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Review. Perioperative Management of Lactic Acidosis in End-Stage Liver Disease Patient


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1. Kreisberg RA. Lactate Homeostasis and Lactic Acidosis, Ann. of Int. Med. 1980;92: 227-237.10.7326/0003-4819-92-2-227Search in Google Scholar

2. Gunnerson KJ1, Saul M, He S, Kellum JA. Lactate versus nonlactate metabolic acidosis: a retrospective outcome evaluation of critically ill patients Crit Care 2006; 10:R22.10.1186/cc3987Search in Google Scholar

3. Cohen RD, Woods HF. Clinical and biochemical aspects of lactic acidosis. Blackwell Scientific Publication, Oxford, 1976 pp.46-64.Search in Google Scholar

4. Kraut J., Madias N. Lactic Acidosis N Engl J Med. 2014 Dec 11;371:2309-19.10.1056/NEJMra1309483Search in Google Scholar

5. Jeppesen JB, Mortensen C, Bendtsen F, Møller S. Lactate metabolism in chronic liver disease. Scand J Clin Lab Invest Scand J Clin Lab Invest. 2013;73:293-9.10.3109/00365513.2013.773591Search in Google Scholar

6. Bakker J, Nijsten MW, Jansen TC. Clinical use of lactate monitoring in critically ill patients. Ann Intensive Care. 2013 May 10;3:12.10.1186/2110-5820-3-12Search in Google Scholar

7. Murphy ND, Kodakat SK, Wendon JA, et al. Liver and intestinal lactate metabolism in patients with acute hepatic failure undergoing liver transplantation. Crit Care Med 2001; 29: 2111-8.10.1097/00003246-200111000-00011Search in Google Scholar

8. Oster JR, Perez GO. Acid-base disturbances in liver disease. J Hepatol 1986; 2: 299-306.10.1016/S0168-8278(86)80089-7Search in Google Scholar

9. Walsh TS, Mclellan S, Mackenzie SJ, et al. Hyperlactatemia and pulmonary lactate production in patients with fulminant hepatic failure. Chest 1999; 116: 471-6.10.1378/chest.116.2.47110453878Search in Google Scholar

10. Bernardi M, Predieri S. Disturbances of acid-base balance in cirrhosis: a neglected issue warranting further insights. Liver Int 2005;25:463-6.10.1111/j.1478-3231.2005.01115.x15910480Search in Google Scholar

11. Funk G., Doberer D., Kneidinger N., et al. Acid-base disturbances in critically ill patients with cirrhosis. Liver International 2007 ISSN 1478-3223 p.901-909.10.1111/j.1478-3231.2007.01510.x17696928Search in Google Scholar

12. Fencl V, Leith D. Stewart’s quantitative acid-base chemistry: Applications in biology and medicine Resp. Physiol. 1993;91: 1-16.10.1016/0034-5687(93)90085-OSearch in Google Scholar

13. Fencl V, Jabor A, Kazda A, Figge J. Diagnosis of metabolic acidbase disturbances in critically ill patients. Am J Respir Crit Care Med 2000;162:2246-51.10.1164/ajrccm.162.6.990409911112147Search in Google Scholar

14. Orchard, C. H., Cingolani, H. E. Acidosis and arrhythmias in cardiac muscle. Cardiovasc. Res. 1994;28:1312-1319.Search in Google Scholar

15. Halperin, M L, Cheema-Dhadli S, Halperin FA. et al. Rationale for the use of sodium bicarbonate in a patient with lactic acidosis due to a poor cardiac output. Nephron 1994;66: 258-261.10.1159/0001878198190176Search in Google Scholar

16. Huang, Y. G., Wong, K. C., Yip, W. H., et al. Cardiovascular responses to graded doses of 3 catecholamines during lactic and hydrochloric acidosis in dogs. Br. J. Anaesth. 1995;74: 583-590.10.1093/bja/74.5.5837772436Search in Google Scholar

17. Ishizaka H, Kuo L. Acidosis-induced coronary arteriolar dilation is mediated by ATP-sensitive potassium channels in vascular smooth muscle. Circ Res. 1996;78:50-7.10.1161/01.RES.78.1.508603505Search in Google Scholar

