يعرض 1 - 2 نتائج من 2 نتيجة بحث عن '"Hypothermic machine perfusion"', وقت الاستعلام: 0.96s تنقيح النتائج
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    دورية أكاديمية

    المساهمون: In accordance with concluded Agreement N 2312-15/22 dated March 25, 2022 on the provision of a grant for the implementation of a Scientific and Practical Project in the field of medicine: “The application of various perfusion preservation protocols in kidney and liver transplantation", В соответствии с заключенным Соглашением № 2312-15/22 от «25» марта 2022 года о предоставлении гранта на реализацию научно-практического проекта в сфере медицины: «Применение различных протоколов перфузионной консервации при трансплантации почек и печени»

    المصدر: Transplantologiya. The Russian Journal of Transplantation; Том 15, № 4 (2023); 529-540 ; Трансплантология; Том 15, № 4 (2023); 529-540 ; 2542-0909 ; 2074-0506

    وصف الملف: application/pdf

    العلاقة: https://www.jtransplantologiya.ru/jour/article/view/830/824Test; Ceresa CDL, Nasralla D, Coussios CC, Friend PJ. The case for normothermic machine perfusion in liver transplantation. Liver Transpl. 2018;24(2):269-275. PMID: 29272051 https://doi.org/10.1002/lt.25000Test; Dutkowski P, Polak WG, Muiesan P, Schlegel A, Verhoeven CJ, Scalera I, et al. First comparison of hypothermic oxygenated perfusion versus static cold storage of human donation after cardiac death liver transplants: an international-matched case analysis. Ann Surg. 2015;262(5):764–770. PMID: 26583664 https://doi.org/10.1097/SLA.0000000000001473Test; Ravaioli M, De Pace V, Angeletti A, Comai G, Vasuri F, Baldassarre M, et al. Hypothermic oxygenated new machine perfusion system in liver and kidney transplantation of extended criteria donors: first Italian clinical trial. Sci Rep. 2020;10(1):6063. Erratum in: Sci Rep. 2020;10(1):14658. PMID: 32269237 https://doi.org/10.1038/s41598-02062979-9Test; Schlegel A, Muller X, Dutkowski P. Machine perfusion strategies in liver transplantation. Hepatobiliary Surg Nutr. 2019;8(5):490–501. PMID: 31673538 https://doi.org/10.21037/hbsn.2019.04.04Test; Those [2023] data are based on the Global Observatory on Donation and Transplantation (GODT) data, produced by the WHO-ONT collaboration. Available at: https://www.transplant-observatory.orgTest/ [Accessed September 28, 2023].; Lüer B, Koetting M, Efferz P, Minor T. Role of oxygen during hypothermic machine perfusion preservation of the liver. Transpl Int. 2010;23(9):944– 950. PMID: 20210932 https://doi.org/10.1111/j.1432-2277.2010.01067.xTest; Hamar M, Selzner M. Ex-vivo machine perfusion for kidney preservation. Curr Opin Organ Transplant. 2018;23(3):369–374. PMID: 29697462 https://doi.org/10.1097/MOT.0000000000000524Test; Schlegel AA, Kalisvaart M, Muiesan P. Machine perfusion in liver transplantation: an essential treatment or just an expensive toy? Minerva Anestesiol. 2018;84(2):236–245. PMID: 28726360 https://doi.org/10.23736/S0375-9393.17.12016-XTest; Jochmans I, Akhtar MZ, Nasralla D, Kocabayoglu P, Boffa C, Kaisar M, et al. Past, present, and future of dynamic kidney and liver preservation and resuscitation. Am J Transplant. 2016;16(9):2545– 2555. PMID: 26946212 https://doi.org/10.23736/S0375-9393.17.12016X10.1111/ajt.13778Test; Minor T, von Horn C, Paul A. Role of temperature in reconditioning and evaluation of cold preserved kidney and liver grafts. Curr Opin Organ Transplant. 2017;22(3):267–273. PMID: 28266940 https://doi.org/10.1097/MOT.0000000000000402Test; Hameed AM, Pleass HC, Wong G, Hawthorne WJ. Maximizing kidneys for transplantation using machine perfusion: from the past to the future: a comprehensive systematic review and meta-analysis. Medicine (Baltimore). 