Key result
TM(pro/pro) mice with reduced capacity to generate activated protein C displayed unaltered pulmonary procoagulant responses, antibacterial defense, and inflammation during pneumonia or LPS exposure.
The capacity of thrombomodulin to generate activated protein C does not play a significant role in the pulmonary immune response to respiratory pathogens or LPS in mice.
Does not support targeting thrombomodulin-protein C axis in pneumonia; leaves open translation to humans or other models.
The thrombomodulin-protein C-protein S (TM-PC-PS) pathway exerts anticoagulant and anti-inflammatory effects. We investigated the role of TM in the pulmonary immune response in vivo by the use of mice with a mutation in the TM gene (TM(pro/pro)) that was earlier found to result in a minimal capacity for activated PC (APC) generation in the circulation. We here demonstrate that TM(pro/pro) mice also display a strongly reduced capacity to produce APC in the alveolar compartment upon intrapulmonary delivery of PC and thrombin. We monitored procoagulant and inflammatory changes in the lung during Gram-positive (Streptococcus pneumoniae) and Gram-negative (Klebsiella pneumoniae) pneumonia and after local administration of lipopolysaccharide (LPS). Bacterial pneumonia was associated with fibrin(ogen) depositions in the lung that colocalized with inflammatory infiltrates. LPS also induced a rise in thrombin-antithrombin complexes in bronchoalveolar lavage fluid. These pulmonary procoagulant responses were unaltered in TM(pro/pro) mice, except for enhanced fibrin(ogen) deposition during pneumococcal pneumonia. In addition, TM(pro/pro) mice displayed unchanged antibacterial defense, neutrophil recruitment, and cytokine/chemokine levels. These data suggest that the capacity of TM to generate APC does not play a role of importance in the pulmonary response to respiratory pathogens or LPS.
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Rijneveld et al. (2003) studied Pneumonia and lipopolysaccharide exposure. TM(pro/pro) mutation vs. Wild-type mice (implied) was evaluated on Pulmonary immune response (procoagulant and inflammatory changes, antibacterial defense, neutrophil recruitment). TM(pro/pro) mice with reduced capacity to generate activated protein C displayed unaltered pulmonary procoagulant responses, antibacterial defense, and inflammation during pneumonia or LPS exposure.
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