients. Pediatr Radiol. 2019; 49:342–350
Evans WN, Winn BJ, Yumiaco NS, Galindo A, Rothman A, Acherman RJ, Restrepo H. Transvenous hepatic biopsy in stable Fontan patients undergoing cardiac catheterization. Pediatr Cardiol. 2014; 35:1273–1278
Surrey LF, Russo P, Rychik J, Goldberg DJ, Dodds K, O’Byrne ML, et al. Prevalence and characterization of fibrosis in surveillance liver biopsies of patients with Fontan circulation. Hum Pathol. 2016; 57:106–115
Evans WN, Acherman RJ, Reardon LC, Galindo A, Rothman A, Ciccolo ML, et al. An observation from liver biopsies two decades post-Fontan. Pediatr Cardiol. 2016; 37:1119–1122
Heuman DM, Mihas AA, Habib A, Gilles HS, Stravitz RT, Sanyal AJ, Fisher RA. MELD-XI: a rational approach to “sickest first” liver transplantation in cirrhotic patients requiring anticoagulant therapy. Liver Transpl. 2007; 13:30–37
Evans WN, Acherman RJ, Ciccolo ML, Carrillo SA, Galindo A, Rothman A, et al. MELD-XI scores correlate with post-Fontan hepatic biopsy fibrosis scores. Pediatr Cardiol. 2016; 37:1274–1277
Lemmer A, VanWagner LB, Ganger D. Assessment of advanced liver fibrosis and the risk for hepatic decompensation in patients with congestive hepatopathy. Hepatology. 2018; 68:1633–1641
Furukawa T, Akimoto K, Ohtsuki M, Sato K, Suzuki M, Takahashi K, et al. Non-invasive assessment of liver fibrosis in patients after the Fontan operation. Pediatr Int. 2011; 53:980–984
Ginde S, Hohenwalter MD, Foley WD, Sowinski J, Bartz PJ, Venkatapuram S, et al. Noninvasive assessment of liver fibrosis in adult patients following the Fontan procedure. Congenit Heart Dis. 2012; 7:235–242
Wu FM, Earing MG, Aboulhosn JA, Johncilla ME, Singh MN, Odze RD, et al.; Alliance for Adult Research in Congenital Cardiology (AARCC) Investigators. Predictive value of biomarkers of hepatic fibrosis in adult Fontan patients. J Heart Lung Transplant. 2017; 36:211–219
Fidai A, Dallaire F, Alvarez N, Balon Y, Clegg R, Connelly M, et al. Non-invasive investigations for the diagnosis of Fontan-associated liver disease in pediatric and adult Fontan patients. Front Cardiovasc Med. 2017; 4:15
Friedrich-Rust M, Koch C, Rentzsch A, Sarrazin C, Schwarz P, Herrmann E, et al. Noninvasive assessment of liver fibrosis in patients with Fontan circulation using transient elastography and biochemical fibrosis markers. J Thorac Cardiovasc Surg. 2008; 135:560–567
Wu FM, Opotowsky AR, Raza R, Harney S, Ukomadu C, Landzberg MJ, et al. Transient elastography may identify Fontan patients with unfavorable hemodynamics and advanced hepatic fibrosis. Congenit Heart Dis. 2014; 9:438–447
Schachter JL, Patel M, Horton SR, Mike Devane A, Ewing A, Abrams GA. Fibrosure and elastography poorly predict the severity of liver fibrosis in Fontan-associated liver disease. Congenit Heart Dis. 2018; 13:764–770
Shimizu M, Miyamoto K, Nishihara Y, Izumi G, Sakai S, Inai K, et al. Risk factors and serological markers of liver cirrhosis after Fontan procedure. Heart Vessels. 2016; 31:1514–1521
Sugimoto M, Oka H, Kajihama A, Nakau K, Kuwata S, Kurishima C, Azuma H. Non-invasive assessment of liver fibrosis by magnetic resonance elastography in patients with congenital heart disease undergoing the Fontan procedure and intracardiac repair. J Cardiol. 2016; 68:202–208
Chen B, Schreiber RA, Human DG, Potts JE, Guttman OR. Assessment of liver stiffness in pediatric Fontan patients using transient elastography. Can J Gastroenterol Hepatol. 2016; 2016:7125193
Yoo BW, Choi JY, Eun LY, Park HK, Park YH, Kim SU. Congestive hepatopathy after Fontan operation and related factors assessed by transient elastography. J Thorac Cardiovasc Surg. 2014; 148:1498–1505
Millonig G, Friedrich S, Adolf S, Fonouni H, Golriz M, Mehrabi A, et al. Liver stiffness is directly influenced by central venous pressure. J Hepatol. 2010; 52:206–210
Danta M, Kumarasinghe G, Stuart S, Victor A, Amin J, Hayward C, et al. Clinical Practice. Liver elastography in cardiac disease (LECD) study. J Gastroenterol Hepatol. 2010; 25Suppl. 3A24–A25
Melero-Ferrer JL, Osa-Sáez A, Buendía-Fuentes F, Ballesta-Cuñat A, Flors L, Rodríguez-Serrano M, et al. Fontan circulation in adult patients: acoustic radiation force impulse elastography as a useful tool for liver assessment. World J Pediatr Congenit Heart Surg. 2014; 5:365–371
DiPaola FW, Schumacher KR, Goldberg CS, Friedland-Little J, Parameswaran A, Dillman JR. Effect of Fontan operation on liver stiffness in children with single ventricle physiology. Eur Radiol. 2017; 27:2434–2442
Kutty SS, Peng Q, Danford DA, Fletcher SE, Perry D, Talmon GA, et al.; Liver Adult-Pediatric-Congenital-Heart-Disease Dysfunction Study (LADS) Group. Increased hepatic stiffness as consequence of high hepatic afterload in the Fontan circulation: a vascular doppler and elastography study. Hepatology. 2014; 59:251–260
Lee Yj, Lee JM, Lee JE, Lee KB, Lee ES, Yoon JH, et al. MR elastography for noninvasive assessment of hepatic fibrosis: reproducibility of the examination and reproducibility and repeatability of the liver stiffness value measurement. J Magn Reson Imaging. 2014; 39:326–331
Poterucha JT, Johnson JN, Qureshi MY, O’Leary PW, Kamath PS, Lennon RJ, et al. Magnetic resonance elastography: A novel technique for the detection of hepatic fibrosis and hepatocellular carcinoma after the Fontan operation. Mayo Clin Proc. 2015; 90:882–894
Wallihan DB, Podberesky DJ, Marino BS, Sticka JS, Serai S. Relationship of MR elastography determined liver stiffness with cardiac function after Fontan palliation. J Magn Reson Imaging. 2014; 40:1328–1335
Egbe A, Miranda WR, Connolly HM, Khan AR, Al-Otaibi M, Venkatesh SK, et al. Temporal changes in liver stiffness after Fontan operation: results of serial magnetic resonance elastography. Int J Cardiol. 2018; 258:299–304