2016;95(40):e5083. PMID: 27749583 https://doi.org/10.1097/MD.0000000000005083Test; Гуляев В.А., Журавель С.В., Новрузбеков М.С., Олисов О.Д., Луцык К.Н., Минина М.Г. и др. Увеличит ли аппаратная перфузия печени количество донорских органов, пригодных для трансплантации? Трансплантология. 2018;10(4):308–326. https://doi.org/10.23873/2074-05062018-10-4-308-326Test; Zhong Z, Lan J, Ye S, Liu Z, Fan L, Zhang Y, et al. Outcome improvement for hypothermic machine perfusion versus cold storage for kidneys from cardiac death donors. Artif Organs. 2017;41(7):647–653. PMID: 28703374 https://doi.org/10.1111/aor.12828Test; Guarrera JV, Henry SD, Samstein B, Odeh-Ramadan R, Kinkhabwala M, Goldstein MJ, et al. Hypothermic machine preservation in human liver transplantation: the first clinical series. Am J Transplant. 2010;10(2):372–381. PMID: 19958323 https://doi.org/10.1111/j.16006143.2009.02932.xTest; Schlegel A, Kron P, Dutkowski P. Hypothermic machine perfusion in liver transplantation. Curr Opin Organ Transplant. 2016;21(3):308–314. PMID: 26918882 https://doi.org/10.1097/MOT.0000000000000303Test; van Rijn R, Karimian N, Matton APM, Burlage LC, Westerkamp AC, van den Berg AP, et al. Dual hypothermic oxygenated machine perfusion in liver transplants donated after circulatory death. Br J Surg. 2017;104(7):907–917. PMID: 28394402 https://doi.org/10.1002/bjs.10515Test; Carrel A, Lindbergh CA. The culture of whole organs. Science. 1935;81:621– 623. https://doi.org/10.1126/sci-ence.81.2112.621Test; Schlegel A, Muller X, Kalisvaart M, Muellhaupt B, Perera M, Isaac J, et al. Outcomes of liver transplantations from donation after circulatory death (DCD) treated by hypothermic oxygenated perfusion (HOPE) before implantation. J Hepatol. 2019;70(1):50–57. PMID: 30342115 https://doi.org/10.1016/j.jhep.2018.10.005Test; Hosgood SA, Saeb-Parsy K, Wilson C, Callaghan C, Collett D, Nicholson ML. Protocol of a randomised controlled, open-label trial of ex vivo normothermic perfusion versus static cold storage in donation after circulatory death renal transplantation. BMJ Open. 2017;7(1):e012237. PMID: 28115329 https://doi.org/10.1136/bmjo-pen-2016-012237Test; van Golen RF, Reiniers MJ, Vrisekoop N, Zuurbier CJ, Olthof PB, van Rheenen J, et al. The mechanisms and physiological relevance of glycocalyx degradation in hepatic ischemia/reperfusion injury. Antioxid Redox Signal. 2014;21(7):1098–1118. PMID: 24313895 https://doi.org/10.1089/ars.2013.5751Test; Iskender I, Cosgun T, Arni S, Trinkwitz M, Fehlings S, Cesarovic N, et al. Cytokine filtration modulates pulmonary metabolism and edema formation dur ing ex vivo lung perfusion. J Hear Lung Transplant. 2017;S1053–2498(17)31802– 31808. PMID: 28587802 https://doi.org/10.1016/j.healun.2017.05.021Test; Reiniers MJ, van Golen RF, van Gulik TM, Heger M. Reactive oxygen and nitrogen species in steatotic hepatocytes: a molecular perspective on the pathophysiology of ischemia-reperfusion injury in the fatty liver. Antioxid Redox Signal. 2014;21(7):1119–1142. PMID: 24294945 https://doi.org/10.1089/ars.2013.5486Test; Tang D, Kang R, Zeh HJ, Lotze MT. High-mobility group box 1, oxidative stress, and disease. Antioxid Redox Signal. 2011;14(7):1315–1335. PMID: 20969478 https://doi.org/10.1089/ars.2010.3356Test; Dutkowski P, Krug A, Krysiak M, Dünschede F, Seifert JK, Junginger T. Detection of mitochondrial electron chain carrier redox status by transhepatic light intensity during rat liver reperfusion. Cryobiology. 