Transfusion-Associated Circulatory Overload and Transfusion-Related Acute Lung Injury

American Journal of Clinical Pathology - Tập 156 Số 4 - Trang 529-539 - 2021
Tayler A. van den Akker1, Zachary Grimes1, Mark T. Friedman2
1Department of Pathology and Laboratory Medicine, Icahn School of Medicine at Mount Sinai , New York, NY , USA
2Department of Pathology, NYU Long Island School of Medicine , Mineola, NY , USA

Tóm tắt

AbstractObjectivesTo review the new current diagnostic criteria of transfusion-associated circulatory overload (TACO) and transfusion-related acute lung injury (TRALI) from the literature while highlighting distinguishing features. We provide comprehensive understanding of the importance of hemovigilance and its role in appropriately identifying and reporting these potentially fatal transfusion reactions.MethodsA review of the English language literature was performed to analyze TACO and TRALI while providing further understanding of the rationale behind the historical underrecognition and underreporting.ResultsOur review demonstrates the new 2018 and 2019 case definitions for TACO and TRALI, respectively. With more comprehensive diagnostic strategies, adverse transfusion events can be better recognized from mimicking events and underlying disease. In addition, there are mitigation strategies in place to help prevent complications of blood product transfusion, with emphasis on the prevention of TACO and TRALI.ConclusionsTACO and TRALI are potentially fatal adverse complications of blood transfusion. Both have been historically underrecognized and underreported due to poor defining criteria and overlapping symptomatology. Developing a thorough clinical understanding between these two entities can improve hemovigilance reporting and can contribute to risk factor identification and preventative measures.

Từ khóa


Tài liệu tham khảo

Politis, 2016, The International Haemovigilance Network Database for the Surveillance of Adverse Reactions and Events in Donors and Recipients of Blood Components: technical issues and results, Vox Sang., 111, 409, 10.1111/vox.12447

CS, Technical Manual. Bethesda, MD: AABB; 2020.

Skeate, 2007, Distinguishing between transfusion related acute lung injury and transfusion associated circulatory overload, Curr Opin Hematol., 14, 682, 10.1097/MOH.0b013e3282ef195a

Roubinian, 2018, TACO and TRALI: biology, risk factors, and prevention strategies, Hematology Am Soc Hematol Educ Program., 2018, 585, 10.1182/asheducation-2018.1.585

Kopko, 2002, Transfusion-related acute lung injury: report of a clinical look-back investigation, JAMA., 287, 1968, 10.1001/jama.287.15.1968

Sahu, 2020;42:326-332, Determining the true incidence of acute transfusion reactions: active surveillance at a specialized liver center, Hematol Transfus Cell Ther., 10.1016/j.htct.2019.09.006

Vossoughi, 2018, Analysis of pediatric adverse reactions to transfusions, Transfusion., 58, 60, 10.1111/trf.14359

Oakley, 2015, Transfusion reactions in pediatric compared with adult patients: a look at rate, reaction type, and associated products, Transfusion., 55, 563, 10.1111/trf.12827

2016

Centers for Disease Control and Prevention., 2018

International Society of Blood Transfusion Working Party on Haemovigilance., 2018

Wiersum-Osselton, 2019, Revised international surveillance case definition of transfusion-associated circulatory overload: a classification agreement validation study, Lancet Haematol., 6, e350, 10.1016/S2352-3026(19)30080-8

Popovsky, 2013

Kevin, 2016

Semple, 2019, Transfusion-associated circulatory overload and transfusion-related acute lung injury, Blood., 133, 1840, 10.1182/blood-2018-10-860809

Vlaar, 2019, A consensus redefinition of transfusion-related acute lung injury, Transfusion., 59, 2465, 10.1111/trf.15311

Kumar, Robbins & Cotran Pathologic Basis of Disease., 9

Parmar, 2017, The association of fever with transfusion-associated circulatory overload, Vox Sang., 112, 70, 10.1111/vox.12473

Blumberg, 2010, An association between decreased cardiopulmonary complications (transfusion-related acute lung injury and transfusion-associated circulatory overload) and implementation of universal leukoreduction of blood transfusions, Transfusion., 50, 2738, 10.1111/j.1537-2995.2010.02748.x

Smid, 2018, Cardiogenic causes of fever, Dtsch Arztebl Int., 115, 193

Roubinian, 2015, Cytokines and clinical predictors in distinguishing pulmonary transfusion reactions, Transfusion., 55, 1838, 10.1111/trf.13021

Menis, 2014, Transfusion-associated circulatory overload (TACO) and potential risk factors among the inpatient US elderly as recorded in Medicare administrative databases during 2011, Vox Sang., 106, 144, 10.1111/vox.12070

De Cloedt, 2019, Transfusion-associated circulatory overload in ICUs: a scoping review of incidence, risk factors, and outcomes, Crit Care Med., 47, 849, 10.1097/CCM.0000000000003743

Lieberman, 2013, A retrospective review of patient factors, transfusion practices, and outcomes in patients with transfusion-associated circulatory overload, Transfus Med Rev., 27, 206, 10.1016/j.tmrv.2013.07.002

Raval, 2015, Passive reporting greatly underestimates the rate of transfusion-associated circulatory overload after platelet transfusion, Vox Sang., 108, 387, 10.1111/vox.12234

Roubinian, 2018, Contemporary risk factors and outcomes of transfusion-associated circulatory overload, Crit Care Med., 46, 577, 10.1097/CCM.0000000000002948

Hendrickson, 2016, Incidence of transfusion reactions: a multicenter study utilizing systematic active surveillance and expert adjudication, Transfusion., 56, 2587, 10.1111/trf.13730