Baumgartner H, Bonhoeffer P, De Groot NM, de Haan F, Deanfield JE, Galie N, et al.; Task Force on the Management of Grown-up Congenital Heart Disease of the European Society of Cardiology (ESC); Association for European Paediatric Cardiology (AEPC); ESC Committee for Practice Guidelines (CPG). ESC guidelines for the management of grown-up congenital heart disease (new version 2010). Eur Heart J. 2010; 31:2915–2957
Warnes CA, Williams RG, Bashore TM, Child JS, Connolly HM, Dearani JA, et al. ACC/AHA 2008 guidelines for the management of adults with congenital heart disease: a report of the American College of Cardiology / American Heart Association task force on practice guidelines (writing committee to develop guidelines on the management of adults with congenital heart disease). Circulation. 2008; 118:e714–e833
Rychik J, Atz AM, Celermajer DS, Deal BJ, Gatzoulis MA, Gewillig MH, et al. Evaluation and management of the child and adult with Fontan circulation: a scientific statement from the American Heart Association. Circulation. 2019; 140:CIR0000000000000696
Daniels CJ, Bradley EA, Landzberg MJ, Aboulhosn J, Beekman RH 3rd, Book W, et al. Fontan-associated liver disease: proceedings from the American College of Cardiology stakeholders meeting, october 1 to 2, 2015, washington DC. J Am Coll Cardiol. 2017; 70:3173–3194
Zentner D, Celermajer DS, Gentles TL, d’Udekem Y, Ayer J, Blue GM, et al. Management of people with a Fontan circulation: a cardiac society of Australia and New Zealand position statement. Heart, Lung and Circulation (accepted for publication. 2019
Rathgeber SL, Harris KC. Fontan-associated liver disease: evidence for early surveillance of liver health in pediatric Fontan patients. Can J Cardiol. 2019; 35:217–220
Wannhoff A, Hippchen T, Weiss CS, Friedrich K, Rupp C, Neumann-Haefelin C, et al. Cardiac volume overload and pulmonary hypertension in long-term follow-up of patients with a transjugular intrahepatic portosystemic shunt. Aliment Pharmacol Ther. 2016; 43:955–965
Boyer TD, Haskal ZJ; American Association for the Study of Liver Diseases. The role of transjugular intrahepatic portosystemic shunt (TIPS) in the management of portal hypertension: update 2009. Hepatology. 2010; 51:306
Copelan A, Kapoor B, Sands M. Transjugular intrahepatic portosystemic shunt: indications, contraindications, and patient work-up. Semin Intervent Radiol. 2014; 31:235–242
European Association for the Study of the L. EASL clinical practice guidelines on the management of ascites, spontaneous bacterial peritonitis, and hepatorenal syndrome in cirrhosis. J hepatol. 2010; 53:397–417
Rössle M. TIPS: 25 years later. J Hepatol. 2013; 59:1081–1093
Hilscher MB, Johnson JN, Cetta F, Driscoll DJ, Poterucha JJ, Sanchez W, et al. Surveillance for liver complications after the Fontan procedure. Congenit Heart Dis. 2017; 12:124–132
D’Souza TF, Samuel BP, Hillman ND, Vettukattil JJ, Haw MP. Biventricular repair of pulmonary atresia after Fontan palliation. Ann Thorac Surg. 2016; 101:1574–1576
Cannon RM, Hughes MG, Jones CM, Eng M, Marvin MR. A review of the united states experience with combined heart-liver transplantation. Transpl Int. 2012; 25:1223–1228
Department of Health and Human Services HRaSA, Healthcare Systems Bureau, Division of Transplantation, United Network for Organ Sharing, University Renal Research and Education Association. U.S. Organ Procurement and Transplantation Network and the Scientific Registry of Transplant Recipients. 2018; 18, Richmond, Virginia, USA: American Journal of Transplantation. Special Issue: OPTN/SRTR Annual Data Report 2016, pages 1-503
Simpson KE, Esmaeeli A, Khanna G, White F, Turnmelle Y, Eghtesady P, et al. Liver cirrhosis in Fontan patients does not affect 1-year post-heart transplant mortality or markers of liver function. J Heart Lung Transplant. 2014; 33:170–177
Crespo-Leiro MG, Robles O, Paniagua MJ, Marzoa R, Naya C, Flores X, et al. Reversal of cardiac cirrhosis following orthotopic heart transplantation. Am J Transplant. 2008; 8:1336–1339
Bouchardy J, Meyer P, Yerly P, Blanche C, Hullin R, Giostra E, et al. Regression of advanced liver fibrosis after heart transplantation in a patient with prior Fontan surgery for complex congenital heart disease. Circ Heart Fail. 2018; 11:e003754
Mazzarelli C, Cannon MD, Hudson M, Heaton N, Sarker D, Kane P, et al. Hepatocellular carcinoma as a complication of vascular disease of the liver after Fontan procedure. Hepatology. 2019; 69:911–913
Angelico R, Lisignoli V, Monti L, Pariante R, Grimaldi C, Saffioti MC, et al. Laparoscopic liver resection for hepatocellular carcinoma in Fontan-associated chronic liver disease. The first case report. Int J Surg Case Rep. 2019; 59:144–147
Martínez-Quintana E, Monescillo A, Rodríguez-González F. Hepatocellular carcinoma in a non-failing Fontan circulation. Rev Esp Enferm Dig. 2017; 109:375
Oh C, Youn JK, Han JW, Kim GB, Kim HY, Jung SE. Hepatocellular carcinoma after the Fontan procedure in a 16-year-old girl: a case report. Medicine (Baltimore). 2016; 95:e4823
Conroy MR, Moe TG. Hepatocellular carcinoma in the adult Fontan patient. Cardiol Young. 2017; 27:407–409
Takuma Y, Fukada Y, Iwadou S, Miyatake H, Uematsu S, Okamoto R, et al. Surgical resection for hepatocellular carcinoma with cardiac cirrhosis after the Fontan procedure. Intern Med. 2016; 55:3265–3272
Rajoriya N, Clift P, Thorne S, Hirschfield GM, Ferguson JW. A liver mass post- Fontan operation. Qjm. 2014; 107:571–572
Izumi Y, Hiramatsu N, Itose I, Inoue T, Sasagawa A, Egawa S, et al. Juvenile hepatocellular carcinoma with congestive liver cirrhosis. J Gastroenterol. 2005; 40:204–208

