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Citations to this article

Neutrophils and their Fcγ receptors are essential in a mouse model of transfusion-related acute lung injury
Mark R. Looney, … , Clifford A. Lowell, Michael A. Matthay
Mark R. Looney, … , Clifford A. Lowell, Michael A. Matthay
Published June 1, 2006
Citation Information: J Clin Invest. 2006;116(6):1615-1623. https://doi.org/10.1172/JCI27238.
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Research Article Pulmonology

Neutrophils and their Fcγ receptors are essential in a mouse model of transfusion-related acute lung injury

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Abstract

Transfusion-related acute lung injury (TRALI) is the most common cause of transfusion-related mortality. To explore the pathogenesis of TRALI, we developed an in vivo mouse model based on the passive transfusion of an MHC class I (MHC I) mAb (H2Kd) to mice with the cognate antigen. Transfusion of the MHC I mAb to BALB/c mice produced acute lung injury with increased excess lung water, increased lung vascular and lung epithelial permeability to protein, and decreased alveolar fluid clearance. There was 50% mortality at a 2-hour time point after Ab administration. Pulmonary histology and immunohistochemistry revealed prominent neutrophil sequestration in the lung microvasculature that occurred concomitantly with acute peripheral blood neutropenia, all within 2 hours of administration of the mAb. Depletion of neutrophils by injection of anti-granulocyte mAb Gr-1 protected mice from lung injury following MHC I mAb challenge. FcRγ–/– mice were resistant to MHC I mAb–induced lung injury, while adoptive transfer of wild-type neutrophils into the FcRγ–/– animals restored lung injury following MHC I mAb challenge. In conclusion, in a clinically relevant in vivo mouse model of TRALI using an MHC I mAb, the mechanism of lung injury was dependent on neutrophils and their Fcγ receptors.

Authors

Mark R. Looney, Xiao Su, Jessica A. Van Ziffle, Clifford A. Lowell, Michael A. Matthay

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Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 2006 Total
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Nature Medicine 2009
Regulation of inflammation by Rac2 in immune complex-mediated acute lung injury
JL Dooley, D Abdel-Latif, CD st Laurent, L Puttagunta, D Befus, P Lacy
American journal of physiology. Lung cellular and molecular physiology 2009
The role of neutrophils in the pathogenesis of transfusion-related acute lung injury
YL Fung, CC Silliman
Transfusion Medicine Reviews 2009
Receptor for advanced glycation end-products (RAGE) is an indicator of direct lung injury in models of experimental lung injury
X Su, MR Looney, N Gupta, MA Matthay
American journal of physiology. Lung cellular and molecular physiology 2009
Transfusion-related acute lung injury (TRALI): a clinical review with emphasis on the critically ill
AB Benson, M Moss, CC Silliman
British Journal of Haematology 2009
Role of coagulation pathways and treatment with activated protein C in hyperoxic lung injury
MR Looney, CT Esmon, MA Matthay
Thorax 2009
Defects in Innate Immunity Predispose C57BL/6J- Leprdb / Leprdb Mice to Infection by Staphylococcus aureus
S Park, J Rich, F Hanses, JC Lee
Infection and immunity 2009
Mobilization and Margination of Bone Marrow Gr-1high Monocytes during Sub-clinical Endotoxemia Predisposes the Lungs towards Acute Injury
O\u2019Dea KP, Wilson MR, Dokpesi JO, Wakabayashi K, Tatton L, van Rooijen N, Takata M
Journal of immunology (Baltimore, Md. : 1950) 2009
Matrix metalloproteinase-7 (matrilysin) controls neutrophil egress by generating chemokine gradients
M Swee, CL Wilson, Y Wang, JK McGuire, WC Parks
Journal of leukocyte biology 2008
Amicus or adversary: platelets in lung biology, acute injury, and inflammation
FA Bozza, AM Shah, AS Weyrich, GA Zimmerman
American journal of respiratory cell and molecular biology 2008
Epithelial Cell Apoptosis and Neutrophil Recruitment in Acute Lung Injury—A Unifying Hypothesis? What We Have Learned from Small Interfering RNAs
M Perl, J Lomas-Neira, CS Chung, A Ayala
Molecular Medicine 2008
Update on pathogenic mechanisms of systemic necrotizing vasculitis
MI Danila, SL Bridges
Current Rheumatology Reports 2008
DAP12 couples c-Fms activation to the osteoclast cytoskeleton by recruitment of Syk
W Zou, JL Reeve, Y Liu, SL Teitelbaum, FP Ross
Molecular Cell 2008
Galectin-3 reduces the severity of pneumococcal pneumonia by augmenting neutrophil function
SL Farnworth, NC Henderson, AC Mackinnon, KM Atkinson, T Wilkinson, K Dhaliwal, K Hayashi, AJ Simpson, AG Rossi, C Haslett, T Sethi
The American Journal of Pathology 2008
Endothelial pathomechanisms in acute lung injury
NA Maniatis, A Kotanidou, JD Catravas, SE Orfanos
Vascular Pharmacology 2008
CD47 Deficiency Protects Mice from Lipopolysaccharide-Induced Acute Lung Injury and Escherichia coli Pneumonia
Su X, Johansen M, Looney MR, Brown EJ, Matthay MA
Journal of immunology (Baltimore, Md. : 1950) 2008
TRALI--definition, mechanisms, incidence and clinical relevance
P Toy, C Lowell
Best practice & research. Clinical anaesthesiology 2007
Alveolar fluid clearance in acute lung injury: what have we learned from animal models and clinical studies?
RE Morty, O Eickelberg, W Seeger
Intensive Care Medicine 2007
Leukocyte Antigen and Antibody Detection Assays: Tools for Assessing and Preventing Pulmonary Transfusion Reactions
DF Stroncek, E Fadeyi, S Adams
Transfusion Medicine Reviews 2007
Transfusion-related acute lung injury in the critically ill: prospective nested case-control study
O Gajic, R Rana, JL Winters, M Yilmaz, JL Mendez, OB Rickman, MM O'Byrne, LK Evenson, M Malinchoc, SR DeGoey, B Afessa, RD Hubmayr, SB Moore
American journal of respiratory and critical care medicine 2007
Newly Recognized Causes of Acute Lung Injury: Transfusion of Blood Products, Severe Acute Respiratory Syndrome, and Avian Influenza
MR Looney
Clinics in Chest Medicine 2006
Donor antibodies to HNA-3a implicated in TRALI reactions prime neutrophils and cause PMN-mediated damage to human pulmonary microvascular endothelial cells in a two-event in vitro model
CC Silliman, BR Curtis, PM Kopko, SY Khan, MR Kelher, RM Schuller, B Sannoh, DR Ambruso
Blood 2006

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