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1Academic Journal
Συγγραφείς: S. V. Zhuravel, P. Yu. Falevko, V. A. Manukovskiy, M. E. Malyshev, С. В. Журавель, П. Ю. Фалевко, В. А. Мануковский, М. Е. Малышев
Πηγή: Transplantologiya. The Russian Journal of Transplantation; Том 17, № 2 (2025); 200-214 ; Трансплантология; Том 17, № 2 (2025); 200-214 ; 2542-0909 ; 2074-0506
Θεματικοί όροι: заместительная почечная терапия, orthotopic liver transplantation, renal replacement therapy, ортотопическая трансплантация печени
Περιγραφή αρχείου: application/pdf
Relation: https://www.jtransplantologiya.ru/jour/article/view/1008/946; https://www.jtransplantologiya.ru/jour/article/view/1008/952; Battistella S, Grasso M, Catanzaro E, D'Arcangelo F, Corrà G, Germani G, et al. Evolution of liver transplantation indications: expanding horizons. Medicina (Kaunas). 2024;60(3):412. PMID: 38541138 htpps://doi.org/10.3390/medicina60030412; Häberle J, Siri B, Dionisi-Vici C. Quo vadis ureagenesis disorders? A journey from 90 years ago into the future. J Inherit Metab Dis. 2024;47(6):1120-1128. PMID: 38837457 https://doi.org/10.1002/jimd.12763; Krutsinger D, Pezzulo A, Blevins AE, Reed RM, Voigt MD, Eberlein M. Idiopathic hyperammonemia after solid organ transplantation: primarily a lung problem? A single-center experience and systematic review. Clin Transplant. 2017;31(5):e12957. PMID: 28295601 https://doi.org/10.1111/ctr.12957; Lichtenstein GR, Yang YX, Nunes FA, Lewis JD, Tuchman M, Tino G, et al. Fatal hyperammonemia after orthotopic lung transplantation. Ann Int Med. 2000;132(4):283–287. PMID: 10681283 https://doi.org/10.7326/0003-4819-132-4-200002150-00006; Catherine Ch, Bain KB, Iuppa JA, Yusen RD, Byers DE, Patterson GA, et al. Hyperammonemia syndrome after lung transplantation: a single center experience. Transplantation. 2016;100(3):678– 684. PMID: 26335916 https://doi.org/10.1097/TP.0000000000000868; Seethapathy H, Fenves AZ. Pathophysiology and management of hyperammonemia in organ transplant patients. Am J Kidney Dis. 2019;74(3):390–398. PMID: 31040091 https://doi.org/10.1053/j.agkd.2019.03.419; Plöchl W, Plöchl E, Pokorny H, Kozek-Langenecker S, Zacherl J, Stöckler-Ipsiroglu S, et al. Multiorgan donation from a donor with unrecognized ornithine transcarbamylase deficiency. Transplant Int. 2001;14(3):196-201. PMID: 11499911 https://doi.org/10.1007/s001479900134; Jalan R, De Chiara F, Balasubramaniyan V, Andreola F, Khetan V, Malago M, et al. Ammonia produces pathological changes in human hepatic stellate cells and is a target for therapy of portal hypertension. J Hepatol. 2016;64(4):823–833. PMID: 26654994 https://doi.org/10.1016/j.jhep.2015.11.019; Zhou Y, Eid T, Hassel B, Danbolt NC. Novel aspects of glutamine synthetase in ammonia homeostasis. Neurochem Int. 2020;140:104809. PMID: 32758585 https://doi.org/10.1016/j.neuint.2020.104809; Adeva MM, Souto G, Blanco N, Donapetry C. Ammonium metabolism in humans. Metabolism. 2012;61(11):1495– 1511. PMID: 22921946 https://doi.org/10.1016/j.metabol.2012.07.007; Olde Damink SW, Jalan R, Dejong CH. Interorgan ammonia trafficking in liver disease. Metab Brain Dis. 2009;24(1):169– 181. PMID: 19067143 https://doi.org/10.1007/s11011-008-9122-5; Long MT, Coursin DB. Undifferentiated non-hepatic hyperammonemia in the ICU: Diagnosis and management. J Crit Care. 2022;70:154042. PMID: 35447602 https://doi.org/10.1016/j.jcrc.2022.154042; Weiner ID, Verlander JW. Renal ammonia metabolism and transport. Compr Physiol. 2013;3(1):201–220. PMID: 23720285 https://doi.org/10.1002/cphy.c120010; Bourgeois S, Houillier P. State of knowledge on ammonia handling by the kidney. Pflugers Arch. 2024;476(4):517– 531. PMID: 38448728 https://doi.org/10.1007/s00424-024-02940-1; La M, Reid JJ. Endothelin-1 and the regulation of vascular tone. Clin Exp Pharmacol Physiol. 1995;22(5):315– 323. PMID: 7554421 https://doi.org/10.1111/j.1440-1681.1995.tb02008.x; Ghabril M, Nguyen J, Kramer D, Genco T, Mai M, Rosser BG. Presentation of an acquired urea cycle disorder post liver transplantation. Liver Transpl. 2007;13(12):1714-1716. PMID: 18044746 https://doi.org/10.1002/lt.21291; Ali R, Nagalli S. Hyperammonemia. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2025 Jan. PMID: 32491436; Chen H, Yang C, Yan S, Liu X, Zhou L, Yuan X. Sarcopenia in cirrhosis: from pathophysiology to interventional therapy. Exp Gerontol. 2024;196:112571. PMID: 39236869 https://doi.org/10.1016/j.exger.2024.112571; Weber ML, Ibrahim HN, Lake JR. Renal dysfunction in liver transplant recipients: evaluation of the critical issues. Liver Transpl. 2012;18(11):1290– 1301. PMID: 22847917 https://doi.org/10.1002/lt.23522; Hussaini T, Yoshida EM, Partovi N, Erb SR, Scudamore C, Chung S, et al. Early persistent progressive acute kidney injury and graft failure post liver transplantation. Transplant Direct. 2019;5(3):e429. PMID: 30882034 https://doi.org/10.1097/TXD.0000000000000868; Barritt AS 4th, Fried MW, Hayashi PH. Persistent portosystemic shunts after liver transplantation causing episodic hepatic encephalopathy. Dig Dis Sci. 2010;55(6):1794–1798. PMID: 19655248 https://doi.org/10.1007/s10620-009-0901-6; Mori DN, Kreisel D, Fullerton JN, Gilroy DW, Goldstein DR. Inflammatory triggers of acute rejection of organ allografts. Immunol Rev. 2014;258(1):132–144. PMID: 24517430 https://doi.org/10.1111/imr.12146; Vicente H-R, Agusti A, Cabrera-Pastor A, Fustero S, Delgado O, Taoro-Gonzalez L, et al. Sildenafil reduces neuroinflammation and restores spatial learning in rats with hepatic encephalopathy: underlying mechanisms. J Neuroinflammation. 2015;12:195. PMID: 26511444 https://doi.org/10.1186/s12974-015-0420-7; Taoro-Gonzalez L, Arenas YM, Cabrera-Pastor A, Felipo V. Hyperammonemia alters membrane expression of GluA1 and GluA2 subunits of AMPA receptors in hippocampus by enhancing activation of the IL-1 receptor: underlying mechanisms. J Neuroinflammation. 2018;15(1):36. PMID: 29422059 https://doi.org/10.1186/s12974-018-1082-z; Pun CK, Huang HC, Chang CC, Hsu SJ, Huang YH, Hou MC, et al. Hepatic encephalopathy: from novel pathogenesis mechanism to emerging treatments. J Chin Med Assoc. 2024;87(3):245–251. PMID: 38109364 https://doi.org/10.1097/JCMA.0000000000001041; Phillips SM, Pouch SM, Lo DJ, Kandiah S, Lomashvili KA, Subramanian RA, et al. A case of “cryptammonia”: disseminated cryptococcal infection generating profound hyperammonemia in a liver transplant recipient. J Investig Med High Impact Case Rep. 2022;10:23247096221129467. PMID: 36214295 https://doi.org/10.1177/23247096221129467; Baker RP, Schachter M, Phillips S, Kandiah S, Farrque M, Casadevall A, et al. Host and fungal factors both contribute to cryptococcosis-associated hyperammonemia (cryptammonia). Microbiol Spectr. 2024;12(7):e0390223. PMID: 38842310 https://doi.org/10.1128/spectrum.03902-23; Kolopaking MS. Urease, gastric bacteria and gastritis. Acta Med Indones. 2022;54(1):1–2. PMID: 35398819; Mouat S, Bishop J, Glamuzina E, Chin S, Best EJ, Evans HM. Fatal hyperammonemia associated with disseminated Serratia marcescens infection in a pediatric liver transplant recipient. Pediatr Transplantation. 2018;22(4):e13180. PMID: 29624817 https://doi.org/10.1111/petr.13180; Duarte T, Fidalgo P, Karvellas CJ, Cardoso FS. What every Intensivist should know about . Ammonia in liver failure. J Crit Care. 2024;81:154456. PMID: 37945461 https://doi.org/10.1016/j.jcrc.2023.154456; Rose CF, Amodio P, Bajaj JS, Dhiman RK, Montagnese S, Taylor-Robinson SD, et al. Hepatic encephalopathy: novel insights into classification, pathophysiology and therapy. J Hepatol. 2020;73(6):1526–1547. PMID: 33097308 https://doi.org/10.1016/j.jhep.2020.07.013; Deutsch-Link S, Moon AM, Jiang Y, Barritt AS 4th, Tapper EB. Serum ammonia in cirrhosis: clinical impact of hyperammonemia, utility of testing, and national testing trends. Clin Ther. 2022;44(3):e45–e57. PMID: 35125217 https://doi.org/10.1016/j.clinthera.2022.01.008; Лазебник Л.Б., Голованова Е.В., Алексеенко С.А., Буеверов А.О., Плотникова Е.Ю., Долгушина А.И. и др. Российский консенсус «Гипераммониемии у взрослых» (Версия 2021). Экспериментальная и клиническая гастроэнтерология. 2021;(3):97–118. https://doi.org/10.31146/1682-8658-ecg-187-3-97-118; Gupta S, Fenves AZ, Hootkins R. The role of RRT in hyperammonemic patients. Clin J Am Soc Nephrol. 2016;11(10):1872–1878. PMID: 27197910 https://doi.org/10.2215/CJN.01320216; Bernal W, Lee WM, Wendon J, Larsen FS, Williams R. Acute liver failure: a curable disease by 2024? J Hepatol. 2015;62(1 Suppl):S112–120. PMID: 25920080 https://doi.org/10.1016/j.jhep.2014.12.016; Butterworth RF. Ammonia removal by metabolic scavengers for the prevention and treatment of hepatic encephalopathy in cirrhosis. Drugs RD. 2021;21(2):123–132. PMID: 33890246 https://doi.org/10.1007/s40268-021-00345-4; Gluud LL, Dam G, Les I, Marchesini G, Borre M, Aagaard NK, et al. Branched-chain amino acids for people with hepatic encephalopathy. Cochrane Database Syst Rev. 2017;5(5):CD001939. PMID: 28518283 https://doi.org/10.1002/14651858.CD001939.pub4; Jalan R, O Damink SW, Deutz NE, Lee A, Hayes PC. Moderate hypothermia for uncontrolled intracranial hypertension in acute liver failure. Lancet. 1999;354(9185):1164–1168. PMID: 10513710 https://doi.org/10.1016/s0140-6736(98)12440-6; Bosoi CR, Parent-Robitaille C, Anderson K, Tremblay M, Rose CF. AST-120 (spherical carbon adsorbent) lowers ammonia levels and attenuates brain edema in bile duct-ligated rats. Hepatology. 2011;53(6):1995–2002. PMID: 21384402 https://doi.org/10.1002/ hep.24273; Agarwal B, Cañizares RB, Saliba F, Ballester MP, Tomescu DR, Martin D, et al. Randomized, controlled clinical trial of the DIALIVE liver dialysis device versus standard of care in patients with acute-on-chronic liver failure. J Hepatol. 