Auteurs

Charlotte Y Keung (CY)

Departments of Gastroenterology and Hepatology, Royal Melbourne Hospital.
Department of Gastroenterology, Eastern Health.

Dominica Zentner (D)

Department of Cardiology, Royal Melbourne Hospital.
Department of Medicine, The University of Melbourne.

Robert N Gibson (RN)

Department of Medicine, The University of Melbourne.
Department of Radiology, Royal Melbourne Hospital, Victoria, Australia.

Dang-Khoa H Phan (DH)

Department of Cardiology, Royal Melbourne Hospital.

Leeanne E Grigg (LE)

Department of Cardiology, Royal Melbourne Hospital.

Siddharth Sood (S)

Departments of Gastroenterology and Hepatology, Royal Melbourne Hospital.
Department of Medicine, The University of Melbourne.

Amanda J Nicoll (AJ)

Departments of Gastroenterology and Hepatology, Royal Melbourne Hospital.
Department of Gastroenterology, Eastern Health.

Articles similaires

[Redispensing of expensive oral anticancer medicines: a practical application].

Lisanne N van Merendonk, Kübra Akgöl, Bastiaan Nuijen
1.00
Humans Antineoplastic Agents Administration, Oral Drug Costs Counterfeit Drugs

Smoking Cessation and Incident Cardiovascular Disease.

Jun Hwan Cho, Seung Yong Shin, Hoseob Kim et al.
1.00
Humans Male Smoking Cessation Cardiovascular Diseases Female
Humans United States Aged Cross-Sectional Studies Medicare Part C
1.00
Humans Yoga Low Back Pain Female Male

Classifications MeSH