REFERENCES

1. Landoni G, Fochi O, Torri G. Cardiac protection by volatile anaesthetics: a review. Curr Vasc Pharmacol 2008;6:108-11.

2. Murry CE, Jennings RB, Reimer KA. Preconditioning with ischemia: a delay of lethal cell injury in ischemic myocardium. Circulation 1986;74:1124-36.

3. Warltier DC, al-Wathiqui MH, Kampine JP, Schmeling WT. Recovery of contractile function of stunned myocardium in chronically instrumented dogs is enhanced by halothane or isoflurane. Anesthesiology 1988;69:552-65.

4. Cason BA, Gamperl AK, Slocum RE, Hickey RF. Anesthetic-induced preconditioning: previous administration of isoflurane decreases myocardial infarct size in rabbits. Anesthesiology 1997;87:1182-90.

5. Chiari P, Bouvet F, Piriou V. Anaesthetic-induced myocardial preconditioning: fundamental basis and clinical implications. Ann Fr Anesth Reanim 2005;24:383-96. (in French)

6. Varadarajan SG, An J, Novalija E, Stowe DF. Sevoflurane before or after ischemia improves contractile and metabolic function while reducing myoplasmic Ca(2+) loading in intact hearts. Anesthesiology 2002;96:125-33.

7. Ross S, Foëx P. Protective effects of anaesthetics in reversible and irreversible ischaemia-reperfusion injury. Br J Anaesth 1999;82:622-32.

8. Toller WG, Kersten JR, Pagel PS, Hettrick DA, Warltier DC. Sevoflurane reduces myocardial infarct size and decreases the time threshold for ischemic preconditioning in dogs. Anesthesiology 1999;91:1437-46.

9. Preckel B, Schlack W, Comfère T, Obal D, Barthel H, et al. Effects of enflurane, isoflurane, sevoflurane and desflurane on reperfusion injury after regional myocardial ischaemia in the rabbit heart in vivo. Br J Anaesth 1998;81:905-12.

10. Landoni G, Augoustides JG, Guarracino F, Santini F, Ponschab M, et al. Mortality reduction in cardiac anesthesia and intensive care: results of the first International Consensus Conference. Acta Anaesthesiol Scand 2011;55:259-66.

11. Muntean DM, Ordodi V, Ferrera R, Angoulvant D. Volatile anaesthetics and cardioprotection: lessons from animal studies. Fundam Clin Pharmacol 2013;27:21-34.

12. Riess ML, Kevin LG, Camara AK, Heisner JS, Stowe DF. Dual exposure to sevoflurane improves anesthetic preconditioning in intact hearts. Anesthesiology 2004;100:569-74.

13. Ludwig LM, Patel HH, Gross GJ, Kersten JR, Pagel PS, et al. Morphine enhances pharmacological preconditioning by isoflurane: role of mitochondrial K(ATP) channels and opioid receptors. Anesthesiology 2003;98:705-11.

14. Kato R, Foëx P. Myocardial protection by anesthetic agents against ischemia-reperfusion injury: an update for anesthesiologists. Can J Anesth 2002;49:777-91.

15. Kehl F, Krolikowski JG, Mraovic B, Pagel PS, Warltier DC, et al. Is isoflurane-induced preconditioning dose related? Anesthesiology 2002;96:675-80.

16. Lange M, Redel A, Lotz C, Smul TM, Blomeyer C, et al. Desflurane-induced postconditioning is mediated by beta-adrenergic signalling: role of beta 1- and beta 2-adrenergic receptors, protein kinase A, and calcium/calmodulin-dependent protein kinase II. Anesthesiology 2009;110:516-28.

17. Halestrap AP, Clarke SJ, Javadov S. Mitochondrial permeability transition pore opening during myocardial reperfusion--a target for cardioprotection. Cardiovasc Res 2004;61:372-85.

18. Di Lisa F, Menabò R, Canton M, Barile M, Bernardi P. Opening of the mitochondrial permeability transition pore causes depletion of mitochondrial and cytosolic NAD+ and is a causative event in the death of myocytes in postischemic reperfusion of the heart. J Biol Chem 2001;276:2571-5.