2023;79(1):79–92. PMID: 37268222 https://doi.org/10.1016/j.jhep.2023.03.013; Kurtz CB, Millet YA, Puurunen MK, Perreault M, Charbonneau MR, Isabella VM, et al. An engineered E. coli Nissle improves hyperammonemia and survival in mice and shows dose-dependent exposure in healthy humans. Sci Transl Med. 2019;11(475):eaau7975. PMID: 30651324 https://doi.org/10.1126/scitranslmed.aau7975; Song G, Kerbet A, Jones H, Arias N, Davies N, Andreola F, et al. PS-149-recombinant glutamine synthetase: a novel strategy for the treatment of hyperammonemia and consequent hepatic encephalopathy in rodent model of cirrhosis and urea cycle enzyme deficiency. J Hepatol. 2019;70(1):e93–e94. https://doi.org/10.1016/S0618-8278(19)30167-7; Lévesque R, Leblanc M, Cardinal J, Teitlebaum J, Skrobik Y, Lebrun M. Haemodialysis for severe hyperammonaemic coma complicating urinary diversions. Nephrol Dial Transplant. 1999;14(2):458–461. PMID: 10069214 https://doi.org/10.1093/ndt/14.2.458; Naorungroj T, Yanase F, Eastwood GM, Baldwin I, Bellomo R. Extracorporeal ammonia clearance for hyperammonemia in critically Ill patients: a scoping review. Blood Purif. 2021;50(4-5):453–461. PMID: 33279903 https://doi.org/10.1159/000512100; Slack AJ, Auzinger G, Willars C, Dew T, Musto R, Corsilli D, et al. Ammonia clearance with haemofiltration in adults with liver disease. Liver Int. 2014;34(1):42–48. PMID: 23786538 https://doi.org/10.1111/liv.12221; Uchino S, Fealy N, Baldwin I, Morimatsu H, Bellomo R. Pre-dilution vs. post-dilution during continuous venovenous hemofiltration: impact on filter life and azotemic control. Nephron Clin Pract. 2003;94(4):c94–98. PMID: 12972719 https://doi.org/10.1159/000072492; Fisher C, Baldwin I, Fealy N, Naorungroj T, Bellomo R. Ammonia clearance with different continuous renal replacement therapy techniques in patients with liver failure. Blood Purif. 2022;51(10):840–846. PMID: 35042216 https://doi.org/10.1159/000521312; Dong V, Karvellas CJ. Liver assistive devices in acute liver failure: current use and future directions. Best Pract Res Clin Gastroenterol. 2024;73:101964. PMID: 39709218 https://doi.org/10.1016/j.bpg.2024.101964; Krisper P, Haditsch B, Stauber R, Jung A, Stadlbauer V, Trauner M, et al. In vivo quantification of liver dialysis: comparison of albumin dialysis and fractionated plasma separation. J Hepatol. 2005;43(3):451–7. PMID: 16023249 https://doi.org/10.1016/j.jhep.2005.02.038; MacDonald AJ, Karvellas CJ. Emerging role of extracorporeal support in acute and acute-on-chronic liver failure: recent developments. Semin Respir Crit Care Med. 2018;39(5):625– 634. PMID: 30485892 https://doi.org/10.1055/s-0038-1675334; Maiwall R, Bajpai M, Singh A, Agarwal T, Kumar G, Bharadwaj A, et al. Standard-volume plasma exchange improves outcomes in patients with acute liver failure: a randomized controlled trial. Clin Gastroenterol Hepatol. 2022;20(4):e831–e854. PMID: 33524593 https://doi.org/10.1016/j.cgh.2021.01.036; Larsen FS, Saliba F. Liver support systems and liver transplantation in acute liver failure. Liver Int. 2025;45(3):e15633. PMID: 37288706 https://doi.org/10.1111/liv.15633; https://www.jtransplantologiya.ru/jour/article/view/1008
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2Academic Journal
Συγγραφείς: V. G. Shestakova, V. K. Bogdanov, R. D. Pavlov, V. M. Terekhov, A. S. Timanovsky, A. A. Zharikov, A. N. Shibaev, N. V. Grudinin, В. Г. Шестакова, В. К. Богданов, Р. Д. Павлов, В. М. Терехов, А. С. Тимановский, А. А. Жариков, А. Н. Шибаев, Н. В. Грудинин
Πηγή: Russian Journal of Transplantology and Artificial Organs; Том 26, № 2 (2024); 73-81 ; Вестник трансплантологии и искусственных органов; Том 26, № 2 (2024); 73-81 ; 1995-1191
Θεματικοί όροι: декстран-40, orthotopic kidney transplantation, ex vivo hypothermic kidney perfusion, dextran 40, ортотопическая трансплантация почки, гипотермическая перфузия почки ex vivo
Περιγραφή αρχείου: application/pdf
Relation: https://journal.transpl.ru/vtio/article/view/1762/1614; https://journal.transpl.ru/vtio/article/view/1762/1652; https://journal.transpl.ru/vtio/article/downloadSuppFile/1762/1538; Кабанова CА, Богопольский ПМ. Пересадка почки: история, итоги и перспективы (к 50-летию первой успешной пересадки почки в России). Трансплантология. 2015; 2: 55–56.; Hill NR, Fatoba ST, Oke JL, Hirst JA, O’Callaghan CA, Lasserson DS, Hobbs FD. Global Prevalence of Chronic Kidney Disease – A Systematic Review and Meta-Analysis. PLoS One. 2016; 11 (7): e0158765. doi:10.1371/journal.pone.0158765.; Tsai WC, Wu HY, Peng YS, Ko MJ, Wu MS, Hung KY et al. Risk Factors for Development and Progression of Chronic Kidney Disease: A Systematic Review and Exploratory Meta-Analysis. Medicine (Baltimore). 2016; 95 (11): e3013. doi:10.1097/MD.0000000000003013.; Готье СВ, Цирульникова ОМ, Пашков ИВ, Олешкевич ДО, Филатов ИА, Богданов ВК и др. Нормотермическая ex vivo перфузия изолированных легких в эксперименте с использованием отечественного перфузионного аппаратного комплекса. Вестник трансплантологии и искусственных органов. 2022; 24 (2): 94–101. https://doi.org/10.15825/1995-11912022-2-94-101.; Готье СВ, Пашков ИВ, Богданов ВК, Олешкевич ДО, Бондаренко ДМ, Можейко НП и др. Еx vivo перфузия донорских легких с использованием разработанного раствора с последующей ортотопической левосторонней трансплантацией легкого (экспериментальное исследование). Вестник трансплантологии и искусственных органов. 2023; 25 (2): 158–166. https://doi.org/10.15825/1995-1191-2023-2-158-166.; Грудинин НВ, Богданов ВК, Шарапов МГ, Буненков НС, Можейко НП, Гончаров РГ и др. Применение пероксиредоксина для прекондиционирования трансплантата серд ца крысы. Вестник трансплантологии и искусственных органов. 2020; 22 (2): 158–164. https://doi.org/10.15825/1995-1191-2020-2-158-164.; Суханов АВ. Banff-классификация патологии аллотрансплантата почки. Нефрология и диализ. 2000; 2 (1–2): 58–62.; Brat A, de Vries KM, van Heurn EWE, Huurman VAL, de Jongh W, Leuvenink HGD et al. Hypothermic Machine Perfusion as a National Standard Preservation Method for Deceased Donor Kidneys. Transplantation. 2022 May; 106 (5): 1043–1050. doi:10.1097/TP.0000000000003845.; Peng P, Ding Z, He Y, Zhang J, Wang X, Yang Z. Hypothermic Machine Perfusion Versus Static Cold Storage in Deceased Donor Kidney Transplantation: A Systematic Review and Meta-Analysis of Randomized Controlled Trials. Artif Organs. 2019 May; 43 (5): 478–489. doi:10.1111/aor.13364. Epub 2018 Nov 9. PMID: 30282122.; Simona MS, Alessandra V, Emanuela C, Elena T, Michela M, Fulvia G et al. Evaluation of Oxidative Stress and Metabolic Profile in a Preclinical Kidney Transplantation Model According to Different Preservation Modalities. Int J Mol Sci. 2023 Jan 5; 24 (2): 1029. doi:10.3390/ijms24021029. PMID: 36674540; PMCID: PMC9861050.; Zulpaite R, Miknevicius P, Leber B, Strupas K, Stiegler P, Schemmer P. Ex-vivo Kidney Machine Perfusion: Therapeutic Potential. Front Med (Lausanne). 2021 Dec 24; 8: 808719. doi:10.3389/fmed.2021.808719. PMID: 35004787; PMCID: PMC8741203.; Lindell SL, Compagnon P, Mangino MJ, Southard JH. UW Solution for Hypothermic Machine Perfusion of Warm Ischemic Kidneys. Transplantation. 2005 May 27; 79 (10): 1358–1361. doi:10.1097/01.TP.0000159143.45022.F6.; Elliott TR, Nicholson ML, Hosgood SA. Normothermic kidney perfusion: An overview of protocols and strategies. Am J Transplant. 2021 Apr; 21 (4): 1382–1390. doi:10.1111/ajt.16307. Epub 2020 Sep 25. PMID: 32897651.; Campos Pamplona C, Moers C, Leuvenink HGD, van Leeuwen LL. Expanding the Horizons of Pre-Transplant Renal Vascular Assessment Using Ex Vivo Perfusion. Curr Issues Mol Biol. 2023 Jun 29; 45 (7): 5437–5459. doi:10.3390/cimb45070345. PMID: 37504261; PMCID: PMC10378498.; https://journal.transpl.ru/vtio/article/view/1762
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3Academic Journal
Συγγραφείς: Z. A. Bagateliya, P. A. Drozdov, S. A. Astapovich, E. A. Lidzhieva, F. F. Alieva, A. V. Shabunin, З. А. Багателия, П. А. Дроздов, С. А. Астапович, Э. А. Лиджиева, Ф. Ф. Алиева, А. В. Шабунин
Πηγή: Transplantologiya. The Russian Journal of Transplantation; Том 16, № 4 (2024); 500-506 ; Трансплантология; Том 16, № 4 (2024); 500-506 ; 2542-0909 ; 2074-0506
Θεματικοί όροι: лигирование аневризмы селезеночной артерии, liver cirrhosis, orthotopic liver transplantation, ligation of the splenic artery aneurysm, цирроз печени, ортотопическая трансплантация печени
Περιγραφή αρχείου: application/pdf
