Effects of various anesthesia maintenance on serum levels of selenium, copper, zinc, iron and antioxidant capacity
Efeitos da manutenção de várias anestesias sobre os níveis séricos de selênio, cobre, zinco e ferro e a capacidade antioxidante
Mehmet Akin; Hilal Ayoglu; Dilek Okyay; Ferruh Ayoglu; Abdullah Gür; Murat Can; Serhan Yurtlu; Volkan Hanci; Gamze Küçükosman; Isil Turan
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Köksal GM, Sayilgan C, Aydin S. The effects of sevoflurane and desflurane on lipid peroxidation during laparoscopic cholecystectomy. Eur J Anaesthesiol.. ;21:217-220.
Halliwell B, Borish E, Pryor WA. Oxygen radicals and human disease. Ann Intern Med.. ;107:526-545.
Bostankolu E, Ayoglu H, Yurtlu S. Dexmedetomidine did not reduce the effects of tourniquet-induced ischemia-reperfusion injury during general anesthesia. Kaohsiung J Med Sci.. ;29:75-81.
McCord JM. The evolution of free radicals and oxidative stress. Am J Med.. ;108:652-659.
Rock CL, Jacob RA, Bowen PE. Update on the biological characteristics of the antioxidant micronutrients: vitamin C, vitamin E, and the carotenoids. J Am Diet Assoc.. ;96:693-702.
Sies H, Stahl W, Sundquist AR. Antioxidant functions of vitamins Vitamins E and C, beta-carotene, and other carotenoids. Ann N Y Acad Sci.. ;669:20-7.
Mathru M, Dries DJ, Barnes L. Tourniquet-induced exsanguination in patients requiring lower limb surgery. An ischemia-reperfusion model of oxidant and antioxidant metabolism. Anesthesiology.. ;84:14-22.
Friendl HP, Till GO, Trentz O. Role of oxygen radicals in tourniquet-related ischemia-reperfusion injury of human patients. Klin Wochenschr.. ;69:1112-1109.
Saricaoğlu F, Dal D, Salman AE. Effects of lowdose n-acetyl-cysteine infusion on tourniquet-induced ischaemia-reperfusion injury in arthroscopic knee surgery. Acta Anaesthesiol Scand.. ;49:847-851.
Orban JC, Levraut J, Gindre S. Effects of acetylcysteine and ischaemic preconditioning on muscular function and postoperative pain after orthopaedic surgery using a pneumatic tourniquet. Eur J Anaesthesiol.. ;23:1025-1030.
Allaouchiche B, Debon R, Goudable J. Oxidative stress status during exposure to propofol, sevoflurane and desflurane. Anesth Analg.. ;93:981-985.
Sivaci R, Kahraman A, Serteser M. Cytotoxic effects of volatile anesthetics with free radicals undergoing laparascopic surgery. Clin Biochem.. ;39:293-298.
Durak I, Ozturk HS, Dikmen B. Isoflurane impairs antioxidant defence system in guinea pig kidney. Can J Anaesth.. ;46:797-802.
Kotani N, Takahashi S, Sesler DI. Volatile anesthetics augment expression of proinflammatory cytokines in rat alveolar macrophages during mechanical ventilation. Anesthesiology.. ;91:197-187.
Kotani N, Hashimoto H, Sesler DI. Expression of genes for proinflammatory cytokines in alveolar macrophages during propofol and isoflurane anesthesia. Anesth Analg.. ;89:1256-1250.
Aarts L, Van Der Hee R, Dekker I. The widely used anesthetic agent propofol can replace alpha-tocopherol as an antioxidant. FEBS Lett.. ;357:83-85.
De La Cruz JP, Sedeño G, Carmona JA. In vitro effects of propofol on tissular oxidative stress in the rat. Anesth Analg.. ;87:1141-1146.
De La Cruz JP, Villalobos MA, Sedeño G. Effect of propofol on oxidative stress in an in vitro model of anoxia-reoxygenation in the rat brain. Brain Res.. ;800:144-136.