19. Landoni G, Lopez-Delgado JC, Sartini C, Tamà S, Zangrillo A. Halogenated agents and cardiovascular surgery: has mortality really decreased? Curr Vasc Pharmacol 2018;16:336-43.

20. Garcia-Dorado D, Rodriguez-Sinovas A, Ruiz-Meana M, Inserte J, Agulló L, et al. The end-effectors of preconditioning protection against myocardial cell death secondary to ischemia reperfusion. Cardiovasc Res 2006;70:274-85.

21. Novalija E, Varadarajan SG, Camara AK, An J, Chen Q, et al. Anesthetic preconditioning: triggering role of reactive oxygen and nitrogen species in isolated hearts. Am J Physiol Heart Circ Physiol 2002;283:H44-52.

22. Zweier JL, Talukder MA. The role of oxidants and free radicals in reperfusion injury. Cardiovasc Res 2006;70:181-90.

23. Heindl B, Becker BF, Zahler S, Conzen PF. Volatile anaesthetics reduce adhesion of blood platelets under low-flow conditions in the coronary system of isolated guinea pig hearts. Acta Anaesthesiol Scand 1998;42:995-1003.

24. Das DK, Maulik N. Cardiac genomic response following preconditioning stimulus. Cardiovasc Res 2006;70:254-63.

25. Heusch G, Schulz R. Remote preconditioning. J Mol Cell Cardiol 2002;34:1279-81.

26. Hartman JC, Pagel PS, Proctor LT, Kampine JP, Schmeling WT, et al. Influence of desflurane, isoflurane and halothane on regional tissue perfusion in dogs. Can J Anaesth 1992;39:877-87.

27. Fortis S, Spieth PM, Lu WY, Parotto M, Haitsma JJ, et al. Effects of anesthetic regimes on inflammatory responses in a rat model of acute lung injury. Intensive Care Med 2012;38:1548-55.

28. Schilling T, Kozian A, Senturk M, Huth C, Reinhold A, et al. Effects of volatile and intravenous anesthesia on the alveolar and systemic inflammatory response in thoracic surgical patients. Anesthesiology 2011;115:65-74.

29. Yang Q, Dong H, Deng J, Wang Q, Ye R, et al. Sevoflurane preconditioning induces neuroprotection through reactive oxygen species-mediated up-regulation of antioxidant enzymes in rats. Anesth Analg 2011;112:931-7.

30. Beck-Schimmer B, Breitenstein S, Bonvini JM, Lesurtel M, Ganter M, et al. Protection of pharmacological postconditioning in liver surgery: results of a prospective randomized controlled trial. Ann Surg 2012;256:837-44.

31. Lee HT, Kim M, Kim J, Kim N, Emala CW. TGF-beta1 release by volatile anesthetics mediates protection against renal proximal tubule cell necrosis. Am J Nephrol 2007;27:416-24.

32. Landoni G, Biondi-Zoccai GG, Zangrillo A, Bignami E, D’Avolio S, et al. Desflurane and sevoflurane in cardiac surgery: a meta-analysis of randomized clinical trials. J Cardiothorac Vasc Anesth 2007;21:502-11.

33. Pasin L, Landoni G, Cabrini L, Borghi G, Taddeo D, et al. Propofol and survival: a meta-analysis of randomized clinical trials. Acta Anaesthesiol Scand 2015;59:17-24.

34. Meybohm P, Bein B, Brosteanu O, Cremer J, Gruenewald M, et al. A multicenter trial of remote ischemic preconditioning for heart surgery. N Engl J Med 2015;373:1397-407.

35. Landoni G, Baiardo Redaelli M, Votta CD. Remote ischemic preconditioning and cardiac surgery. N Engl J Med 2016;374:489.

36. Jakobsen CJ, Berg H, Hindsholm KB, Faddy N, Sloth E. The influence of propofol versus sevoflurane anesthesia on outcome in 10,535 cardiac surgical procedures. J Cardiothorac Vasc Anesth 2007;21:664-71.

37. Uhlig C, Bluth T, Schwarz K, Deckert S, Heinrich L, et al. Effects of volatile anesthetics on mortality and postoperative pulmonary and other complications in patients undergoing surgery: a systematic review and meta-analysis. Anesthesiology 2016;124:1230-45.