Relation: https://www.jtransplantologiya.ru/jour/article/view/943/910; https://www.jtransplantologiya.ru/jour/article/view/943/914; Panzera F, Inchingolo R, Rizzi M, Biscaglia A, Schievenin MG, Tallarico E, et al. Giant splenic artery aneurysm presenting with massive upper gastrointestinal bleeding: a case report and review of literature. World J Gastroenterol. 2020;26(22):3110–3117. https://doi.org/10.3748/wjg.v26.i22.3110; Batagini NC, Constantin BD, Kirksey L, Vallentsits Estenssoro AE, PuechLeão P, De Luccia N, et al. Natural history of splanchnic artery aneurysms. Ann Vasc Surg. 2021;73:290–295. PMID: 33346122 https://doi.org/10.1016/j.avsg.2020.10.047; Leal J, Batagini NC, Stefan de Faria Oliveira I, Frederico MG, Rodrigues MS, Casella IB, et al. Comparison of splenic artery aneurysms in patients with and without portal hypertension. Ann Vasc Surg. 2024;109:232–237. PMID: 39009114 https://doi.org/10.1016/j.avsg.2024.06.010; Gupta S, Pottakkat B, Verma SK, Kalayarasan R, Chandrasekar AS, Pillai AA. Pathological abnormalities in splenic vasculature in non-cirrhotic portal hypertension: Its relevance in the management of portal hyper tension. World J Gastrointest Surg. 2020;12(1):1–8. PMID: 31984119 doi.org/10.4240/wjgs.v12.i1.1; Phan D, Furtado R, Laurence JM, Pleass H. Splenic artery aneurysm management in the cirrhotic patient listed for liver transplantation: a systematic review. Transplant Proc. 2022;54(3):706– 714. https://doi.org/10.1016/j.transproceed.2022.01.031; Wang S, Huang W, Liu J, Liu Q, Wang Z, Wang Q, et al. Selection of endovascular treatment strategies and analysis of the efficacy of different locations and types of splenic artery aneurysms. CVIR Endovasc. 2024;7(1):16. PMID: 38294662 https://doi.org/10.1186/s42155-024-00427-9; Gong C, Sun MS, Leng R, Ren H-L, Zheng K, Wang S-X, et al. Endovascular embolization of visceral artery aneurysm: a retrospective study. Sci Rep. 2023;13(1):6936. PMID: 37117396 https://doi.org/10.1038/s41598-023-33789-6; Шабунин А.В., Багателия З.А., Бедин В.В., Тавобилов М.М., Карпов А.А., Алиева Ф.Ф. и др. Морфологическое обоснование хирургического лечения пациентов с истинной аневризмой селезеночной артерии. Анналы хирургической гепатологии. 2024;29(3):100–107. https://doi.org/10.16931/1995-5464.2024-3-100107; Sun LM, Chen HJ, Jeng LB, Li TC, Wu SC, Kao CH. Splenectomy and increased subsequent cancer risk: a nationwide population-based cohort study. Am J Surg. 2015;210(2):243– 251. PMID: 25986002 https://doi.org/10.1016/j.amjsurg.2015.01.017; Шабунин А.В., Бедин В.В., Тавобилов М.М., Карпов А.А., Алиева Ф.Ф. Программа лечения больных с истинными аневризмами селезеночной артерии в хирургической клинике Боткинской больницы. Московский хирургический журнал. 2023;(3):81–89. https://doi.org/10.17238/2072-3180-2023-3-81-89; https://www.jtransplantologiya.ru/jour/article/view/943
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4Academic Journal
Πηγή: Кардиология в Беларуси. :77-91
Θεματικοί όροι: 03 medical and health sciences, 0302 clinical medicine, ортотопическая трансплантация печени, orthotopic liver transplantation, ишемическая болезнь сердца, мультифокальный атеросклероз, факторы кардиоваскулярного риска, factors of cardiovascular risk, multifocal atherosclerosis, ischemic heart disease, 3. Good health
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5Academic Journal
Πηγή: Кардиология в Беларуси. :88-98
Θεματικοί όροι: cell rejection reactions, 03 medical and health sciences, 0302 clinical medicine, terminal heart failure, внутрисосудистое ультразвуковое исследование, immunosuppressive therapy, orthotopic heart transplantation, терминальная сердечная недостаточность, ортотопическая трансплантация сердца, иммуносупрессивная терапия, 3. Good health, реакции клеточного отторжения, intravascular ultrasound
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6Academic Journal
Συγγραφείς: A. Yu. Kolesnikov, A. A. Arnt, N. A. Kochergin, А. Ю. Колесников, А. А. Арнт, Н. А. Кочергин
Συνεισφορές: Исследование выполнено за счет гранта Российского научного фонда № 23-75-10009, https://rscf.ru/ project/23-75-10009/.
Πηγή: Russian Journal of Transplantology and Artificial Organs; Том 26, № 1 (2024); 97-102 ; Вестник трансплантологии и искусственных органов; Том 26, № 1 (2024); 97-102 ; 1995-1191
Θεματικοί όροι: оптическая когерентная томография, orthotopic heart transplantation, intravascular ultrasound, optical coherence tomography, ортотопическая трансплантация сердца, внутрисосудистое ультразвуковое исследование
Περιγραφή αρχείου: application/pdf
Relation: https://journal.transpl.ru/vtio/article/view/1717/1567; https://journal.transpl.ru/vtio/article/view/1717/1631; https://journal.transpl.ru/vtio/article/downloadSuppFile/1717/1489; https://journal.transpl.ru/vtio/article/downloadSuppFile/1717/1490; https://journal.transpl.ru/vtio/article/downloadSuppFile/1717/1491; Pighi M, GrattaA, Marin F, Bellamoli M, Lunardi M, Fezzi S et al. Cardiac allograft vasculopathy: Pathogenesis, diagnosis and therapy. Transplant Rev (Orlando). 2020 Oct; 34 (4): 100569. doi:10.1016/j.trre.2020.100569. Epub 2020 Jul 23. PMID: 32739137.; Lund LH, Khush KK, Cherikh WS, Goldfarb S, Kucheryavaya AY, Levvey BJ et al.International Society for Heart and Lung Transplantation. The Registry of the International Society for Heart and Lung Transplantation: Thirtyfourth Adult Heart Transplantation Report – 2017; Focus Theme: Allograft ischemic time. J Heart Lung Transplant. 2017 Oct; 36 (10): 1037–1046. doi:10.1016/j.healun.2017.07.019. Epub 2017 Jul 20. PMID: 28779893.; Wu MY, Ali Khawaja RD, Vargas D. Heart Transplantation: Indications, Surgical Techniques, and Complications. Radiol Clin North Am. 2023 Sep; 61 (5): 847–859. doi:10.1016/j.rcl.2023.04.011. Epub 2023 May 15. PMID: 37495292.; Pollack A, Nazif T, Mancini D, Weisz G. Detection and Imaging of Cardiac Allograft Vasculopathy. JACC Cardiovascular Imaging. 2013 May; 6 (5): 613–623. doi:10.1016/j.jcmg.2013.03.001.; Olymbios M, Kwiecinski J, Berman DS, Kobashigawa JA. Imaging in Heart Transplant Patients. JACC Cardiovasc Imaging. 2018 Oct; 11 (10): 1514–1530. doi:10.1016/j.jcmg.2018.06.019. PMID: 30286911.; Clemmensen TS, Jensen NM, Eiskjær H. Imaging of Cardiac Transplantation: An Overview. Semin Nucl Med. 2021 Jul; 51 (4): 335–348. doi:10.1053/j.semnuclmed.2020.12.012. Epub 2021 Jan 15. PMID: 33455723.; Khush KK, Cherikh WS, Chambers DC, Harhay MO, Hayes D Jr, Hsich E et al. International Society for Heart and Lung Transplantation. The International Thoracic Organ Transplant Registry of the International Society for Heart and Lung Transplantation: Thirty-sixth adult heart transplantation report – 2019; focus theme: Donor and recipient size match. J Heart Lung Transplant. 2019 Oct; 38 (10): 1056–1066. doi:10.1016/j.healun.2019.08.004.; Spartalis M, Spartalis E, Tzatzaki E, Tsilimigras DI, Moris D, Kontogiannis C et al. Cardiac allograft vasculopathy after heart transplantation: current prevention and treatment strategies. Eur Rev Med Pharmacol Sci. 2019 Jan; 23 (1): 303–311. doi:10.26355/eurrev_201901_16777.; Kindel SJ, Pahl E. Current therapies for cardiac allograft vasculopathy in children. Congenit Heart Dis. 2012 Jul-Aug; 7 (4): 324–335. doi:10.1111/j.17470803.2012.00666.x. Epub 2012 May 22. PMID: 22613206.; Badano LP, Miglioranza MH, Edvardsen T, Colafranceschi AS, Muraru D, Bacal F et al. Document reviewers. European Association of Cardiovascular Imaging/Cardiovascular Imaging Department of the Brazilian Society of Cardiology recommendations for the use of cardiac imaging to assess and follow patients after heart transplantation. Eur Heart J Cardiovasc Imaging. 2015 Sep; 16 (9): 919–948. doi:10.1093/ehjci/jev139. Epub 2015 Jul 2. PMID: 26139361.; Vassalli G, Gallino A, Weis M, von Scheidt W, Kappenberger L, von Segesser LK, Goy JJ. Working Group Microcirculation of the Eurpean Society of Cardiology. Alloimmunity and nonimmunologic risk factors in cardiac allograft vasculopathy. Eur Heart J. 2003 Jul; 24 (13): 1180–1188. doi:10.1016/s0195-668x(03)00237-9. PMID: 12831811.; Laks JA, Dipchand AI. Cardiac allograft vasculopathy: A review. Pediatr Transplant. 2022 May; 26 (3): e14218. doi:10.1111/petr.14218. Epub 2022 Jan 5. PMID: 34985793.; Shetty M, Chowdhury YS. Heart Transplantation Allograft Vasculopathy. 2023 May 22. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2023 Jan. PMID: 32310459.; Stehlik J, Kobashigawa J, Hunt SA, Reichenspurner H, Kirklin JK. Honoring 50 Years of Clinical Heart Transplantation in Circulation: In-Depth State-of-the-Art Review. Circulation. 2018 Jan 2; 137 (1): 71–87. doi:10.1161/CIRCULATIONAHA.117.029753. PMID: 29279339.; Nikolova AP, Kobashigawa JA. Cardiac Allograft Vasculopathy: The Enduring Enemy of Cardiac Transplantation. Transplantation. 2019 Jul; 103 (7): 1338–1348. doi:10.1097/TP.0000000000002704.; Mendiz OA, Gamboa P, Renedo MF, Lev GA, Favaloro LE, Bertolotti AM. Intravascular ultrasound for cardiac allograft vasculopathy detection. Clin Transplant. 2021 Feb; 35 (2): e14167. doi:10.1111/ctr.14167. Epub 2020 Dec 6. PMID: 33237578.; Legutko J, Bryniarski KL, Kaluza GL, Roleder T, Pociask E, Kedhi E et al. Intracoronary Imaging of Vulnerable Plaque-From Clinical Research to Everyday Practice. J Clin Med. 2022 Nov 9; 11 (22): 6639. doi:10.3390/jcm11226639.; Brown AJ, Obaid DR, Costopoulos C, Parker RA, Calvert PA, Teng Z et al. Direct Comparison of Virtual-Histology Intravascular Ultrasound and Optical Coherence Tomography Imaging for Identification of Thin-Cap Fibroatheroma. Circ Cardiovasc Imaging. 2015 Oct; 8 (10): e003487. doi:10.1161/CIRCIMAGING.115.003487.; Кочергин НА, Кочергина АМ. Возможности оптической когерентной томографии и внутрисосудистого ультразвука в выявлении нестабильных бляшек в коронарных артериях. Кардиоваскулярная терапия и профилактика. 2022; 21 (1): 2909. doi:10.15829/1728-8800-2022-2909.; Кочергин НА, Загородников НИ, Фролов АВ, Тарасов РС, Ганюков ВИ. Оптическая когерентная томография как метод оценки системы «кондуит – анастомоз – артерия» у пациентов после коронарного шунтирования. Комплексные проблемы сердечно-сосудистых заболеваний. 2022; 11 (4): 151–157. doi:10.17802/2306-1278-2022-11-4151-157.; Tomai F, Adorisio R, De Luca L, Pilati M, Petrolini A, Ghini AS et al. Coronary plaque composition assessed by intravascular ultrasound virtual histology: association with long-term clinical outcomes after heart transplantation in young adult recipients. Catheter Cardiovasc Interv. 2014 Jan 1; 83 (1): 70–77. doi:10.1002/ccd.25054. Epub 2013 Jul 16. PMID: 23765788.; Dyrbuś M, Gąsior M, Szyguła-Jurkiewicz B, Przybyłowski P. The role of optical coherence tomography and other intravascular imaging modalities in cardiac allograft vasculopathy. Postepy Kardiol Interwencyjnej. 2020 Mar; 16 (1): 19–29. doi:10.5114/aic.2020.93909.; Acharya D, Loyaga-Rendon RY, Chatterjee A, Rajapreyar I, Lee K. Optical Coherence Tomography in Cardiac Allograft Vasculopathy: State-of-the-Art Review. Circ Heart Fail. 2021 Sep; 14 (9): e008416. doi:10.1161/CIRCHEARTFAILURE.121.008416. Epub 2021 Aug 20. PMID: 34414769.; Tomai F, De Luca L, Petrolini A, Di Vito L, Ghini AS, Corvo P et al. Optical coherence tomography for characterization of cardiac allograft vasculopathy in late survivors of pediatric heart transplantation. J Heart Lung Transplant. 