18. Pedoto A, Caruso JE, Nandi J, et al. Acidosis stimulates nitric oxide production and lung damage in rats. Am J Respir Crit Care Med. 1999;159:397-402.10.1164/ajrccm.159.2.98020939927349Search in Google Scholar

19. Gelman SI, Disturbances in Hepatic Blood Flow During Anesthesia and Surgery. Arch Surgery, 1976;111:881-893.10.1001/archsurg.1976.01360260049012942299Search in Google Scholar

20. Shiokawa H, Akata T, Yoshino J, et al. Development of severe lactic acidosis during radio frequency ablation conducted for the treatment of hepatocellular carcinoma in a patient with liver cirrhosis; Masui. 2002;51:1263-7.Search in Google Scholar

21. Yi Zou Y, Liu J, Liao Y, et al., Temporary hyperlactataemia during partial hepatectomy: Report of two cases Int J Surg Case Rep. 2015;6:285-288.Search in Google Scholar

22. Pietsch U.C., Herrmann M.L., Uhlmann D., et al. Blood lactate and pyruvate levels in the perioperative period of liver resection with Pringle maneuver. Clin Hemorheol Microcirc. 2010;44:269-281.10.3233/CH-2010-127620571241Search in Google Scholar

23. Wiggans MG, Starkie T, Shahtahmassebi G,et al. Serum arterial lactate concentration predicts mortality and organ dysfunction following liver resection Periop. Medicine 2013;2:21-30.Search in Google Scholar

24. Luchette FA, Jenkins WA, Friend LA et al. Hypoxia is not the sole cause of lactate production during shock. J Trauma 2002;52:415-419.10.1097/00005373-200203000-0000111901313Search in Google Scholar

25. Uvizl R, Klementa B, Adamus M, et al. Biochemical changes in the patient’s plasma after red blood cell transfusion. Signa Vitae 2011;6:64-71.10.22514/SV62.102011.9Search in Google Scholar

26. Koller J, Wieser C, Furtwangler W, et al. Orthotopic liver transplantation and perioperative lactate metabolism. Transplant Proc. 1991;23:1989-90.Search in Google Scholar

27. Orii, R, SugawaraY; Hayashida M,et al; Peri-operative blood lactate levels in recipients of living-related liver transplantation Transpl. 2000;69:2124-2127.10.1097/00007890-200005270-00028Search in Google Scholar

28. Vitin A., Muczynski K, Bakthavatsalam R, et al. Treatment of severe lactic acidosis during the pre-anhepatic stage of liver transplant surgery with intraoperative hemodialysis. J of Clin Anesth. 2010;22:466-472.10.1016/j.jclinane.2009.07.013Search in Google Scholar

29. Wu CC, Yeung LK, Tsai WS, et al. Incidence and factors predictive of acute renal failure in patients with advanced liver cirrhosis. Clin Nephrol 2006;65:28-33.10.5414/CNP65028Search in Google Scholar

30. Yudkin J, Cohen RD: The contribution of the kidney to the removal of lactic acid load under normal and acidotic conditions Clin Sci Mol Med 1975;48:121-131.10.1042/cs0480121Search in Google Scholar

31. Gores GJ,. Fleishman KE,. Dawson TE, et al. Extracellular acidosis delays onset of cell death in ATP depleted hepatocytes Am. J. Physiol. 1988;255:C315-C322.10.1152/ajpcell.1988.255.3.C315Search in Google Scholar

32. Lemasters JJ, Nieminen AL, Qian T, Trost LC, et al. The mitochondrial permeability transition in cell death: a common mechanism in necrosis, apoptosis and autophagy. Biochim Biophys Acta. 1998;1366:177-96.10.1016/S0005-2728(98)00112-1Search in Google Scholar

33. Fukazawa K, Vitin AA, Pretto EA Jr. Serum acidosis prior to reperfusion facilitates hemodynamic recovery following liver transplantation. J Anesth. 2016;30:80-8.10.1007/s00540-015-2080-2Search in Google Scholar