Goel, 2019, Noninfectious transfusion-associated adverse events and their mitigation strategies, Blood., 133, 1831, 10.1182/blood-2018-10-833988

Bosboom, 2019, Transfusion-associated circulatory overload: a clinical perspective, Transfus Med Rev., 33, 69, 10.1016/j.tmrv.2019.01.003

Alam, 2013, The prevention of transfusion-associated circulatory overload, Transfus Med Rev., 27, 105, 10.1016/j.tmrv.2013.02.001

Yazer, 2019, Transfusion-associated circulatory overload risk mitigation: survey on hospital policies for compliance with AABB Standard 5.9.17, Transfusion., 59, 2833, 10.1111/trf.15478

AABB, 2018, Standards for Blood Banks and Transfusion Services., 31

Gupta, 1982, Left ventricular filling pressures after rapid blood transfusion in cases of chronic severe anemia, Angiology., 33, 343, 10.1177/000331978203300509

Gupta, 1983, Haemodynamic changes following blood transfusion in cases of chronic severe anemia: increased safety with simultaneous furosemide administration, Angiology., 34, 699, 10.1177/000331978303401102

Balegar V, 2011, Furosemide for packed red cell transfusion in preterm infants: a randomized controlled trial, J Pediatr., 159, 913, 10.1016/j.jpeds.2011.05.022

Pendergrast, 2019, Can furosemide prevent transfusion-associated circulatory overload? Results of a pilot, double-blind, randomized controlled trial, Transfusion., 59, 1997, 10.1111/trf.15270

Goldman, 2005, Proceedings of a consensus conference: towards an understanding of TRALI, Transfus Med Rev., 19, 2, 10.1016/j.tmrv.2004.10.001

Kleinman, 2004, Toward an understanding of transfusion-related acute lung injury: statement of a consensus panel, Transfusion., 44, 1774, 10.1111/j.0041-1132.2004.04347.x

Ranieri, 2012, Acute respiratory distress syndrome: the Berlin definition, JAMA., 307, 2526

Popovsky, 1985, Diagnostic and pathogenetic considerations in transfusion-related acute lung injury, Transfusion., 25, 573, 10.1046/j.1537-2995.1985.25686071434.x

Bux, 2005, Transfusion-related acute lung injury (TRALI): a serious adverse event of blood transfusion, Vox Sang., 89, 1, 10.1111/j.1423-0410.2005.00648.x

Looney, 2006, Animal models of transfusion-related acute lung injury, Crit Care Med., 34, S132, 10.1097/01.CCM.0000214287.58444.2D

Sachs, 2006, Antibody-induced neutrophil activation as a trigger for transfusion-related acute lung injury in an ex vivo rat lung model, Blood., 107, 1217, 10.1182/blood-2005-04-1744

Kelher, 2009, Plasma from stored packed red blood cells and MHC class I antibodies causes acute lung injury in a 2-event in vivo rat model, Blood., 113, 2079, 10.1182/blood-2008-09-177857

Gilliss, 2011, Experimental models of transfusion-related acute lung injury, Transfus Med Rev., 25, 1, 10.1016/j.tmrv.2010.08.002

Roubinian, 2018, TACO and TRALI: biology, risk factors, and prevention studies. Hematology Am Soc Hematol Educ Program, 585

Kapur, 2015, C-reactive protein enhances murine antibody-mediated transfusion-related acute lung injury, Blood., 126, 2747, 10.1182/blood-2015-09-672592

Looney, 2004, Transfusion-related acute lung injury: a review, Chest., 126, 249, 10.1378/chest.126.1.249

Wyman, 2002, A two-insult in vitro model of PMN-mediated pulmonary endothelial damage: requirements for adherence and chemokine release, Am J Physiol Cell Physiol., 283, C1592, 10.1152/ajpcell.00540.2001

Otrock, 2017, Transfusion-related acute lung injury risk mitigation: an update, Vox Sang., 112, 694, 10.1111/vox.12573

Schmickl, 2015, Male-predominant plasma transfusion strategy for preventing transfusion-related acute lung injury: a systematic review, Crit Care Med., 43, 205, 10.1097/CCM.0000000000000675

Müller, 2015, Low-risk transfusion-related acute lung injury donor strategies and the impact on the onset of transfusion-related acute lung injury: a meta-analysis, Transfusion., 55, 164, 10.1111/trf.12816

Sachs, 2005, White blood cell-reactive antibodies are undetectable in solvent/detergent plasma, Transfusion., 45, 1628, 10.1111/j.1537-2995.2005.00587.x

Sinnott, 2004, Presence of HLA antibodies in single-donor-derived fresh frozen plasma compared with pooled, solvent detergent-treated plasma (Octaplas), Eur J Immunogenet., 31, 271, 10.1111/j.1365-2370.2004.00481.x

van der Meer, 2018, Platelet additive solutions: a review of the latest developments and their clinical implications, Transfus Med Hemother., 45, 98, 10.1159/000487513

Silliman, 2003, Transfusion-related acute lung injury: epidemiology and a prospective analysis of etiologic factors, Blood., 101, 454, 10.1182/blood-2002-03-0958

Klanderman, 2019, Transfusion-associated circulatory overload—a systematic review of diagnostic biomarkers, Transfusion., 59, 795, 10.1111/trf.15068

The accuracy of natriuretic peptides (BNP and NTproBNP) in the differentiation between transfusion related acute lung injury (TRALI) and transfusion related circulatory overload (TACO) in the critically ill, Transfusion., 49, 13, 10.1111/j.1537-2995.2008.01941.x