2016 Jan; 35 (1): 74–79. doi:10.1016/j.healun.2015.08.011. Epub 2015 Sep 3. PMID: 26452998.; Xing L, Higuma T, Wang Z, Aguirre AD, Mizuno K, Takano M et al. Clinical Significance of Lipid Rich Plaque Detected by Optical Coherence Tomography: A 4-Year Follow-Up Study. J Am Coll Cardiol. 2017; 69 (20): 2502–2513. doi:10.1016/j.jacc.2017.03.556.; Kawai K, Sato Y, Hokama JY, Kawakami R, Konishi T, Ghosh SKB et al. Histology, OCT, and Micro-CT Evaluation of Coronary Calcification Treated With Intravascular Lithotripsy: Atherosclerotic Cadaver Study. JACC Cardiovasc Interv. 2023 Sep 11; 16 (17): 2097–2108. doi:10.1016/j.jcin.2023.06.021.; Кочергин НА, Ганюков ВИ, Загородников НИ, Фролов АВ. Оптическая когерентная томография коронарных шунтов. Комплексные проблемы сердечно-сосудистых заболеваний. 2019; 8 (4S): 89–94. doi:10.17802/23061278-2019-8-4S-89-94.; Cassar A, Matsuo Y, Herrmann J, Li J, Lennon RJ, Gulati R et al. Coronary atherosclerosis with vulnerable plaque and complicated lesions in transplant recipients: new insight into cardiac allograft vasculopathy by optical coherence tomography. Eur Heart J. 2013 Sep; 34 (33): 2610–2617. doi:10.1093/eurheartj/eht236. Epub 2013 Jun 25. PMID: 23801824; PMCID: PMC3758840.; Fenton M, Mahmood A, Burch M, Simmonds J, Kuhn MA. Comparative Study of Pediatric Coronary Allograft Vasculopathy Between Single Centers in North America and United Kingdom. Transplant Proc. 2018 Dec; 50 (10): 3705–3709. doi:10.1016/j.transproceed.2018.06.022.; https://journal.transpl.ru/vtio/article/view/1717
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7Academic Journal
Συγγραφείς: A. V. Shabunin, P. A. Drozdov, O. N. Levina, E. A. Lidzhievа, А. В. Шабунин, П. А. Дроздов, О. Н. Левина, Э. А. Лиджиева
Πηγή: Transplantologiya. The Russian Journal of Transplantation; Том 15, № 3 (2023); 341-346 ; Трансплантология; Том 15, № 3 (2023); 341-346 ; 2542-0909 ; 2074-0506
Θεματικοί όροι: ортотопическая трансплантация печени, hemophilia A, orthotopic liver transplantation, гемофилия А
Περιγραφή αρχείου: application/pdf
Relation: https://www.jtransplantologiya.ru/jour/article/view/794/800; https://www.jtransplantologiya.ru/jour/article/view/794/808; Marchioro TL, Hougie C, Ragde H, Epstein RB, Thomas ED. Hemophilia: role of organ homografts. Science. 1969;163(3863):188–190. PMID: 4883723 https://doi.org/10.1126/science.163.3863.188; Pradhan-Sundd T, Gudapati S, Kaminski TW, Ragni MV. Exploring the complex role of coagulation factor VIII in chronic liver disease. Cell Mol Gastroenterol Hepatol. 2021;12(3):1061–1072. PMID: 33705963 https://doi.org/10.1016/j.jcmgh.2021.02.014; Arruda VR. The search for the origin of factor VIII synthesis and its impact on therapeutic strategies for hemophilia A. Haematologica. 2015;100(7):849–850. PMID: 26130509 https://doi.org/10.3324/haematol.2015.129858; Wilde JT. HIV and HCV coinfection in haemophilia. Haemophilia. 2004;10(1):1–8. PMID: 14962214 https:// doi.org/10.1046/j.1351-8216.2003.00828.x; Kliegman RM. Nelson textbook of pediatrics. 19th ed. Philadelphia: Saunders Elsevier; 2011.; McCarthy M, Gane E, Pereira S, Tibbs CJ, Heaton N, Rela M, et al. Liver transplantation for haemophiliacs with hepatitis C cirrhosis. Gut. 1996;39(6):870–875. PMID: 9038673 https://doi.org/10.1136/gut.39.6.870; Шабунин А.В., Парфенов И.П., Минина М.Г., Бедин В.В., Дроздов П.А., Левина О.Н. и др. Программа трансплантации печени в Боткинской больнице. Опыт 100 операций. Вестник трансплантологии и искусственных органов. 2022;24(2):23–30.; Yokoyama S, Bartlett A, Dar FS, Heneghan M, O'Grady J, Rela M, et al. Outcome of liver transplantation for haemophilia. HPB (Oxford). 2011;13(1):40–45. PMID: 21159102 https://doi.org/10.1111/j.1477-2574.2010.00237.x; Alonso Madrigal C, Dobón Rebollo M, Laredo de la Torre V, Palomera Bernal L, García Gil FA. Liver transplantation in hemophilia A and von Willebrand disease type 3: perioperative management and post-transplant outcome. Rev Esp Enferm Dig. 2018;110(8):522–526. PMID: 29931985 https://doi.org/10.17235/reed.2018.5204/2017; Ragni MV, Humar A, Stock PG, Blumberg EA, Eghtesad B, Fung JJ, et al. Hemophilia liver transplantation observational study. Liver Transpl. 2017;23(6):762–768. PMID: 27935212 https://doi.org/10.1002/lt.24688; https://www.jtransplantologiya.ru/jour/article/view/794
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8Academic Journal
Συγγραφείς: Elena V. Dren’, Nerses K. Sogoyan, Irina N. Lyapina, Daria P. Golubovskaya, Tamara B. Pecherina, Olga L. Barbarash, Елена Владимировна Дрень, Нерсес Корюнович Согоян, Ирина Николаевна Ляпина, Дарья Петровна Голубовская, Тамара Борзалиевна Печерина, Ольга Леонидовна Барбараш
Συνεισφορές: Работа выполнена в рамках темы ФНИ 0419-2022-0004 «Комплексная оценка молекулярных и клеточных детерминант системного фиброгенеза с последующей трансляцией полученных результатов в клиническую практику лечебного учреждения посредством использования математического моделирования».
Πηγή: Complex Issues of Cardiovascular Diseases; Том 12, № 3 (2023); 126-135 ; Комплексные проблемы сердечно-сосудистых заболеваний; Том 12, № 3 (2023); 126-135 ; 2587-9537 ; 2306-1278
Θεματικοί όροι: Ортотопическая трансплантация сердца, Idiopathic pericardial effusion, Orthotopic heart transplantation, Идиопатический гидроперикард
Περιγραφή αρχείου: application/pdf
Relation: https://www.nii-kpssz.com/jour/article/view/1264/813; https://www.nii-kpssz.com/jour/article/downloadSuppFile/1264/1279; https://www.nii-kpssz.com/jour/article/downloadSuppFile/1264/1280; https://www.nii-kpssz.com/jour/article/downloadSuppFile/1264/1281; https://www.nii-kpssz.com/jour/article/downloadSuppFile/1264/1282; Гипертрофическая кардиомиопатия. Клинические рекомендации 2020. Российский кардиологический журнал. 2021;26(5):4541. doi:10.15829/1560-4071-2021-4541; Authors/Task Force members; Elliott P.M., Anastasakis A., Borger M.A., Borggrefe M., Cecchi F., Charron P., Hagege A.A., Lafont A., Limongelli G., Mahrholdt H., McKenna W.J., Mogensen J., Nihoyannopoulos P., Nistri S., Pieper P.G., Pieske B., Rapezzi C., Rutten F.H., Tillmanns C., Watkins H. 2014 ESC Guidelines on diagnosis and management of hypertrophic cardiomyopathy: the Task Force for the Diagnosis and Management of Hypertrophic Cardiomyopathy of the European Society of Cardiology (ESC). Eur Heart J. 20152014;35(39):2733-2779. doi:10.1093/eurheartj/ehu284.; Lancellotti P., Patricia A Pellikka., Budts W., Farooq A Chaudhry, Donal E., Dulgheru R., Edvardsen T., Garbi M., Ha J.W., Kane G.C., Kreeger J., Mertens L., Pibarot P., Picano E., Ryan T., Tsutsui J.M., Varga A. The Clinical Use of Stress Echocardiography in Non-Ischaemic Heart Disease: Recommendations from the European Association of Cardiovascular Imaging and the American Society of Echocardiography. J Am Soc Echocardiogr.2017;30(2):101-138. doi:10.1016/j.echo.2016.10.016.; Finocchiaro G. Magavern E., Sinagra G., Ashley E., Papadakis M., Tome-Esteban M., Sharma S., Olivotto I. Impact of demographic features, lifestyle, and comorbidities on the clinical expression of hypertrophic cardiomyopathy. J Am Heart Assoc. 2017;6(12):1-11. doi:10.1161/JAHA.117.007161.; Marian A.J., Braunwald E. Hypertrophic cardiomyopathy: Genetics,pathogenesis clinical manifestations, diagnosis, and therapy. Circ Res. 2017;121(7):749-770. doi:10.1161/CIRCRESAHA.117.311059.; Puwanant S., Kittipibul V., Songsirisuk N., Santisukwongchote S., Sitticharoenchai P., Chattranukulchai P., Satitthummanid S., Boonyaratvej S. Idiopathic pericardial effusion in patients with hypertrophic cardiomyopathy. Int J Cardiovasc Imaging. 2022;38(2):331-337. doi:10.1007/s10554-021-02424-8.; Kostareva A., Gudkova A., Sjöberg G., Mörner S., Semernin E., Krutikov A., Shlyakhto E., Sejersen T. Deletion in TNNI3 gene is associated with restrictive cardiomyopathy. Int J Cardiol. 2009; 131(3):410-412. doi:10.1016/j.ijcard.2007.07.108.; Marrakchi S., Kammoun I., Bennour E., Laroussi L., Kachboura S. Risk stratification in hypertrophic cardiomyopathy. Herz. 2020; 45(1):50-64. doi:10.1007/s00059-018-4700-8.; Abbas A.E., Fortuin F.D., Schiller N.B., Appleton C.P., Moreno C.A., Lester S.J. Echocardiographic determination of mean pulmonary artery pressure. Am J Cardiol. 2003;92(11):1373-6. doi:10.1016/j.amjcard.2003.08.037.; Imazio M., Adler Y. Management of pericardial effusion. Eur Heart J. 2013; 34(16):1186-1197. doi:10.1093/eurheartj/ehs372.; Трансплантация сердца и механическая поддержка кровообращения. Клинические рекомендации. 2016. Режим доступа: http://old.transpl.ru/files/rto/transpl_serdca.pdf. (дата обращения 10.01.2023.); Martinez H.R., Beasley G.S., Miller N., Goldberg J.F., Jefferies J.L. Clinical insights into heritable cardiomyopathies. Front Genet. 2021;12:663450. doi:10.3389/fgene.2021.663450.; Maron B.J., Rowin E.J., Maron M.S. Global Burden of Hypertrophic Cardiomyopathy. JACC: Heart Failure. 2018;6(5):376-8. doi:10.1016/j.jchf.2018.03.004.; Adler Y., Charron P., Imazio M., Badano L., Barón-Esquivias G., Bogaert J., Brucato A., Gueret P., Klingel K., Lionis C., Maisch B., Mayosi B., Pavie A., Ristic A.D., Sabaté Tenas M., Seferovic P., Swedberg K., Tomkowski W.; ESC Scientific Document Group. 2015 ESC Guidelines for the diagnosis and management of pericardial diseases: The Task Force for the Diagnosis and Management of Pericardial Diseases of the European Society of Cardiology (ESC)Endorsed by: The European Association for Cardio-Thoracic Surgery (EACTS). Eur Heart J. 2015;36(42):2921-2964. doi:10.1093/eurheartj/ehv318.
