JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE ›› 2020, Vol. 22 ›› Issue (5): 551-556.DOI: 10.3969/j.issn.1671-2587.2020.05.027
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Received:
2019-03-18
Online:
2020-10-20
Published:
2020-10-16
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[1] Rubin O,Crettaz D,Tissot JD,et al.Microparticles in stored red blood cells:submicron clotting bombs?[J]. Blood Transfus,2010,8 Suppl 3:s31-s38. [2] Helbing T.Role of microparticles in endothelial dysfunction and arterial hypertension[J].World J Cardiol, 2014,6(11):1135. [3] Nieuwland R,Böing A,Romijn F,et al.Cell-derived microparticles circulate in healthy humans and support low grade thrombin generation[J].Thromb Haemost, 2001,85(4):639-649. [4] Flaumenhaft R,Mairuhu ATA,Italiano JE.Platelet- and megakaryocyte-derived microparticles[J]. Semin Thromb Hemostasis,2010,36(8):881-887. [5] Simak J,Gelderman MP.Cell membrane microparticles in blood and blood products:potentially pathogenic agents and diagnostic markers[J].Transfus Med Rev,2006,20(1):1-26. [6] 时慧挺. 不同血液储存时间对红细胞免疫功能和输血安全性的影响分析[J]. 现代诊断与治疗,2017,28(1):149-150. [7] Koch CG,Figueroa PI,Li L,et al.Red blood cell storage:how long is too long?[J].Ann Thorac Surg,2013,96(5):1894-1899. [8] Vamvakas EC.Purported deleterious effects of“old” versus“fresh”red blood cells:an updated meta-analysis[J]. Transfusion,2011,51(5):1122-1123. [9] Aleshnick M,Foley JH,Keating FK.Procoagulant activity in stored units of red blood cells[J]. Blood,2013,122(21):1157. [10] Lacroix J,Hébert PC,Fergusson DA,et al.Age of transfused blood in critically ill adults[J]. N Engl J Med,2015,372(15):1410-1418. [11] Steiner ME,Ness PM,Assmann SF,et al.Effects of red-cell storage duration on patients undergoing cardiac surgery[J]. N Engl J Med,2015,372(15):1419-1429. [12] Rubin O,Crettaz D,Canellini G,et al.Microparticles in stored red blood cells:an approach using flow cytometry and proteomic tools[J].Vox Sang,2008,95(4):288-297. [13] Rubin O,Canellini G,Delobel J,et al.Red blood cell microparticles:clinical relevance[J].Transfus Med Hemotherapy,2012,39(5):342-347. [14] Lang F,Gulbins E,Lerche H,et al.Eryptosis,a window to systemic disease[J].Cell Physiol Biochem,2008,22:373-380. [15] Pajic-Lijakovic I.Role of band 3 in the erythrocyte membrane structural changes under thermal fluctuations -multi scale modeling considerations[J]. J Bioenerg Biomembr,2015,47(6):507-518. [16] Werre JM,Willekens FLA,Bosch FH,et al.The red cell revisited—matters of life and death[J]. Cell Mol Biol Noisy - Le - Grand France,2004,50(2):139-145. [17] Westerman M,Porter J B.Red blood cell-derived microparticles:an overview[J].Blood Cells Mol Dis,2016,59:134-139. [18] Jy W,Horstman LL,Jimenez JJ,et al.Measuring circulating cell-derived microparticles[J].J Thromb Haemost, 2004,2(10):1842-1843. [19] Lawrie AS,Albanyan A,Cardigan R,et al.Microparticle sizing by dynamic light scattering in fresh‐frozen plasma[J]. Vox Sang,2009,96(3):206-212. [20] Grisendi G,Finetti E,Manganaro D,et al.Detection of microparticles from human red blood cells by multiparametric flow cytometry[J].Blood Transfus,2015,13(2):274-280. [21] Dasgupta SK,Guchhait P,Thiagarajan P.Lactadherin binding and phosphatidylserine expression on cell surface-comparison with annexin A5[J].Transl Res,2006,148(1):19-25. [22] Aung HH,Tung J,Dean MM,et al.Procoagulant role of microparticles in routine storage of packed red blood cells:potential risk for prothrombotic post-transfusion complications[J]. Pathology,2017,49(1):62-69. [23] 张宁洁,卜艳红,王勇军. 红细胞血液制品中红细胞微粒检测方法的建立[J].中国输血杂志,2015,28(10):1218-1221. [24] Wolf P.The nature and significance of platelet products in human plasma[J]. Br J Haematol,1967,13(3):269-288. [25] Almizraq R,Tchir JDR,Holovati JL,et al.Storage of red blood cells affects membrane composition,microvesiculation,and in vitro quality[J].Transfusion, 2013,53(10):2258-2267. [26] Zimrin AB,Hess JR.Curren t issues relating to the transfusion of stored red blood cells[J].Vox Sang, 2009,96(2):93-103. [27] Tissot JD,Rubin O,Canellini G.Analysis and clinical relevance of microparticles from red blood cells[J]. Curr Opin Hematol,2010,17(6):571-577. [28] Willekens FL A,Werre JM,Groenen-Döpp YA M,et al.Erythrocyte vesiculation:a self-protective mechanism?