Artikel ; Online: A pulmonary endothelial amplification loop aggravates ex-vivo transfusion-related acute lung injury via increased toll-like receptor 4 and intra-cellular adhesion molecule-1 expression.
2022 Band 62, Heft 10, Seite(n) 1961–1966
Abstract: Background: Transfusion-Related Acute Lung Injury (TRALI) is a life-threatening complication of blood transfusions characterized by pulmonary endothelial cell damage and edema, with a high incidence in critically ill patients. The pathophysiology of ... ...
Abstract | Background: Transfusion-Related Acute Lung Injury (TRALI) is a life-threatening complication of blood transfusions characterized by pulmonary endothelial cell damage and edema, with a high incidence in critically ill patients. The pathophysiology of TRALI is unresolved, but can generally be hypothesized to follow a 2-hit model in which the first hit is elicited by the underlying clinical condition of the patient (e.g., inflammation, which can be reflected by LPS in experimental models), and the second hit is delivered by the blood transfusion product (e.g., HLA class I antibodies). Here, we report a synergistic role for LPS and HLA class I antibody binding to pulmonary endothelium resulting in enhanced inflammatory responses. Materials and methods: Pulmonary endothelial cells were treated with PBS or low-dose LPS, exclusively or in combination with anti-HLA class I. Endothelial surface expression of HLA class I, TLR4, and inflammatory marker ICAM-1 were measured, and trans-endothelial migration (TEM) of neutrophils was investigated. Results: LPS treatment of pulmonary endothelium enhanced HLA class I antibody binding, and combined LPS and HLA class I antibody binding enhanced TLR4 (LPS receptor) and ICAM-1 expression on the endothelial cell surface. Low-dose LPS and HLA antibody together also increased neutrophil TEM under physiological flow by on average 5-fold. Conclusion: We conclude that LPS and anti-HLA class I antibody have the ability to activate the pulmonary endothelium into a spiral of increasing inflammation, opening the opportunity to potentially block TLR4 to prevent or reduce the severity of TRALI in vivo. |
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Mesh-Begriff(e) | Endothelial Cells ; Endothelium ; Humans ; Inflammation ; Intercellular Adhesion Molecule-1 ; Lipopolysaccharide Receptors ; Lipopolysaccharides/pharmacology ; Toll-Like Receptor 4 ; Transfusion Reaction ; Transfusion-Related Acute Lung Injury/etiology |
Chemische Substanzen | Lipopolysaccharide Receptors ; Lipopolysaccharides ; Toll-Like Receptor 4 ; Intercellular Adhesion Molecule-1 (126547-89-5) |
Sprache | Englisch |
Erscheinungsdatum | 2022-08-25 |
Erscheinungsland | United States |
Dokumenttyp | Journal Article ; Research Support, Non-U.S. Gov't |
ZDB-ID | 208417-x |
ISSN | 1537-2995 ; 0041-1132 |
ISSN (online) | 1537-2995 |
ISSN | 0041-1132 |
DOI | 10.1111/trf.17076 |
Datenquelle | MEDical Literature Analysis and Retrieval System OnLINE |
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