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9Academic Journal
Συγγραφείς: A. A. Kiblitskaya, A. Y. Maksimov, A. S. Goncharova, Ye. M. Nepomnyashchaya, Ye. Y. Zlatnik, G. Y. Yegorov, Ye. A. Lukbanova, Ye. V. Zaikina, A. V. Volkova, А. А. Киблицкая, А. Ю. Максимов, А. С. Гончарова, Е. М. Непомнящая, Е. Ю. Златник, Г. Ю. Егоров, Е. А. Лукбанова, Е. В. Заикина, А. В. Волкова
Πηγή: Bulletin of Siberian Medicine; Том 21, № 3 (2022); 50-58 ; Бюллетень сибирской медицины; Том 21, № 3 (2022); 50-58 ; 1819-3684 ; 1682-0363 ; 10.20538/1682-0363-2022-21-3
Θεματικοί όροι: Balb/с nude, xenograft, colorectal cancer, adenocarcinoma, orthotopic transplantation, heterotopic transplantation, BALB / с Nude, ксенографт, колоректальный рак, аденокарцинома, ортотопическая трансплантация, гетеротопическая трансплантация
Περιγραφή αρχείου: application/pdf
Relation: https://bulletin.tomsk.ru/jour/article/view/4905/3252; Федоров В.Э., Поделякин К.А. Эпидемиологические аспекты колоректального рака (обзор). Медицинский альманах. 2017;4(49):145–148.; Bray F., Ferlay J., Soerjomataram I., Siegel R.L., Torre L.A., Jemal A. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA Cancer J. Clin. 2018;68(6):394–424. DOI:10.3322/caac.21492.; Stastna M., Janeckova L., Hrckulak D., Kriz V., Korinek V. Human colorectal cancer from the perspective of mouse models. Genes. 2019;10(788):33. DOI:10.3390/genes10100788.; Геворкян Ю.А., Колесников В.Е., Солдаткина Н.В., Харагезов Д.А., Дашков А.В., Каймакчи Д.О. и др. Малоинвазивные хирургические вмешательства в лечении больных метастатическим колоректальным раком. Южно-Российский онкологический журнал. 2020;1(2):22–27. DOI:10.37748/2687-0533-2020-1-2-3.; Кит О.И., Геворкян Ю.А., Солдаткина Н.В., Колесни ков В.Е., Харагезов Д.А. Лапароскопические комбинированные оперативные вмешательства при метастатическом колоректальном раке. Колопроктология. 2015;4(54):19–23.; Имятинов Е.Н. Клинико-молекулярные аспекты колоректального рака: этиопатогенез, профилактика, индивидуализация лечения. Практическая онкология. 2005;6(22):65–70.; Baran B., Ozupek N.M., Tetikа N.Y., Acarb E., Bekcioglua O., Baskina Y. Difference between left-sided and right-sided colorectal cancer: a focused review of literature. Gastroenterology Res. 2018;11(4):264–273. DOI:10.14740/gr1062w.; Luisetto M., Ahmadabadi B.N., Nili-Ahmadabadi H., Rafa A.Y., Hamid G.A., Mashori G.R. et al. Comparison of risk factors and molecular analysis of right-sided colon and left sided colon cancer. Adv. Can. Res. & Clinical Imag. 2019;2(2):27. DOI:10.33552/ACRCI.2019.02.000533.; Kwak H.D., Ju J.K. Immunological differences between right-sided and leftsided colorectal cancers: a comparison of embryologic midgut and hindgut. Ann. Coloproctol. 2019;35(6):342–346. DOI:10.3393/ac.2019.03.17.1.; Wilding J.L., Bodmer W.F. Cancer cell lines for drug discovery and development. Cancer Res. 2014;74(9):2377–2384. DOI:10.1158/0008-5472.CAN-13-2971.; Srivastava P., Kumar M., Nayak P.K. Role of patient derived cell lines and xenograft in cancer research. The Pharmstudent. 2016;27:40–48.; Cho S.-Y. Patient-derived xenografts as compatible models for precision oncology. Laboratory Animal Research. 2020;36:14. DOI:10.1186/s42826-020-00045-1.; Williams S.A., Anderson W.C., Santaguida M.T., Dylla S.J. Patient-derived xenografts, the cancer stem cell paradigm, and cancer pathobiology in the 21st century. Laboratory Investigation. 2013;93(9):970–982. DOI:10.1038/labinvest.2013.92.; Hidalgo M., Amant F., Biankin A.V., Budinská E., Byrne A.T., Caldas C. et al. Patient-derived xenograft models: an emerging platform for translational cancer research. Cancer Discov. 2014;4(9):998–1013. DOI:10.1158/2159-8290.; DeRose Yo.S., Wang G., Lin Y.-C., Bernard P.S., Buys S.S., Ebbert M.T.W. et al. Tumor grafts derived from women with breast cancer authentically reflect tumor pathology, growth, metastasis and disease outcomes. Nature Medicine. 2011;17(11):1514–1520. DOI:10.1038/nm.2454.; Inoue A., Deem A.K., Kopetz S., Heffernan T.P., Draetta G.F., Carugo A. Current and Future Horizons of Patient-Derived Xenograft Models in Colorectal Cancer Translational Research. Cancers. 2019;11(9):1321. DOI:10.3390/cancers11091321.; Linnebacher M., Maletzki C., Ostwald C., Klier U., Krohn M., Klar E., Prall F. Cryopreservation of human colorectal carcinomas prior to xenografting. BMC Cancer. 2010;10:362. DOI:10.1186/1471-2407-10-362.; Marangoni E., Vincent-Salomon A., Auger N., Degeorges A., Assayag F., de Cremoux P. et al. A new model of patient tumor-derived breast cancer xenografts for preclinical assays. Clinical Cancer Research. 2007;13(13):3989–3998. DOI:10.1158/1078-0432.CCR-07-0078.; Sivanand S., Peña-Llopis S., Zhao H., Kucejova B., Spence P., Pavia-Jimenez A. et al. A validated tumorgraft model reveals activity of dovitinib against renal cell carcinoma. Science Translational Medicine. 2012;4(137):137ra75. DOI:10.1126/ scitranslmed.3003643.; Zhu Y., Tian T., Li Z., Tang Z., Wang L., Wu J. at al. Establishment and characterization of patient-derived tumor xenograft using gastroscopic biopsies in gastric cancer. Scientific Reports. 2015;5:8542. DOI:10.1038/srep08542.; Xu Y., Zhang F., Pan X., Wang G., Zhu L., Zhang J. et al. Xenograft tumors derived from malignant pleural efusion of the patients with non-small-cell lung cancer as models to explore drug resistance. Cancer Commun. 2018;38(1):19. DOI:10.1186/s40880-018-0284-1.; Jung J., Sook H., Chang S.S. The generation and application of patient-derived xenograft model for cancer research. Cancer Res. Treat. 2018;50(1):1–10. DOI:10.4143/crt.2017.307.; https://bulletin.tomsk.ru/jour/article/view/4905
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10Academic Journal
Συγγραφείς: T. V. Pyanzova, E. R. Basters, T. N. Zvereva, N. M. Galayda, E. A. Grigorieva
Πηγή: Туберкулез и болезни лёгких, Vol 99, Iss 9, Pp 46-52 (2021)
Θεματικοί όροι: ортотопическая трансплантация сердца, туберкулез легких, медикаментозная иммуносупрессия, противотуберкулезная химиотерапия, Diseases of the respiratory system, RC705-779
Relation: https://www.tibl-journal.com/jour/article/view/1572; https://doaj.org/toc/2075-1230; https://doaj.org/toc/2542-1506; https://doaj.org/article/641ff3d7f2f04398a7b22c9cc546619f
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11Academic Journal
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12Academic Journal
Συγγραφείς: M. L. Katin, A. M. Dzyadz`ko, M. Yu. Gurova, O. O. Rummo, М. Л. Катин, А. М. Дзядзько, М. Ю. Гурова, О. О. Руммо
Πηγή: Transplantologiya. The Russian Journal of Transplantation; Том 11, № 2 (2019); 116-127 ; Трансплантология; Том 11, № 2 (2019); 116-127 ; 2542-0909 ; 2074-0506 ; 10.23873/2074-0506-2019-11-2
Θεματικοί όροι: ортотопическая трансплантация печени, orthotopic liver transplantation
Περιγραφή αρχείου: application/pdf
Relation: https://www.jtransplantologiya.ru/jour/article/view/428/500; https://www.jtransplantologiya.ru/jour/article/view/428/511; Schumann R., Mandell M.S., Mercaldo N. et al. Anesthesiа for liver transplantation in United States academic centers: intraoperative practice. J. Clin. Anesth. 2013;25(7):542–550. PMID:23994704 DOI:10.1016/j.jclinane.2013.04.017; Frezza E.E., Mezghebe H. Indications and complications of arterial catheter use in surgical or medical intensive care units. Analysis of 4932 patients. Am. Surg. 1998;64(2):127–131. PMID:9486883; Dorman T., Breslow M.J., Lipsett P.A., et al. Radial artery pressure monitoring underestimates central arterial pressure during vasopressor therapy in critically ill surgical patients. Crit. Care Med. 1998; 26(10):1646–1649. PMID:9781720 DOI:10.1097/00003246-199810000-00014; Stern D.H., Gerson J.I., Allen F.B., Parker F.B. Can we trust the direct radial artery pressure immediately following cardiopulmonary bypass? Anesthesiology. 1985;62(5):557–561. PMID:3994020 DOI:10.1097/00000542-198505000-00002; Pauca A.L., Hudspeth A.S., Wallenhaupt S.L., et al. Radial artery-to-aorta pressure difference after discontinuation of cardiopulmonary bypass. Anesthesiology. 1989;70(6):935–941. PMID:2729634 DOI:10.1097/00000542-198906000-00009; Dorman T., Breslow M.J., Lipsett P.A., et al. Radial artery pressure monitoring underestimates central arterial pressure during vasopressor therapy in critically ill surgical patients. Crit. Care Med. 1998;26(10):1646–1649. PMID:9781720 DOI:10.1097/00003246-199810000-00014; Acosta F., Sansano T., Beltran R., et al. Is femoral and radial artery pressure different during reperfusion in liver transplantation? Transplant. Proc. 2000;32(8):2647. PMID:11134741 DOI:10.1016/S0041-1345(00)01821-2; Meirelles Júnior R.F., Salvalaggio P., Rezende M.B., et al. Liver transplantation: history, outcomes and perspectives. Einstein (Sao Paulo). 2015;13(1):149–152. PMID:25993082 DOI:10.1590/S1679-45082015RW3164; Bland J.M., Altman D.G. Statistical methods for assessing agreement between two methods of clinical measurement. Lancet. 1986;1(8476):307–310. PMID:2868172 10. Albers I., Hartmann H., Bircher J., Creutzfeldt W. Superiority of the ChildPugh classification to quantitative liver function tests for assessing prognosis of liver cirrhosis. Scand. J. Gastroenterol. 1989;24(3):269–276. PMID:2734585; Remington J.W., Wood E.H. Formation of peripheral pulse contour in man. J. Appl. Physiol. 1956;9(3):433– 442. PMID:13376469 DOI:10.1152/jappl.1956.9.3.433; Manecke G.R. Jr., Parimucha M., Stratmann G., et al. Deep hypothermic circulatory arrest and the femoral-toradial arterial pressure gradient. J. Cardiothorac. Vasc. Anesth. 2004;18(2):175– 179. PMID:15073707; Riley L.E., Chen G.J., Latham H.E. Comparison of noninvasive blood pressure monitoring with invasive arterial pressure monitoring in medical ICU patients with septic shock. Blood Press. Monit. 2017;22(4):202–207. PMID:28379881 DOI:10.1097/MBP.0000000000000258; Kim W.Y., Jun J.H., Huh J.W., et al. Radial to Femoral Arterial Blood Pressure Differences in Septic Shock Patients Receiving High-Dose Norepinephrine Therapy. Shock. 