38. Zangrillo A, Musu M, Greco T, Di Prima AL, Matteazzi A, et al. Additive effect on survival of anaesthetic cardiac protection and remote ischemic preconditioning in cardiac surgery: a bayesian network meta-analysis of randomized trials. PLoS One 2015;10:e0134264.

39. Zhou C, Liu Y, Yao Y, Zhou S, Fang N, et al. β-blockers and volatile anesthetics may attenuate cardioprotection by remote preconditioning in adult cardiac surgery: a meta-analysis of 15 randomized trials. J Cardiothorac Vasc Anesth 2013;27:305-11.

40. Yang L, Wang G, Du Y, Ji B, Zheng Z. Remote ischemic preconditioning reduces cardiac troponin I release in cardiac surgery: a meta-analysis. J Cardiothorac Vasc Anesth 2014;28:682-9.

41. Thielmann M, Kottenberg E, Kleinbongard P, Wendt D, Gedik N, et al. Cardioprotective and prognostic effects of remote ischaemic preconditioning in patients undergoing coronary artery bypass surgery: a single-centre randomised, double-blind, controlled trial. Lancet 2013;382:597-604.

42. De Hert S, Vlasselaers D, Barbé R, Ory JP, Dekegel D, et al. A comparison of volatile and non volatile agents for cardioprotection during on-pump coronary surgery. Anaesthesia 2009;64:953-60.

43. Bignami E, Biondi-Zoccai G, Landoni G, Fochi O, Testa V, et al. Volatile anesthetics reduce mortality in cardiac surgery. J Cardiothorac Vasc Anesth 2009;23:594-9.

44. Landoni G, Greco T, Biondi-Zoccai G, Nigro Neto C, Febres D, et al. Anaesthetic drugs and survival: a Bayesian network meta-analysis of randomized trials in cardiac surgery. Br J Anaesth 2013;111:886-96.

45. Marik PE. Propofol: an immunomodulating agent. Pharmacotherapy 2005;25:28S-33S.

46. Meybohm P, Bein B, Brosteanu O, Cremer J, Gruenewald M, et al. A multicenter trial of remote ischemic preconditioning for heart surgery. N Engl J Med 2015;373:1397-407.

47. Cromheecke S, Pepermans V, Hendrickx E, Lorsomradee S, Ten Broecke PW, et al. Cardioprotective properties of sevoflurane in patients undergoing aortic valve replacement with cardiopulmonary bypass. Anesth Analg 2006;103:289-96.

48. Pinaud F, Corbeau JJ, Baufreton C, Binuani JP, De Brux JL, et al. Remote ischemic preconditioning in aortic valve surgery: results of a randomized controlled study. J Cardiol 2016;67:36-41.

49. De Hert SG, Turani F, Mathur S, Stowe DF. Cardioprotection with volatile anesthetics: mechanisms and clinical implications. Anesth Analg 2005;100:1584-93.

50. Goldfine H, Aurigemma GP, Zile MR, Gaasch WH. Left ventricular length-force-shortening relations before and after surgical correction of chronic mitral regurgitation. J Am Coll Cardiol 1998;31:180-5.

51. Çaparlar CÖ, Özhan MÖ, Süzer MA, Yazicioğlu D, Eşkin MB, et al. Fast-track anesthesia in patients undergoing outpatient laparoscopic cholecystectomy: comparison of sevoflurane with total intravenous anesthesia. J Clin Anesth 2017;37:25-30.

52. Jain A, Gombar S, Ahuja V. Recovery profile after general anaesthesia in paediatric ambulatory surgeries: desflurane versus propofol. Turk J Anaesthesiol Reanim 2018;46:21-7.

53. Liu TC, Lai HC, Lu CH, Huang YS, Hung NK, et al. Analysis of anesthesia-controlled operating room time after propofol-based total intravenous anesthesia compared with desflurane anesthesia in functional endoscopic sinus surgery. Medicine (Baltimore) 2018;97:e9805.

54. Landoni G, Pisano A, Lomivorotov V, Alvaro G, Hajjar L, et al. Randomized evidence for reduction of perioperative mortality: an updated consensus process. J Cardiothorac Vasc Anesth 2017;31:719-30.

Vessel Plus
ISSN 2574-1209 (Online)
Follow Us

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/