Key result
Intrabronchial administration of rhAPC unexpectedly enhanced LPS-induced coagulation activation and pro-inflammatory responses compared with saline control.
Why the study?
Does intrabronchial activated protein C alter LPS-induced coagulation and inflammation in the human bronchoalveolar space?
Does intrabronchial activated protein C alter LPS-induced coagulation and inflammation in the human bronchoalveolar space?
Intrabronchial administration of rhAPC unexpectedly worsens coagulation and inflammation in LPS-challenged human lungs, arguing against its use for lung inflammatory disorders.
Caution against intrabronchial rhAPC in lung inflammation; challenges therapeutic assumptions and leaves open alternative routes or contexts.
Intravenous administration of activated protein C (APC) inhibits coagulation and inflammation in the lungs of humans and animals. Investigations in rodents demonstrated that direct intrapulmonary delivery of APC also exerts anticoagulant and anti-inflammatory effects. The effect of intrabronchial administration of recombinant human (rh)APC on lipopolysaccharide (LPS)-induced haemostatic and inflammatory alterations in the bronchoalveolar space of humans was studied. Eight subjects received rhAPC via intrabronchial instillation by bronchoscope, while in a contralateral subsegment subjects received saline; all subjects were challenged bilaterally with LPS in the same lung subsegments. Four additional subjects received rhAPC (75 μg), with saline as a control in the contralateral subsegment, while they were bilaterally "challenged" with saline. After 6 h a bronchoalveolar lavage was performed and coagulation and inflammatory parameters were measured. rhAPC enhanced LPS-induced coagulation activation in the bronchoalveolar space, when compared with the control side. In addition, rhAPC amplified LPS-induced pro-inflammatory responses, as indicated by higher concentrations of cytokines and chemokines. rhAPC alone did not have procoagulant or pro-inflammatory effects. Locally administered rhAPC has unexpected procoagulant and pro-inflammatory effects in LPS-challenged lung subsegments. These data argue against a role for intrapulmonary delivery of rhAPC as a treatment strategy for lung inflammatory disorders in humans.
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Kager et al. (2012) studied this question. Intrabronchial recombinant human activated protein C (rhAPC) vs. Saline was evaluated on Coagulation and inflammatory parameters in the bronchoalveolar space. Intrabronchial administration of rhAPC unexpectedly enhanced LPS-induced coagulation activation and pro-inflammatory responses compared with saline control.
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