2013;40(6):527–531. DOI:10.1097/SHK.0000000000000064; Rivers E.P., Lozon J., Enriquez E., et al. Simultaneous radial, femoral, and aortic arterial pressures during human cardio-pulmonary resuscitation. Crit. Care Med. 1993;21(6):878–883. PMID:8504656; Fuda G., Denault A., Deschamps A., et al. Risk Factors Involved in Centralto-Radial Arterial Pressure Gradient During Cardiac Surgery. Anesth. Analg. 2016;122(3):624–632. PMID:26599795 DOI:10.1213/ANE.0000000000001096; Arnal D., Garutti I., Perez-Peña J., et al. Radial to femoral arterial blood pressure differences during liver transplantation. Anaesthesia. 2005;60(8):766–771. PMID:16029225 DOI:10.1111/j.1365-2044.2005.04257.x; Shin Y.H., Kim H.Y., Kim Y.R., et al. The comparison of femoral and radial arterial blood pressures during pediatric liver transplantation. Transplant. Proc. 2013;45(5):1924–1927. PMID:23769074 DOI:10.1016/j.transproceed.2012.08.025; Shin B.S., Kim G.S., Ko J.S., et al. Comparison of femoral arterial blood pressure with radial arterial blood pressure and noninvasive upper arm blood pressure in the reperfusion period during liver transplantation. Transplant. Proc. 2007;39(5):1326–1328. PMID:17580132 DOI:10.1016/j.transproceed.2007.02.075; Mohr R., Lavee J., Goor D.A. Inaccuracy of radial artery pressure measurement after cardiac operations. J. Thorac. Cardiovasc. Surg. 1987;94(2):286–290. PMID:3497310; Seto A.H., Abu-Fadel M.S., Sparling J.M., et al. Real-time ultrasound guidance facilitates femoral arterial access and reduces vascular complications: FAUST (Femoral Arterial Access With Ultrasound Trial). JACC Cardiovasc. Interv. 2010;3(7):751–758. DOI:10.1016/j.jcin.2010.04.015; Sobolev M., Slovut D.P., Lee Chang A., et al. Ultrasound-Guided Catheterization of the Femoral Artery: A Systematic Review and Meta-Analysis of Randomized Controlled Trials. J. Invasive Cardiol. 2015;27(7):318–323. PMID:26136279; https://www.jtransplantologiya.ru/jour/article/view/428
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13Academic Journal
Συγγραφείς: D. O. Efremov, O. A. Gerasimova, K. V. Kozlov, I. A. Gabdrakhmanov, K. V. Zhdanov, Д. О. Ефремов, О. А. Герасимова, К. В. Козлов, И. А. Габдрахманов, К. В. Жданов
Πηγή: Journal Infectology; Том 11, № 4 (2019); 148-152 ; Журнал инфектологии; Том 11, № 4 (2019); 148-152 ; 2072-6732 ; 10.22625/2072-6732-2019-11-4
Θεματικοί όροι: ортотопическая трансплантация печени, cytomegalovirus infection, cytomegalovirus hepatitis, immunosuppressive therapy, orthotopic liver transplantation, цитомегаловирусная инфекция, цитомегаловирусный гепатит, иммуносупрессивная терапия
Περιγραφή αρχείου: application/pdf
Relation: https://journal.niidi.ru/jofin/article/view/974/756; Исаков, В.А. Герпес-вирусные инфекции человека : руководство для врачей / В.А. Исаков, Е.И. Архипова, Д.В. Исаков. - СПб.: СпецЛит, 2006. - 303 с.; Руководство по инфекционным болезням : в 2 кн / Ю.В. Лобзин [и др.] - 4-е изд., доп. и перераб. - СПб.: Фолиант, 2011. - Кн. 2 - 744 с.; Кожевина, Г.И. Цитомегаловирусный мононуклеоз у ребёнка / Г.И. Кожевина [и др.] // Журнал инфектоло-гии. - 2010. - Т. 2, №. 3. - С. 100-101.; Егорова, Н.Ю. Инфекционный мононуклеоз у детей: диагностика, лечение и наблюдение в катамнезе / Н.Ю. Егорова [и др.] // Педиатрия. — 2010. — № 4. — Приложение Consillium medicum. — С. 73 — 79.; Aarnisalo J., Ilonen J., Vainionpaa R., Kaitosaari T., Simell O. Development of antibodies against cytomegalovirus, varicella-zoster virus and herpes simplex virus in Finland during the first eight years of life: a prospective study. Scandinavian Journal of Infectious Diseases. 2003 Jun; 35(10): 750-753.; Arvin A., Campadelli-Fiume G., Mocarski E., Moore P., Roizman B., Whitley R., Yamanishi K. Human Herpesviruses: Biology, Therapy, and Immunoprophylaxis: Cambridge University Press; с 2007. 1408 р.; Герпес-вирусная инфекция / А.К. Полукчи [и др.]. — М.: Эксмо, 2009. — 304 с.; Brennan D.C. et al. Control of cytomegalovirus-associated morbidity in renal transplant patients using intensive monitoring and either preemptive or deferred therapy. Journal of the American Society of Nephrology. 1997 Jan; 8(1): 118-125.; Учайкин, В.Ф. Герпесвирусные гепатиты у детей / В.Ф. Учайкин [и др.] // Педиатрия. Журнал им. Г.Н. Сперанского. - 2012. - Т. 91, №. 3. - С. 136-142.; Смирнов, А.В. Клинические варианты течения ци-томегаловирусного гепатита / А.В. Смирнов // Детские инфекции. - 2008. - Т. 7, № 1. - С. 18-23.; Bruminhent J., Razonable R. R. Management of cytomegalovirus infection and disease in liver transplant recipients. World Journal of Hepatology. 2014 Jun; 6(6): 370383.; Прокопенко, Е.И. Вирусные инфекции и трансплантация почки / Е.И. Прокопенко // Нефрология и диализ. -2003. - Т. 5, №. 2. - С. 108-116.; Barkholt L. M., Johansson B., Veress J., Andersson J. P., Ehrnst A. Polymerase chain reaction for the early diagnosis of cytomegalovirus hepatitis in liver transplant patients. Clinical and Diagnostic Virology. 1995 Aug; 4(2): 121-134.; Razonable R. R., Emery V. C. Management of CMV infection and disease in transplant patients. Herpes: The Journal of the IHMF. 2004 Feb; 11(3): 77-86.; Razonable R. R., Paya C. V. Herpesvirus infections in transplant recipients: current challenges in the clinical management of cytomegalovirus and Epstein-Barr virus infections. Herpes: The Journal of the IHMF. 2003 Dec; 10(3): 60-65.; Chou S. W. Reactivation and recombination of multiple cytomegalovirus strains from individual organ donors. The Journal of infectious diseases. 1989 Jul; 160 (1): 5-11.; Sia I. G., Patel R. New strategies for prevention and therapy of cytomegalovirus infection and disease in solid-organ transplant recipients. Clinical Microbiology Reviews. 2000 Jan; 13(1): 83-121.; https://journal.niidi.ru/jofin/article/view/974
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14Academic Journal
Θεματικοί όροι: dilated cardiomyopathy, низкая фракция выброса, acute myocarditis, острый миокардит, желудочковая аритмия, orthotopic heart transplantation, дилатационная кардиомиопатия, хроническая сердечная недостаточность, ортотопическая трансплантация сердца, low ejection fraction, 3. Good health, chronic heart failure, ventricular arrhythmia
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15Academic Journal
Συγγραφείς: D. S. Khvan, A. M. Chernyavsky, V. U. Efendiev, D. A. Sirota, D. V. Doronin, A. V. Fomichev, M. G. Galstyan, M. O. Zhulkov, Д. С. Хван, А. М. Чернявский, В. У. Эфендиев, Д. А. Сирота, Д. В. Доронин, А. В. Фомичев, М. Г. Галстян, М. О. Жульков
Πηγή: Russian Journal of Transplantology and Artificial Organs; Том 20, № 2 (2018); 69-73 ; Вестник трансплантологии и искусственных органов; Том 20, № 2 (2018); 69-73 ; 1995-1191 ; 10.15825/1995-1191-2018-2
Θεματικοί όροι: ортотопическая трансплантация сердца, biventricular assist device, orthotopic heart transplantation, устройства вспомогательного кровообращения бивентрикулярного типа
Περιγραφή αρχείου: application/pdf
Relation: https://journal.transpl.ru/vtio/article/view/884/711; Merlo M, Cannatà A, Gobbo M, Stolfo D, Elliott PM, Sinagra G. Evolving concepts in dilated cardiomyopathy. Eur. J. Heart. Fail. 2018; 20 (2): 228–239. doi:10.1002/ ejhf.1103.; McCartney SL, Patel C, Del Rio JM. Long-term outcomes and management of the heart transplant recipient. Best. Pract. Res. Clin. Anaesthesiol. 2017; 31 (2): 237– 248. doi:10.1016/j.bpa.2017.06.003.; Lund LH, Trochu JN, Meyns B, Caliskan K, Shaw S, Schmitto JD et al. Screening for heart transplantation and left ventricular assist system: results from the Screening for advanced Heart Failure treatment (SEE-HF) study. Eur. J. Heart. Fail. 2018; 20 (1): 152–160. doi:10.1002/ejhf.975.; Ponikowski P, Voors AA, Anker SD, Bueno H, Cleland JGF, Coats AJS et al. 2016 ESC Guidelines for the diagnosis and treatment of acute and chronic heart failure: The Task Force for the diagnosis and treatment of acute and chronic heart failure of the European Society of Cardiology (ESC) Developed with the special contribution of the Heart Failure Association (HFA) of the ESC. Eur. Heart. J. 2016; 37 (27): 2129–2200. doi:10.1093/eurheartj/ehw128.; Trivedi JR, Cheng A, Ising M, Lenneman A, Birks E, Slaughter MS. Heart Transplant Survival Based on Recipient and Donor Risk Scoring: A UNOS Database Analysis. ASAIO Journal. 2016; 62 (3): 297–301.; Cologne, Germany: Institute for Quality and Effi ciency in Health Care (IQWiG). Systematic Guideline Search and Appraisal, as Well as Extraction of Relevant Recommendations, for a DMP «Chronic Heart Failure». Institute for Quality and Effi ciency in Health Care. 2015 Nov. Extract of Final Report No. V14–01.; Fu DM, Wang HQ, Zhang XL. Historical review of heart transplantation. Zhonghua Yi Shi Za Zhi. 2012; 42 (2): 89–99.; Liu Y, Maureira P, Gauchotte G, Falanga A, Marie V, Olivier A et al. Effect of chronic left ventricular unloading on myocardial remodeling: Multimodal assessment of two heterotopic heart transplantation techniques. J. Heart. Lung. Transplant. 2015; 34 (4): 594–603.; Dandel M, Krabatsch T, Falk V. Left ventricular vs. biventricular mechanical support: Decision making and strategies for avoidance of right heart failure after left ventricular assist device implantation. Int. J. Cardiol. 2015; 198: 241–250.; Brehm K, Heilmann C, Siepe M, Benk C, Beyersdorf F, Schlensak C. Thoratec paracorporeal biventricular assist device therapy: the Freiburg experience. Eur. J. Cardiothorac. Surg. 2012; 41 (1): 207–212.; Levin AP, Jaramillo N, Garan AR, Takeda K, Takayama H, Yuzefpolskaya M et al. Outcomes of contemporary mechanical circulatory support device confi gurations in patients with severe biventricular failure. J. Thorac. Cardiovasc. Surg. 2016; 151 (2): 530–535.e2. doi:10.1016/j. jtcvs.2015.10.019.; Lampert BC, Teuteberg JJ. Right ventricular failure after left ventricular assist devices. J. Heart. Lung. Transplant. 2015; 34 (9): 1123–1130. doi:10.1016/j.healun.2015.06.015.; Bartfay SE, Dellgren G, Lidén H, Holmberg M, Gäbel J, Redfors B et al. Are biventricular assist devices underused as a bridge to heart transplantation in patients with a high risk of postimplant right ventricular failure? J. Thorac. Cardiovasc. Surg. 2017; 153 (2): 360–367.e1. doi:10.1016/j.jtcvs.2016.09.084.; Philip J, Lopez-Colon D, Samraj RS, Kaliki G, Irwin MV, Pietra BA et al. End-organ recovery post-ventricular assist device can prognosticate survival. J. Crit. Care. 2018; 44: 57–62. doi:10.1016/j.jcrc.2017.10.017.; Yoshioka D, Toda K, Yoshikawa Y, Sawa Y. Over 1200day support with dual Jarvik 2000 biventricular assist device. Interact. Cardiovasc. Thorac. Surg. 2014; 19 (6): 1083–1084. doi:10.1093/icvts/ivu312.; Shehab S, Macdonald PS, Keogh AM, Kotlyar E, Jabbour A, Robson D et al. Long-term biventricular HeartWare ventricular assist device support – Case series of right atrial and right ventricular implantation outcomes. J. Heart. Lung. Transplant. 2016; 35(4): 466–73. doi:10.1016.; Barnard CN. The operation. A human cardiac transplant: an interim report of a successful operation pe rformed at Groote Schuur Hospital, Cape Town. Circulation Pathology and Cardiac Surgery. 2017; 21 (3S): 101–106.; https://journal.transpl.ru/vtio/article/view/884