2003;47(2):125–142. PMID: 14580847 https://doi.org/10.1016/j.cryobiol.2003.08.004Test; Brockmann J, Reddy S, Coussios C, Pigott D, Guirriero D, Hughes D, et al. Normothermic perfusion: a new paradigm for organ preservation. Ann Surg. 2009;250(1):1–6. PMID: 19561463 https://doi.org/10.1097/SLA.0b013e3181a63c10Test; Schlegel A, Graf R, Clavien PA, Dutkowski P. Hypothermic oxygenated perfusion (HoPe) protects from biliary injury in a rodent model of DCD liver transplantation. J Hepatol. 2013;59(5):984991. PMID: 23820408 https://doi.org/10.1016/j.jhep.2013.06.022Test; Mergental H, Perera MP, Laing RW, Muiesan P, Isaac JR, Smith A, et al. Transplantation of declined liver allografts following normothermic ex-situ evaluation. Am J Transplant. 2016;16(11):3235–3245. PMID: 27192971 https://doi.org/10.1111/ajt.13875Test; Hoyer DP, Gallinat A, Swoboda S, Wohlschlaeger J, Rauen U, Paul A, et al. Influence of oxygen concentration during hypothermic machine perfusion on porcine kidneys from donation after circulatory death. Transplantation. 2014;98(9):944–950. PMID: 25369373 https://doi.org/10.1097/TP.0000000000000379Test; Kaushik D, Roychoudhury A. Reactive oxygen species (ROS) and response of antioxidants as ROS-scavengers during environmental stress in plants. Front Environ Sci. 2014;2:53. https://doi.org/10.3389/fenvs.2014.00053Test; Monbaliu D, Vekemans K, De Vos R, Brassil J, Heedfeld V, Qiang L, et al. Hemodynamic, biochemical, and morphological characteristics during preservation of normal porcine livers by hypothermic machine perfusion. Transplant Proc. 2007;39(8):2652–2658. PMID: 17954200 https://doi.org/10.1016/j.transproceed.2007.08.009Test; Zhang J, Wang X, Vikash V, Ye Q, Wu D, liu Y, et al. ROS and ROS-Mediated cellular signaling. Oxid Med Cell Longev. 2016;2016:4350965. PMID: 26998193 https://doi.org/10.1155/2016/4350965Test; Dirkes MC, Post IJH, Heger M, van Gulik TM. A novel oxygenated machine perfusion system for preservation of the liver. Artif Organs. 2013;37(8):719– 724. PMID: 23614839 https://doi.org/10.1111/aor.12071Test; da Silvacosta Fl, Teixeira RKC, Yamaki VN, Valente Al, Silva AMF, Brito MVH, et al. Remote ischemic conditioning temporarily improves antioxidant defense. J Surg Res. 2015;200(1):105–109. PMID: 26316445 https://doi.org/10.1016/j.jss.2015.07.031Test; Zhang Q, Raoof M, Chen Y, Sumi Y, Sursal T, Junger W, et al. Circulating mitochondrial DAMPs cause inflammatory responses to injury. Nature. 2010;464:104–107. PMID: 20203610 https://doi.org/10.1038/nature08780Test; Hausenloy DJD, Yellon DDM. The therapeutic potential of ischemic conditioning: an update. Nat Rev. 2011;8(11):619–629. PMID: 21691310 https://doi.org/10.1038/nrcardio.2011.85Test; Hausenloy DJ, Iliodromitis EK, Andreadou I, Papalois A, Gritsopoulos G, Anastasiou-Nana M, et al. Investigating the signal transduction pathways underlying remote ischemic conditioning in the porcine heart. Cardiovasc Drugs Ther. 2012;26(2):87–93. PMID: 22207395 https://doi.org/10.1007/s10557-011-6364-yTest; Jamieson RW, Zilvetti M, Roy D, Hughes D, Morovat A, Coussios CC, et al. Hepatic steatosis and normothermic perfusion-preliminary experiments in a porcine model. Transplantation. 2011;92(3):289–295. PMID: 21681143 https://doi.org/10.1097/TP.0b013e318223d817Test; Oniscu GC, Randle LV, Muiesan P, Butler AJ, Currie IS, Perera MTPR, et al. In situ normothermic regional perfusion for controlled donation after circulatory death – the United Kingdom experience. Am J Transplant. 2014;14(12):2846–2854. PMID: 25283987 https://doi.org/10.1111/ajt.12927Test; https://www.jtransplantologiya.ru/jour/article/view/830Test