Yağmurdur H, Cakan T, Bayrak A. The effects of etomidate, thiopental, and propofol in induction on hypoperfusion-reperfusion phenomenon during laparoscopic cholecystectomy. Acta Anaesthesiol Scand.. ;48:777-772.
Türkan H, Bukan N, Sayal A. Effects of halothane, enflurane, and isoflurane on plasma and erythrocyte antioxidant enzymes and trace elements. Biol Trace Elem Res.. ;102:112-105.
Türkan H, Aydin A, Sayal A. Effect of volatile anesthetics on oxidative stress due to occupational exposure. World J Surg.. ;29:542-540.
Saricaoğlu F, Dal D, Salman AE. Ketamin sedation during spinal anesthesia for arthroscopic knee surgery reduced the ischemia-reperfusion injury markers. Anesth Analg.. ;101:909-904.
Turan R, Yagmurdur H, Kavutcu M. Propofol and tourniquet induced ischemia reperfusion injury inn lower extremity operations. Eur J Anaesthesiol.. ;24:189-185.
Kahraman S, Kilinç K, Dal D. Propofol attenuates formation of lipid peroxides in tourniquet-induced ischemia-reperfusion injury. Br J Anaesth.. ;78:281-279.
Wronska-Nofe´ r T, Nofer JR, Jajte J. Oxidative DNA damage and oxidative stress in subjects occupationally exposed to nitrous oxide (N2O). Mutat Res.. ;731:63-58.
Kato R, Foex P. Myocardial protection by anesthetic agents against ischemia-reperfusion injury. An update for anesthesiologists. Can J Anaesth.. ;49:777-791.
Zaugg M, Lucchinetti E, Uecker M. Anaesthetics and cardiac preconditioning. Part I. Signalling and cytoprotective mechanisms. Br J Anaesth.. ;91:551-565.
de Ruijter W, Muster RJ, Boer C. The cardioprotective effects of sevoflurane depends on protein kinase C activation, opening of mitochondrial K + (ATP) channels, and the production of reactive oxygen species. Anesth Analg.. ;97:1370-1376.
Heindle B, Reichle FM, Zahler S. Sevoflurane and isoflurane protect the reperfused guinea pig heart by reducing postischemic adhesion of polymorphonuclear neutrophils. Anaesthesiology.. ;91:521-530.
Izdes S, Sepici-Dincel A, Gozdemir M. The effect of general and regional anaesthesia on ischemia-reperfusion injury. Anaesth Intensive Care.. ;35:451-452.
De La Cruz JP, Zanca A, Carmona JA. The effect of propofol on oxidative stress in platelets from surgical patients. Anesth Analg.. ;89:1050-1055.
Tsuchiya M, Asada A, Kasahara E. Antioxidant protection of propofol and its recycling in erythrocyte membranes. Am J Respir Crit Care Med.. ;165:60-54.
Basu S, Mutschler DK, Larsson AO. Propofol (DiprivanEDTA) counteracts oxidative injury and deterioratian of the arterial oxygen tension during experimental septic shock. Resuscitation.. ;50:348-341.
Murphy PG, Myers DS, Davies MJ. The antioxidant potential of propofol (2,6-diisopropylphenol). Br J Anaesth.. ;68:613-618.
Eriksson O, Pollesello P, Saris NE. Inhibition of lipid peroxidation in isolated rat liver mitochondria by the general anesthetic propofol. Biochem Pharmacol.. ;44:393-391.
Halliwell B. Reactive oxygen species in living system: source, biochemistry and role in human disease. Am J Med.. ;91:14-22.
Aldemir O, C¸elebi H, Cevik C. The effects of propofol or halothane on free radical production after tourniquet induced ischemia-reperfusion injury during knee arthroplasty. Acta Anaesthesiol Scand.. ;45:1225-1221.
Arnaoutoglou H, Vretzakis G, Souliolis D. The effects of propofol or sevoflurane on free radical production after tourniquet induced ischemia-reperfusion injury during knee arthroplasty. Acta Anaesthesiol Belg.. ;58:3-6.
Türkan H, Aydin A, Sayal A. Effect of sevoflurane and desflurane on markers of oxidative status in erythrocyte. Toxicol Ind Health.. ;27:181-186.