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16Academic Journal
Συγγραφείς: A. V. Moiseenko, A. A. Polikarpov, D. A. Granov, P. G. Tarazov, C. V. Shapoval, A. R. Sheraliev, A. G. Karahanova, А. В. Моисеенко, А. А. Поликарпов, Д. А. Гранов, П. Г. Таразов, С. В. Шаповал, А. Р. Шералиев, А. Г. Караханова
Πηγή: Russian Journal of Transplantology and Artificial Organs; Том 20, № 3 (2018); 75-79 ; Вестник трансплантологии и искусственных органов; Том 20, № 3 (2018); 75-79 ; 1995-1191 ; 10.15825/1995-1191-2018-3
Θεματικοί όροι: желтуха, biliary cirrhosis, orthotopic liver transplantation, jaundice, билиарный цирроз, ортотопическая трансплантация печени
Περιγραφή αρχείου: application/pdf
Relation: https://journal.transpl.ru/vtio/article/view/915/734; Гранов АМ, Гранов ДА, Жеребцов ФК, Полысалов ВН, Герасимова ОА и др. Трансплантация печени в РНЦРХТ. Опыт 100 трупных трансплантаций печени в Российском научном центре радиологии и хирургических технологий. Вестник хирургии имени И.И. Грекова. 2012; 171 (2): 74–77. Granov AM, Granov DA, Zherebcov FK, Polysalov VN, Gerasimova OA et al. Experience of 100 liver transplantation in RSCRST. Herald of surgery I.I. Grekov. 2012; 171 (2): 74–77.; Готье СВ. Трансплантация печени: современное состояние проблемы. Альманах института хирургии им. А.В. Вишневского. 2008; 3 (3): 9–17. Gautier SV. Liver transplantation: current state of the problem. Almanac of surgery institute A.V. Vishnevsky. 2008; 3 (3): 9–17.; Готье СВ, Мойсюк ЯГ, Хомяков СМ. Донорство и трансплантация органов в Российской Федерации в 2014 году. VII сообщение регистра Российского трансплантологического общества. Вестник трансплантологии и искусственных органов. 2015; 17 (2): 7–22. Gautier SV, Moysuk YG, Homyakov SM. Organ donation and transplantation in Russian Federation in 2014. 7-th report of National Register. Russian Journal of Transplantology and Artificial Organs. 2015; 17 (2): 7–22.; Затевахин ИИ, Цициашвили МШ, Шиповский ВН и др. Малоинвазивные способы коррекции осложнений синдрома портальной гипертензии. Анналы хирургической гепатологии. 2012; 17 (2): 8–13. Zatevahin II, Ciciashvili MS, Shipovskiy VN et al. Minimally invasive methods for correction complications of portal hypertension syndrome. Annals of surgical hepatology. 2012; 17 (2): 8–13.; She WH, Chan ACY, Cheung TT et al. Survival outcomes of liver transplantation for hepatocellular carcinoma in patients with normal, high and very high preoperative alpha-fetoprotein levels. World J. Hepatol. 2018; 10 (2): 308–318.; Simoes P, Varun K, Ahmad J. Spectrum of biliary complications following live donor liver transplantation. World J. Hepatol. 2015; 7 (14): 1856–1865.; Levicar N, Pai M, Habib NA et al. Long-term clinical results of autologous infusion of mobilized adult bone marrow derived CD34+ cells in patients with chronic liver disease. Cell Proliferation. 2008; 41 (1): 115–125.; Unger L, Stork T, Bucsics T et al. The role of TIPS in the management of liver transplant candidates. United Eur. Gastroenterol. J. 2017; 5 (8): 1100–1107.; Garcia-Pagan JC, Caca K, Bureau C et al. Early use of TIPS in patients with cirrhosis and variceal bleeding. N. Engl. J. Med. 2010; 362 (25): 2370–2379.; Gines P, Colahora B et al. TIPS versus paracentesis plus albumin for refractory acites in cirrhosis. Gastroenterology. 2002; 123 (6): 1839–1847.; Freise CE, Gillespie BW, Koffron AJ et al. Recipient morbidity after living and deceased donor liver transplantation: findings from the A2ALL Retrospective Cohort Study. Am. J. Transplant. 2008; 8 (12): 2569–2579.; Vagefi PA, Parekh J, Ascher NL et al. Outcomes with split liver transplantation in 106 recipients: the University of California, San Francisco, experience from 1993 to 2010. Arch. Surg. 2011; 146 (9): 1052–1059.; Noack K, Bronk SF, Kato A et al. The greater vulnerability of bile duct cells to reoxygenation injury than to anoxia. Implications for the pathogenesis of biliary strictures after liver transplantation. Transplantation. 1993; 56 (3): 495–500.; https://journal.transpl.ru/vtio/article/view/915
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17Academic Journal
Συγγραφείς: V. E. Syutkin, A. A. Saliyenko, D. E. Syutkina, A. V. Chzhao, В. Е. Сюткин, А. А. Салиенко, Д. Е. Сюткина, А. В. Чжао
Πηγή: Transplantologiya. The Russian Journal of Transplantation; № 3-4 (2010); 18-22 ; Трансплантология; № 3-4 (2010); 18-22 ; 2542-0909 ; 2074-0506 ; 10.23873/2074-0506-2010-0-3-4
Θεματικοί όροι: гранулоцитарномакрофагальный колониестимулирующий фактор, HBV, vaccination, liver transplantation, molgramostim, гепатит В, ортотопическая трансплантация печени, молграмостим
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Relation: https://www.jtransplantologiya.ru/jour/article/view/289/352; Roche B., Samuel D., Gigou M. et al. De novo and apparent de novo hepatitis B virus infection after liver transplantation. J Hepatol 1997;26(3):517–26.; Fabia R., Levy M.F., Crippin J. et al. De novo hepatitis B infection after liver transplantation: sources of disease, incidence and impact. Liver Transpl Surg 1998;4(2):119–27.; Su W.J., Ho M.C., Ni Y.H. et al. High-titer antibody to hepatitis B surface antigen before liver transplantation can prevent de novo hepatitis B infection. J Pediatr Gastroenterol Nutr 2009;48(2):203–8.; Cholongitas E., Papatheodoridis G.V., Burroughs A.K. Liver grafts from antihepatitis B core positive donors: A systematic review. J of Hepatol 2010;52(2):272–9.; Barcena R., Moraleda G., Moreno J. et al. Prevention of de novo HBV infection by the presence of anti-HBs in transplanted patients receiving core antibody-positive livers. World J Gastroenterol 2006;12(13):2070–4.; Roque-Afonso A.M., Feray C., Samuel D. et al. Antibodies to hepatitis B surface antigen prevent viral reactivation in recipients of liver grafts from anti-HBC positive donors. Gut 2002;50(1):95–9.; Loinaz C., de Juanes J.R., Gonzales E.M. et al. Hepatitis B vaccination results in 140 liver transplant recipients. Hepatogastroenterology 1997;44(13): 235–8.; Tarr P.E., Lin R., Mueller E.A. et al. Evaluation of tolerability and antibody response after recombinant human granulocyte colony-stimulating factor (rhGM-CSF) and a single dose of recombinant hepatitis B vaccine. Vaccine 1996;14(13):1199–204.; Hasan M.S., Agosti J.M., Reynolds K.K. et al. Granulocyte macrophage colony stimulating factor as an adjuvant for hepatitis B vaccination of healthy adults. J Infect Dis 1999;180(6):2023–6.; Fabrizi F., Ganesha S.V., Dixit V., Martin P. Meta-analysis: the adjuvant role of granulocyte-macrophage colony-stimulating factor on immunological response to hepatitis B virus vaccine in end-stage renal disease. Aliment Pharmacol Ther 2006;24(5):789–96.; Sasaki M.G., Foccacia R., de MessiasReason I.J. Efficacy of granulocytemacrophage colony-stimulating factor (GMCSF) as a vaccine adjuvant for hepatitis B virus in patients with HIV infection. Vaccine 2003;21(31):4545–9.; Martin P., Friedman L.S. Chronic viral hepatitis and the management of chronic renal failure. Kidney Int 1995;47(5): 1231–41.; Cornberg M., Protzer U., Dollinger M.M. et al. Prophylaxe, Diagnostik und Therapie der Hepatitis-B-Virus-(HBV-) Infection- “Upgrade” der Leitlinie, AWMF-RegisterNr.:021/011. Z Gastroenterol 2007; 45:525–74.; Cornberg M., Protzer U., Dollinger M.M. et al. The German guideline for the management of hepatitis B virus infection: short version. J Viral Hepatitis 2008; 15(suppl 1):1–20.; Sanchez-Fueyo A., Rimola A., Grande L. et al. Hepatitis B immunoglobulin discontinuation followed by hepatitis B virus vaccination: A new strategy in the prophylaxis of hepatitis B virus recurrence after liver transplantation. Hepatology 2000; 31(2):496–501.; Angelico M., Di Paolo D., Trinito M.O. et al. Failure of a reinforced triple course of hepatitis B vaccination in patients transplanted for HBV-related cirrhosis. Hepatology 2002;35(1):176–81.; Di Paolo D., Lenci I., Trinito M.O. et al. Extended double-dosage HBV vaccination after liver transplantation is ineffective in the absence of lamivudine and prior wash-out of human hepatitis B immunoglobulins. Dig Liver Dis 2006;38(10):749–54.; Karasu Z., Ozacar T., Akarca U. et al. HBV vaccination in liver transplant recipients: not an effective strategy in the prophylaxis of HBV recurrence. J Viral Hepat 2005;12(2):212–5.; Yamashiki N., Sugawara Y., Tamura S. et al. Double-dose double-phase use of second generation hepatitis B virus vaccine in patients after living donor liver transplantation: Not