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    دورية أكاديمية

    المصدر: Transplantologiya. The Russian Journal of Transplantation; № 4 (2011); 41-46 ; Трансплантология; № 4 (2011); 41-46 ; 2542-0909 ; 2074-0506 ; 10.23873/2074-0506-2011-0-4

    وصف الملف: application/pdf

    العلاقة: https://www.jtransplantologiya.ru/jour/article/view/323/384Test; Machine perfusion versus cold storage for the preservation of kidneys donated after cardiac death: a multicenter, randomized, controlled trial/Jochmans //Ann. Surg. -2010. -Vol. 252, № 5. -P. 756-764.; Hartono C.Transplantation: Pump it Up: Conserving a Precious Resource?/C. Hartono, M. Suthanthiran//Литература Nat. Rev. Nephrol. -2009. -Vol. 5, №. 8. -P. 433-434.; Organ preservation: current concepts and new strategies for the next decade/E.E. Guibert //Transfus. Med. Hemother. -2011. -Vol. 38. -P. 125-142.; Machine perfusion or cold storage in deceased-donor kidney transplantation/R.J. Ploeg //N. Engl. J. Med. -2009. -Vol. 360, №. 1. -P. 7-19.; Machine perfusion as a tool to select kidneys recovered from uncontrolled donors after cardiac death/O.N. Reznik //Transplant. Proc. -2008. -Vol. 40, №. 4. -P. 1023-1026.; 'When good kidneys pump badly': outcomes of deceased donor renal allografts with poor pulsatile perfusion characteristics/J.V. Guarrera //Transpl. Int. -2010. -Vol. 23, №. 4. -P. 444-446.; Evenson, A.R. Utilization of kidneys from donation after circulatory determination of death/A.R. Evenson//Curr. Opin. Organ. Transplant. -2011. -Vol. 16. -P 385-389.; Taylor, M.J. Current state of hypothermic machine perfusion preservation of organs: The clinical perspective/M.J. Taylor, S.C. Baicu//Cryobiology. -2010. -Vol. 60, №. 3. -P. 20-35.; Hosgood, S.A. Hypothermic machine perfusion after static cold storage does not improve the preservation condition in an experimental porcine kidney model/S.A. Hosgood//Br. J. Surg. -2011. -Vol. 98, №. 7. -P. 943-950.; Hosgood, S.A. A comparison of hypothermic machine perfusion versus static cold storage in an experimental model of renal ischemia reperfusion injury/S.A. Hosgood//Transplantation. -2010. -Vol. 89, №. 7. -P. 830-837.; Machine perfusion in clinical trials: the preservation solution bias/N. Chatauret //Transpl. Int. -2011. -Vol. 24, №. 9. -P. e81-e82.; Hypothermic machine perfusion of kidney grafts: which pressure is preferred?/B.M. Doorschodt //Ann. Biomed. Eng. -2011. -Vol. 39, №. 3. -P. 1051-1059.; The Mechanics of the Circulation/C.G. Caro //J. Fluid Mech. -1979. -Vol. 90, №. 4. -P. 794-797.; Klabunde, R.E. Energetics of flowing blood/R.E. Klabunde//Cardiovascular physiology concepts. -: Lippincot & Williams, 2004. -P. 9-10.; Klabunde, R.E. Exchange function of the microcirculation/R.E. Klabunde//Cardiovascular physiology concepts. -: Lippincot & Williams. -2004. -P. 176.; Timsit, M.O. Hypothermic kidney preservation: a remembrance of the past in the future?/M.O. Timsit, S.G. Tullius//Curr. Opin. Organ. Transplant. -2011. -Vol. 16, №. 2. -P. 162-168.; Weiss, J. Is there one solution for perfusion?/J. Weiss, F.F. Immer//Organs, Tissues & Cells. -2010. -Vol. 13. -P. 163-170.; https://www.jtransplantologiya.ru/jour/article/view/323Test