34. Jun JH, Kim GS, Na YR, et al. Analysis of Predictors for Lactate Elimination After Reperfusion in Recipients of Living-Donor Liver Transplantation. Transpl. Proc. 2014;46:709-711.Search in Google Scholar

35. Jipa LN, Tomescu D, Droc G. The interrelation between arterial lactate levels and postoperative outcome following liver transplantation. Rom J of Anaesth Int Care 2014;21:106-112.Search in Google Scholar

36. Levy B, Perez P, Perny J, et al. Comparison of norepinephrinedobutamine to epinephrine for hemodynamics, lactate metabolism, and organ function variables in cardiogenic shock. Crit Care Med. 2011;39:450-5.10.1097/CCM.0b013e3181ffe0ebSearch in Google Scholar

37. Hargrove DM, Lang CH, Bagby GJ, Spitzer JJ Epinephrineinduced increase in glucose turnover is diminished during sepsis. Metabolism 1989;38:1070-1076.10.1016/0026-0495(89)90042-5Search in Google Scholar

38. Levy B., Mansart A., Bollaert PE,et al.. Effects of epinephrine and norepinephrine on hemodynamics, oxidative metabolism, and organ energetics in endotoxemic rats. Intensive Care Med 2003;29:292-300.10.1007/s00134-002-1611-012594589Search in Google Scholar

39. Gregory JS, Bonfiglio MF, Dasta JF, et al. Experience with phenylephrine as a component of the pharmacological support of septic shock. Crit Care Med 1991;19:1395-1400.10.1097/00003246-199111000-000161935160Search in Google Scholar

40. Pascoe PJ, Ilkiw JE, Pypendop BH. Effects of increasing infusion rates of dopamine, dobutamine, epinephrine, and phenylephrine in healthy anesthetized cats. Am J Vet Res. 2006;67:1491-9.10.2460/ajvr.67.9.149116948591Search in Google Scholar

41. Mandell MS, Katz JJ, Wachs M, et al. Circulatory pathophysiology and options in hemodynamic management during adult liver transplantation. Liver Transpl Surg 1997;3: 379-387.10.1002/lt.5000304119346767Search in Google Scholar

42. Vitin AA, Martay K, Vater Y, et al. Effects of Vasoactive Agents on Blood Loss and Transfusion Requirements During Pre- Reperfusion Stages of the Orthotopic Liver Transplantation. J Anesthe Clinic Res 2010;1:104-12.10.4172/2155-6148.1000104Search in Google Scholar

43. Zaky A, Pretto EA Jr, Earle SA, et al. Hemodynamic and metabolic efficacy of dopamine versus norepinephrine in a brain-dead swine model. Liver Transpl. 2008;14:1266-72.10.1002/lt.2153518756452Search in Google Scholar

44. Kimmoun A, Novy E, Auchet T, et al. Hemodynamic consequences of severe lactic acidosis in shock states: from bench to bedside Critical Care 2015;19:175-188.Search in Google Scholar

45. Levy B, Collin S, Sennoun N, et al. Vascular hyporesponsiveness to vasopressors in septic shock: from bench to bedside. Intensive Care Med. 2010;36:2019-29.10.1007/s00134-010-2045-820862451Search in Google Scholar

46. Jansen TC, van Bommel J, Schoonderbeek FJ, et al. Early lactateguided therapy in intensive care unit patients: a multicenter, open-label, randomized controlled trial. Am J Respir Crit Care Med. 2010;182:752-761.10.1164/rccm.200912-1918OC20463176Search in Google Scholar

47. D. S. Fraley, S. Adler, F. J. Bruns, et al, Stimulation of lactate production by administration of bicarbonate in a patient with a solid neoplasm and lactate acidosis The N Eng J of Med 1980;303:1100-1102.Search in Google Scholar

48. Kim H J, Son YK, An WS., Effect of sodium bicarbonate administration on mortality in patients with lactic acidosis: a retrospective analysis PLOS One. 2013;8:e65283.10.1371/journal.pone.0065283367392023755210Search in Google Scholar

49. Wilson R.F., Spencer A. R., Tyburski J. et al. Bicarbonate therapy in severely acidotic trauma patients increases mortality. J of Trauma and Acute Care Surgery2013;74:45-50.10.1097/TA.0b013e3182788fc423271076Search in Google Scholar