an effective measure in transplant recipients. Hepatol Res 2009;39(1):7–13.; Rosenau J., Hooman N., Hadem J. et al. Failure of hepatitis B vaccination with conventional HBsAg vaccine in patients with continuous HBIG prophylaxis after liver transplantation. Liver Transpl 2007;13(3):367–73.; Merli M., Nicolini G., Attili F.A. et al. Failure of hepatitis B vaccination to induce either humoral or cellular immune response after liver transplantation for hepatitis B related cirrhosis. J Hepatol 2005; 43(6):1089–90.; Soejima Y., Ikegami T., Taketomi A. et al. Hepatitis B vaccination after living donor liver transplantation. Liver Int 2007;27(7):977–82.; Park J.B., Kwon C.H., Lee K.W. et al. Hepatitis B virus vaccine switch program for prevention of de novo hepatitis B virus infection in pediatric patients. Transpl Int 2008;21(4):346–52.; Kwon C.H., Suh K.S., Yi N.J. et al. Longterm protection against hepatitis B in pediatric liver recipients can be achieved effectively with vaccination after transplantation. Pediatr Transplant 2006;10(4):479–86.; McMahon B.J., Parkinson A.J., Helminiak C. et al. Response to hepatitis B vaccine of persons positive for antibody to hepatitis B core antigen. Gastroenterology 1992;103(2):590–4.; Lo C.M., Lau G.K., Chan S.C. et al. Efficacy of a pre-S containing vaccine in patients receiving lamivudine prophylaxis after liver transplantation for chronic hepatitis B. Am J Transplant 2007;7(2):434–9.; Bienzle U., Gunther M., Neuhaus R. et al. ful hepatitis B vaccination in patients who underwent transplantation for hepatitis B virus-related cirrhosis: preliminary results. Liver Transpl 2002;8(6):562–4.; Starkel P., Stoffel M., Lerut J. et al. Response to an experimental HBV vaccine permits withdrawal of HBIg prophylaxis in fulminant and selected chronic HBVinfected liver graft recipients. Liver Transpl 2005;11(10):1228–34.; Vandepapeliere P., Lau G.K., LerouxRoels G. et al. Therapeutic vaccination of chronic hepatitis B patients with virus suppression by antiviral therapy: a randomized, controlled study of coadministration of HBsAg/AS02 candidate vaccine and lamivudine. Vaccine 2007;25(suppl 1):8585–97.; Bienzle U., Gunther M., Neuhaus R. et al. Immunization with an adjuvant hepatitis B vaccine after liver transplantation for hepatitis B-related disease. Hepatology 2003;38(4):811–9.; Bauer T., Gunther M., Bienzle U. et al. Vaccination against hepatitis B in liver transplant recipients: pilot analysis of cellular immune response shows evidence of HBsAgspecific regulatory T cells. Liver Transpl 2007;13(3):434–42.; https://www.jtransplantologiya.ru/jour/article/view/289
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18Academic Journal
Συγγραφείς: O. O. Rummo, A. M. Dzyadzko, A. M. Fedoruk, A. E. Shcherba, A. F. Minov, О. О. Руммо, А. М. Дзядзько, А. М. Федорук, А. Е. Щерба, А. Ф. Минов
Πηγή: Transplantologiya. The Russian Journal of Transplantation; № 1 (2010); 68-71 ; Трансплантология; № 1 (2010); 68-71 ; 2542-0909 ; 2074-0506 ; 10.23873/2074-0506-2010-0-1
Θεματικοί όροι: ортотопическая трансплантация печени, orthotopic liver transplantation
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Relation: https://www.jtransplantologiya.ru/jour/article/view/273/336; Статистические данные Министерства здравоохранения Республики Беларусь. http:// minzdrav.by/med/article/statsod.php?prg=13; Busuttil R., Klintmalm G. Transplantation of the liver. 2nd ed. Philadelphia: Elsevier Saunders, 2005.; Starzl T.E., Groth C.G., Brettschneider L. et al. Extended survival in 3 cases of orthotopic homotransplantation of the human liver. Surgery 1968;63(4):549–63.; OPTN/SRTR annual report. http://optn. transplant.hrsa.gov/ar2008/waitlist_outcomes.htm; Schrem H., Till N., Becker T. et al. Longterm results after liver transplantation. Chirurg 2008;79(2):121–9.; https://www.jtransplantologiya.ru/jour/article/view/273
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19Academic Journal
Συγγραφείς: Yu. V. Skvortsova, O. D. Olisov, V. E. Syutkin, D. M. Konovalov, A. V. Chzhao, Ю. В. Скворцова, О. Д. Олисов, В. Е. Сюткин, Д. М. Коновалов, А. В. Чжао
Πηγή: Transplantologiya. The Russian Journal of Transplantation; № 1 (2010); 61-67 ; Трансплантология; № 1 (2010); 61-67 ; 2542-0909 ; 2074-0506 ; 10.23873/2074-0506-2010-0-1
Θεματικοί όροι: реакция «трансплантат против хозяина», orthotopic liver transplantation, graft-versus-host reaction, ортотопическая трансплантация печени
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Relation: https://www.jtransplantologiya.ru/jour/article/view/272/335; Taylor A.T., Gibbs P., Bradley J.A. Acute graft versus host disease following liver transplantation: the enemy within. Am J Transpl 2004;4:466–74.; Burdick J.F., Vogelsang G.B., Smith W.J. et al. Severe graft-versus-host disease in liver-transplant recipient. N Engl J Med 1988;318:689–91.; Perri R., Assi M., Talwalkar J. et al. Graft versus host disease after liver transplantation: a new approach is needed. Liver Transpl 2007;13:1092–9.; Taylor A.L., Gibbs P., Key T. et al. Monitoring systemic donor lymphocyte macrochimerism to aid the differential diagnosis of Graft versus host disease following liver transplantation. Transplantation 2004;77:441–6.; Smith D.M., Agura E., Netto G. et al. Liver transplant-associated graft-versus-host disease. Transplantation 2003;75:118–26.; Au W.Y., Lo C.M., Hawkins B.R. et al. Evan’s syndrome complicating chronic graft versus host disease after cadaveric liver transplantation. Transplantation 2001;72:527–8.; Nemoto T., Kubota K., Kita J. et al. Unusual onset of chronic graft-versus-host disease after adult living-related liver transplantation from a homozygous donor. Transplantation 2003;75:733–6.; Whitington P.F., Alonso E.M., Piper J.B. et al. Complete lymphoid chimerism and chronic graft-versus-host disease in an infant recipient of a hepatic allograft from a HLAhomozygous parental living donor. Transplantation 1996;62:1516–9.; Apperley J., Gluckman E., Grawohl A. Blood and Marrow Transplantation, European School of Haematology, EBMT, 1998.; Collins R.H., Anastasi J., Tertappen L.W. et al. Brief-report: donor-derived long-term multilineage hematopoiesis in a liver transplant recipient. N Engl J Med 1993;328:762–5.; Peters C., Minkov M., Gadner H. et al. Statement of current majority practices in graff-vwrsus-host disease prophylaxis and treatment in children. Bone marrow transplant 2000;26:405–11.; Massenkeil G., Rackwitz S., Genvresse I. et al. Basiliximab is well torerated and effective in the treatment of steroid-refractory acute graft-versus-host disease after allogeneic stem cell transplantation. Bone marrow transplant 2002;30:899–903.; Lee S.J., Vogelsang G., Gilman A. et al. A survey of diagnosis, vanagement, and grading of chronic GVHD. Biol Blood and Marrow Transplant 2002;8:32–9.; Saroglia E.M., Lanino E., Manfredini L. et al. Mycophenolate mofetil (MMF) as therapy for refractory chronic GVHD (cGVHD) in cildren recciving bone marrow transplantation. Bone marrow transplant 2000;25:1067–71.; https://www.jtransplantologiya.ru/jour/article/view/272
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20Academic Journal
Συγγραφείς: E. A. Kiseliova, E. F. Kim, I. A. Ushakova, G. P. Matveev, A. V. Vabishchevich, Е. А. Киселева, Э. Ф. Ким, И. А. Ушакова, Г. П. Матвеев, А. В. Вабищевич
Πηγή: Transplantologiya. The Russian Journal of Transplantation; № 1-2 (2012); 38-42 ; Трансплантология; № 1-2 (2012); 38-42 ; 2542-0909 ; 2074-0506 ; 10.23873/2074-0506-2012-0-1-2
Θεματικοί όροι: функция трансплантата, orthotopic liver transplantation, graft function, ортотопическая трансплантация печени
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Relation: https://www.jtransplantologiya.ru/jour/article/view/377/437; Анестезиологическое обеспечение трансплантации печени / А.В. Вабищевич [и др.] // Анестезиология и реаниматология. – 2002. – № 5. – С. 42–49.; Postreperfusion syndrome: hypotension after reperfusion of the transplanted liver / S. Aggarwal [et al.] // J. Crit. Care. – 1993. – 17. – P. 154–160.; Postreperfusion syndrome: Cardiovascular collapse following hepatic reperfusion during liver transplantation / S. Aggarwal [et al.] // Transplant. Proc. – 1987. – 19, Suppl. 3. – P. 54–55.; Double blind randomized controlled trial on the effects of mannitol on the postreperfusion syndrome during orthotopic liver transplantations / G. Dembo [et al.] // International J. Anaesthesia. – 2006. – 6. – P. 1–13.; The impact of postreperfusion syndrome on short-term patient and liver allograft outcome in patients undergoing orthotopic liver transplantation / I. Hilmi [et al.] // Liver Transplant. – 2008. – 14. – P. 504–508.; Post-reperfusion Syndrome and Outcome Variables after Orthotopic Liver Transplantation / M.B. Khosravi [et al.] // Int. J. Org. Transplant. Med. – 2010. – Vol. 1 (3). – P. 115–120.; The effect of methylene blue on the hemodynamic changes during ischemia reperfusion injury in orthotopic liver transplantation / H. Koelzow [et al.] // Anesth. Analg. – 2002. – 94. – P. 824–829.; Analysis of postrevascularization syndrome after orthotopic liver transplantation: the experience of an Australian liver transplantation center / A. Nanashima [et al.] // J. Hepatobiliary. Pancreat. Surg. – 2001. – 8 (6). – P. 557–563.; Postreperfusion syndrome during liver transplantation for cirrhosis: outcome and predictors / C. Paugam-Burtz [et al.] // Liver Transpl. – 2009. – May, 15 (5). – P. 522–529.; Mannitol dose-dependently attenuates lung reperfusion injury following liver ischemia reperfusion: a doseresponse study in an isolated perfused double-organ model / A.A. Weinbroum [et al.] // Lung. – 2002. – 180. – P. 327– 338.; Cholestatic jaundice after hepatic transplantation: a nonimmunologically mediated event / J.W. Williams [et al.] // Am. J. Surg. – 1986. – 151. – P. 65–70.; https://www.jtransplantologiya.ru/jour/article/view/377