Sedlic F, Pravdic D, Ljubkovic M. Differences in production of reactive oxygen species and mitochondrial uncoupling as events in the preconditioning signaling cascade between desflurane and sevoflurane. Anesth Analg.. ;109:405-411.
Türkan H, Aydin A, Sayal A. Oxidative and antioxidative effects of desflurane and sevoflurane on rat tissue in vivo. Arh Hig Rada Toxicol.. ;62:119-113.
Ceylan BG, Naziroğlu M, Uğuz AC. Effects of vitamin C and E combination on element and oxidative stress levels in the blood of operative patients under desflurane anesthesia. Biol Trace Elem Res.. ;141:25-16.
Peng FC, Tang SH, Huang MC. Oxidative status in patients with alcohol dependence: a clinical study in Taiwan. J Toxicol Environ Health A.. ;68:1509-1497.
Clot P, Tabone M, Arico S. Monitoring oxidative damage in patients with liver cirrhosis and different daily alcohol intake. Gut.. ;35:1643-1637.
Cuzzocrea S, Riley DP, Caputi AP. Antioxidant therapy: a new pharmacological approach in shock, inflammation, and ischemia/reperfusion injury. Pharmacol Rev.. ;53:159-135.
Wardle SP, Drury J, Garr R. Effect of blood transfusion on lipid peroxidation in preterm infants. Arch Dis Child Fetal Neonatal Ed.. ;86:46-48.
Hirano K, Morinobu T, Kim H. Blood transfusion increases free radical promoting non-transferrin bound iron in preterm infants. Arch Dis Child.. ;84:188-193.
Mateos F, Brock JH, Perez-Artellano JL. Iron metabolism in the lower respiratory tract. Thorax.. ;53:600-574.
Nadiger HA, Mathew CA, Sadasivudu B. Serum malondialdehyde (TBA reactive substance) levels in cigarette smokers. Atherosclerosis.. ;64:73-71.
Holben DH, Smith AM. The diverse role of selenium within selenoproteins; a review. J Am Diet Assoc.. ;99:843-836.
Berggren M, Mangin J, Gasdaka J. Effect of selenium deficiency on rat thioredoxin reductase activity. Biochem Pharmacol.. ;57:187-193.
Kaymak C, Kadioglu E, Basar H. Genoprotective role of vitamin E and selenium in rabbits anaesthetized with sevoflurane. Hum Exp Toxicol.. ;23:419-413.
Halliwell B, Gutteridge JM. Oxygen toxicity, oxygen radicals, transition metals and disease. Biochem J.. ;219:1-14.
Salonen JT, Salonen R, Korpela H. Serum copper and the risk of acute myocardial infarction: a prospective study in men in eastern Finland. Am J Epidemiol.. ;134:268-276.
Khaled S, Brun JF, Micallel JP. Serum zinc and blood rheology in sportsmen. Clin Hemorheol Microcirc.. ;17:47-58.
Mocchegiani E, Malavolta M, Muti E. Zinc, metallothioneins and longevity: interrelationships with niacin and selenium. Curr Pharm Des.. ;14:2719-2732.
Richardson J, Thomas KA, Rubin BH. Crystal structure of bovine Cu, Zn superoxide dismutase at 3 A resolution: chain tracing and metal ligands. Proc Natl Acad Sci USA.. ;72:1353-1349.
Broun A, Dugdill S, Wyatt M. Serum total antioxidant status during vascular surgery. Biochem Soc Trans.. ;26:127.
Lases EC, Duurkens VA, Gerritsen WB. Oxidative stress after lung resection therapy. Chest.. ;117:1003-999.
Ma EL, Jiang ZM. Ion-exchange chromatography in simultaneous determination of serum, copper and zinc levels in patients with cancer of digestive tract. Chim Med J (Engl).. ;106:121-118.
Beard JL, Dawson H, Pinero DJ. Iron metabolism: a comprehensive review. Nutr Rev.. ;54:295-317.
Aslan M, Horoz M, C¸elik H. Evaluation of oxidative status in iron deficiency anemia through total antioxidant capacity measured using an automated method. Turk J Hematol.. ;28:46-42.