[J]. Br J Haematol, 2008,141(4):549-556. [29] Bosman GJCG M,Lasonder E,Luten M,et al.The proteome of red cell membranes and vesicles during storage in blood bank conditions[J]. Transfusion,2008,48(5):827-835. [30] Stewart A,Urbaniak S,Turner M,et al.The application of a new quantitative assay for the monitoring of integrin-associated protein CD47 on red blood cells during storage and comparison with the expression of CD47 and phosphatidylserine with flow cytometry[J]. Transfusion,2005,45(9):1496-1503. [31] Vasina EM,Cauwenberghs S,Feijge MH,et al.Microparticles from apoptotic platelets promote resident macrophage differentiation[J]. Cell Death Dis, 2011,2(9):e211. DOI:10.1038/cddis.2011.94. [32] Barteneva NS,Fasler-Kan E,Bernimoulin M,et al.Circulating microparticles:square the circle[J]. BMC Cell Biol,2013,14(1):1-21. [33] Mantel PY,Hoang AN,Goldowitz I,et al.Malaria-infected erythrocyte-derived microvesicles mediate cellular communication within the parasite population and with the host immune system[J]. Cell Host Microbe,2013,13(5):521-534. [34] Kini RM.Structure-function relationships and mechanism of anticoagulant phospholipase A2enzymes from snake venoms[J]. Toxicon,2005,45(8):1147-1161. [35] Sinauridze EI,Kireev DA,Popenko NY,et al.Platelet microparticle membranes have 50-to 100-fold higher specific procoagulant activity than activated platelets[J]. Thromb Haemost,2007,97(3):425-434. [36] Morel O,Toti F,Hugel B,et al.Procoagulant microparticles[J]. Arterioscler Thromb Vasc Biol, 2006,26(12):2594-2604. [37] Rubin O,Delobel J,Prudent M,et al.Red blood cell-derived microparticles isolated from blood units initiate and propagate thrombin generation[J]. Transfusion, 2013,53(8):1744-1754. [38] van der Meijden PE J,van Schilfgaarde M,van Oerle R,et al. Platelet‐and erythrocyte‐derived microparticles trigger thrombin generation via factor XIIa[J]. J Thromb Haemost,2012,10(7):1355-1362. [39] Mooberry MJ,Bradford R,Hobl EL,et al.Procoagulant microparticles promote coagulation in a factor XI-dependent manner in human endotoxemia[J]. J Thromb Haemost,2016,14(5):1031-1042. [40] Biró E,Sturk-Maquelin KN,Vogel GM T,et al.Human cell-derived microparticles promote Thrombus formation in vivo in a tissue factor-dependent manner[J]. J Thromb Haemost,2003,1(12):2561-2568. [41] Jy W,Johansen ME,Bidot C,et al.Red cell-derived microparticles (RMP) as haemostatic agent[J]. Thromb Haemost,2013,110(4):751-760. [42] van Beers EJ,Schaap MCL,Berckmans RJ,et al. Circulating erythrocyte-derived microparticles are associated with coagulation activation in sickle cell disease[J]. Haematologica, 2009,94(11):1513-1519. [43] Livaja Koshiar R,Somajo S,Norström E,et al.Erythrocyte-derived microparticles supporting activated protein C-mediated regulation of blood coagulation[J]. PLoS One, 2014,9(8):e104200. DOI:10.1371/journal.pone.0104200. [44] Radwanski K,Garraud O,Cognasse F,et al.The effects of red blood cell preparation method on in vitro markers of red blood cell aging and inflammatory response[J]. Transfusion,2013,53(12):3128-3138. [45] Zecher D,Cumpelik A,Schifferli JA.Erythrocyte-derived microvesicles amplify systemic inflammation by thrombin-dependent activation of complement[J]. Arterioscler Thromb Vasc Biol,2014,34(2):313-320. [46] Xiong ZY,Cavaretta J,Qu LR,et al.Red blood cell microparticles show altered inflammatory chemokine binding and release ligand upon interaction with platelets[J]. Transfusion,2011,51(3):610-621. [47] Sadallah S,Eken C,Schifferli JA.Erythrocyte-derived ectosomes have immunosuppressive properties[J]. J Leukoc Biol,2008,84(5):1316-1325. [48] Reiter CD,Wang XD,Tanus-Santos JE,et al.Cell-free hemoglobin limits nitric oxide bioavailability in sickle-cell disease[J]. Nat Med,2002,8(12):1383-1389. [49] Kato GJ,McGowan V,Machado RF,et al.Lactate dehydrogenase as a biomarker of hemolysis-associated nitric oxide resistance,priapism,leg ulceration,pulmonary hypertension,and death in patients with sickle cell disease[J]. Blood,2006,107(6):2279-2285. [50] Rank A,Nieuwland R,Toth B,et al.Microparticles for diagnosis of graft-versus-host disease after allo geneic stem transplantation[J]. Transplantation,2011,92(2):244-250. [51] Silliman CC,Fung YL,Ball JB,et al.Transfusion-related acute lung injury (TRALI):current concepts and misconceptions[J]. Blood Rev,2009,23(6):245-255. [52] Beck TN,Young NG,Erickson ML,et al.Rare antibody-associated hemolytic transfusion reaction and transfusion-related acute lung injury:a case report[J]. BMC Surg,2017,17(1):1-7. [53] Jy W,Ricci M,Shariatmadar S,et al.Microparticles in stored red blood cells as potential mediators of transfusion complications[J]. Transfusion,2011,51(4):886-893. |
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