50. Cooper DJ, Walley KR, Wiggs BR, et al. Bicarbonate does not improve hemodynamics in critically ill patients who have lactic acidosis. A prospective, controlled clinical study. Ann Intern Med. 1990;112:492-8.10.7326/0003-4819-112-7-4922156475Search in Google Scholar

51. Fraley DS, Adler S, Bruns FJ, Zett B. Stimulation of lactate production by administration of bicarbonate in a patient with a solid neoplasm and lactic acidosis N Engl J Med. 1980;303:1100-2.Search in Google Scholar

52. Kraut JA., Madias NE. Lactic Acidosis: Current Treatments and Future Directions. Am J Kidney Dis. 2016;68:473-482.10.1053/j.ajkd.2016.04.02027291485Search in Google Scholar

53. Shangraw RE.,Winter R., Robinson ST., et al. Amelioration of Lactic Acidosis with Dichloroacetate during Liver Transplantation in Humans. Anesth 1994;81:1127-38.10.1097/00000542-199411000-000067978471Search in Google Scholar

54. Shangraw RE, Fisher DM. Pharmacokinetics and pharmacodynamics of dichloroacetate in patients with cirrhosis. Clin Pharmacol Ther 1999;66:380-390.10.1053/cp.1999.v66.a10134010546922Search in Google Scholar

55. Nahas GG1, Sutin KM, Fermon C, et al. Guidelines for the treatment of acidaemia with THAM. Drugs. 1998;55:191-224.10.2165/00003495-199855020-000039506241Search in Google Scholar

56. Hoste EA, Colpaert K, Vanholder RC, et al. Sodium bicarbonate versus THAM in ICU patients with mild metabolic acidosis. J Nephrol. 2005;18:303-307.Search in Google Scholar

57. Kraut J A, Madias NE. Treatment of acute metabolic acidosis: a pathophysiologic approach Nat. Rev. Nephrol 2012;8:589-601.Search in Google Scholar

58. Schotola H, Toischer K, Popov AF, et al. Mild metabolic acidosis impairs the beta-adrenergic response in isolated human failing myocardium. Crit Care. 2012;16:R153.10.1186/cc11468358074222889236Search in Google Scholar

59. Townsend DR, Bagshaw SM, Jacka MJ, et al. Intraoperative renal support during liver transplantation. Liver Transpl 2009;15:73-78.10.1002/lt.2165019109832Search in Google Scholar

60. Parmar A, Bigam D, Meeberg G, et al. An evaluation of intraoperative renal support during liver transplantation: a matched cohort study. Blood Purif 2011;32:238-248.10.1159/00032948521829016Search in Google Scholar

61. Hilton, P. J., Taylor, L. G., Forni, L. G, Treacher, D. F. Bicarbonatebased haemofiltration in the management of acute renal failure with lactic acidosis. Q. J. Med 1998;91:279-283.Search in Google Scholar

62. Schetz M. Non-renal indications for continuous renal replacement therapy. Kidney Int Suppl 1999;72:S88-S94.10.1046/j.1523-1755.56.s72.12.xSearch in Google Scholar

63. De Corte W, Vuylsteke S, De Waele JJ, et al. Severe lactic acidosis in critically ill patients with acute kidney injury treated with renal replacement therapy. J Crit Care. 2014;29: 650-655.10.1016/j.jcrc.2014.02.01924636927Search in Google Scholar

64. Luft FC. Lactic acidosis update for critical care clinicians. J Am Soc Nephrol 2001;12(Suppl 17): S15-S19.10.1681/ASN.V12suppl_1s15Search in Google Scholar

65. Levraut J, Ciebiera JP, Jambou P, et al. Effect of continuous venovenous hemofiltration with dialysis on lactate clearance in critically ill patients. Crit Care Med. 1997;25(1):58-6210.1097/00003246-199701000-000138989177Search in Google Scholar

66. Bellomo R., Bench-to-bedside review: Lactate and the kidney Crit Care. 2002;6:322-6.Search in Google Scholar

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