Javascript must be enabled to continue!
Recombinant thrombomodulin and recombinant antithrombin attenuate pulmonary endothelial glycocalyx degradation and neutrophil extracellular trap formation in ventilator-induced lung injury
View through CrossRef
Abstract
Background: Vascular endothelial damage is involved in the development and exacerbation of ventilator-induced lung injury (VILI). Pulmonary endothelial glycocalyx and neutrophil extracellular traps (NETs) are endothelial protective and damaging factors, respectively; however, their dynamics in VILI and the effects of recombinant thrombomodulin and antithrombin on these dynamics remain unclear. We hypothesized that glycocalyx degradation and NETs are induced by VILI and suppressed by recombinant thrombomodulin, recombinant antithrombin, or their combination.
Methods: VILI was induced in male C57BL/6J mice by intraperitoneal lipopolysaccharide injection (20 mg/kg) and high tidal volume ventilation (20 mL/kg). In the intervention groups, recombinant thrombomodulin, recombinant antithrombin, or their combination was administered at the start of mechanical ventilation. Glycocalyx degradation was quantified by measuring serum syndecan-1, fluorescence-labeled lectin intensity, and glycocalyx-occupied area in the pulmonary vascular lumen. Double-stranded DNA in the bronchoalveolar fluid and fluorescent areas of citrullinated histone H3 and myeloperoxidase were quantified as NET formation.
Results: Serum syndecan-1 increased, and lectin fluorescence intensity decreased in VILI. Electron microscopy revealed decreases in glycocalyx-occupied areas within pulmonary microvessels in VILI. Double-stranded DNA levels in the bronchoalveolar lavage fluid and the fluorescent area of citrullinated histone H3 and myeloperoxidase in lung tissues increased in VILI. Recombinant thrombomodulin, recombinant antithrombin, and their combination reduced glycocalyx injury and NET marker levels. There was little difference in glycocalyx injury and NET makers between the intervention groups.
Conclusion: VILI induced glycocalyx degradation and NET formation. Recombinant thrombomodulin and recombinant antithrombin attenuated glycocalyx degradation and NETs in our VILI model. The effect of their combination did not differ from that of either drug alone. Recombinant thrombomodulin and antithrombin have the potential to be therapeutic agents for biotrauma in VILI.
Title: Recombinant thrombomodulin and recombinant antithrombin attenuate pulmonary endothelial glycocalyx degradation and neutrophil extracellular trap formation in ventilator-induced lung injury
Description:
Abstract
Background: Vascular endothelial damage is involved in the development and exacerbation of ventilator-induced lung injury (VILI).
Pulmonary endothelial glycocalyx and neutrophil extracellular traps (NETs) are endothelial protective and damaging factors, respectively; however, their dynamics in VILI and the effects of recombinant thrombomodulin and antithrombin on these dynamics remain unclear.
We hypothesized that glycocalyx degradation and NETs are induced by VILI and suppressed by recombinant thrombomodulin, recombinant antithrombin, or their combination.
Methods: VILI was induced in male C57BL/6J mice by intraperitoneal lipopolysaccharide injection (20 mg/kg) and high tidal volume ventilation (20 mL/kg).
In the intervention groups, recombinant thrombomodulin, recombinant antithrombin, or their combination was administered at the start of mechanical ventilation.
Glycocalyx degradation was quantified by measuring serum syndecan-1, fluorescence-labeled lectin intensity, and glycocalyx-occupied area in the pulmonary vascular lumen.
Double-stranded DNA in the bronchoalveolar fluid and fluorescent areas of citrullinated histone H3 and myeloperoxidase were quantified as NET formation.
Results: Serum syndecan-1 increased, and lectin fluorescence intensity decreased in VILI.
Electron microscopy revealed decreases in glycocalyx-occupied areas within pulmonary microvessels in VILI.
Double-stranded DNA levels in the bronchoalveolar lavage fluid and the fluorescent area of citrullinated histone H3 and myeloperoxidase in lung tissues increased in VILI.
Recombinant thrombomodulin, recombinant antithrombin, and their combination reduced glycocalyx injury and NET marker levels.
There was little difference in glycocalyx injury and NET makers between the intervention groups.
Conclusion: VILI induced glycocalyx degradation and NET formation.
Recombinant thrombomodulin and recombinant antithrombin attenuated glycocalyx degradation and NETs in our VILI model.
The effect of their combination did not differ from that of either drug alone.
Recombinant thrombomodulin and antithrombin have the potential to be therapeutic agents for biotrauma in VILI.
Related Results
Blunt Chest Trauma and Chylothorax: A Systematic Review
Blunt Chest Trauma and Chylothorax: A Systematic Review
Abstract
Introduction: Although traumatic chylothorax is predominantly associated with penetrating injuries, instances following blunt trauma, as a rare and challenging condition, ...
Heat stress combined with lipopolysaccharide induces pulmonary microvascular endothelial cell glycocalyx inflammatory damage in vitro
Heat stress combined with lipopolysaccharide induces pulmonary microvascular endothelial cell glycocalyx inflammatory damage in vitro
Heat stroke is a life-threatening disease with high mortality rate and
unexpected complications. Vascular endothelial glycocalyx is essential
for maintaining endothelial cell struc...
Combined Electron Microscopy Approaches for Arterial Glycocalyx Visualization
Combined Electron Microscopy Approaches for Arterial Glycocalyx Visualization
Mainly constituted of glycosaminoglycans and proteoglycans, the glycocalyx is anchored in the plasma membrane, covering, in particular, the extracellular face of the arterial endot...
ROLE OF ENDOTHELIAL GLYCOCALYX DISRUPTION IN ATHEROSCLEROSIS PROGRESSION
ROLE OF ENDOTHELIAL GLYCOCALYX DISRUPTION IN ATHEROSCLEROSIS PROGRESSION
Endothelial glycocalyx disruption is increasingly recognized as a critical event in the pathogenesis of atherosclerosis. This study aimed to investigate the clinical, biochemical, ...
Metabolic Glycoengineering Enables the Ultrastructural Visualization of Sialic Acids in the Glycocalyx of the Alveolar Epithelial Cell Line hAELVi
Metabolic Glycoengineering Enables the Ultrastructural Visualization of Sialic Acids in the Glycocalyx of the Alveolar Epithelial Cell Line hAELVi
The glycocalyx—a plethora of sugars forming a dense layer that covers the cell membrane—is commonly found on the epithelial surface of lumen forming tissue. New glycocalyx specific...
Influence of Endothelial Glycocalyx Degradation and Surfactants on Air Embolism Adhesion
Influence of Endothelial Glycocalyx Degradation and Surfactants on Air Embolism Adhesion
Background
Microbubble adherence to endothelial cells is enhanced after damage to the glycocalyx. The authors tested the hypothesis that exogenous surfactants delivered...
Keanekaragaman Serangga Yang Berpotensi Hama Di Hutan Pendidikan Universitas Jambi
Keanekaragaman Serangga Yang Berpotensi Hama Di Hutan Pendidikan Universitas Jambi
ABSTRACT
This research is to identify the types of insect pests with four trapping methods, there are Sweep Net Trap, Pit Fall Trap, Yellow Paper Trap, and Light Trap. This researc...
Oxidized phospholipids reduce ventilator-induced vascular leak and inflammation in vivo
Oxidized phospholipids reduce ventilator-induced vascular leak and inflammation in vivo
Abstract
Background
Mechanical ventilation at high tidal volume (HTV) may cause pulmonary capillary leakage and acute lung inflammat...

