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Role of p38 mitogen-activated protein kinase in posttraumatic immunosuppression in mice
Nadine Ding1, Katja Dahlke, Ann-Kathrin Janze
1Department of Experimental Pneumology, Hannover School of Medicine, Hannover, Germany.
Background:
Patients with multiple injuries surviving the initial insult are highly susceptible to secondary pneumonia, frequently progressing into sepsis and multiorgan failure. However, the underlying mechanisms of posttraumatic immunosuppression are poorly understood. We hypothesized that dysregulated p38 mitogen-activated protein kinase (MAPK) signaling accounts for impaired lung protective immunity in a model of trauma/hemorrhage (T/H) and subsequent pneumococcal pneumonia in mice.
Methods:
C57BL6/N mice were subjected to trauma by midline laparotomy, and T/H was induced by midline laparotomy followed by cannulation of femoral arteries and veins to induce hemorrhage. Subsequently, mice were infected with Streptococcus pneumoniae. In selected experiments, mice were treated with a p38 MAPK inhibitor or vehicle control immediately after induction of T/H.
Results:
Mice subjected to T/H showed significantly increased p38 MAPK activation in their lungs, which was accompanied by a reduced Escherichia coli phagocytosis by macrophages from T/H mice in vitro and an impaired pneumococcal killing activity of T/H mice in vivo, overall resulting in increased mortality of T/H mice after infection with S. pneumoniae. Application of p38 MAPK inhibitor BIRB796 immediately after T/H induction improved the bacterial phagocytosis activity of macrophages from T/H mice in vitro and lung pneumococcal killing in vivo but did not improve the survival of T/H mice challenged with S. pneumoniae.
Conclusion:
T/H triggers sustained p38 MAPK activation in the lungs of mice, which attenuates lung macrophage antibacterial activities and renders mice more susceptible to pneumococcal pneumonia. However, no major role for dysregulated p38 MAPK to affect survival of T/H mice after pneumococcal challenge was detected, suggesting that dysregulated p38 MAPK activity may possibly play only a limited role in posttraumatic immunosuppression in mice.
Insights
Trauma and hemorrhage (T/H) increase p38 MAPK lung activation, impairing macrophage antibacterial activity and increasing pneumonia susceptibility. However, p38 MAPK inhibition did not improve survival in this mouse model.
Area of Science:
- Immunology
- Trauma Research
- Pulmonary Medicine
Background:
- Patients with multiple injuries face high risks of secondary pneumonia, sepsis, and organ failure.
- Mechanisms of post-traumatic immunosuppression remain poorly understood.
- This study investigates the role of p38 mitogen-activated protein kinase (MAPK) signaling in lung immunity following trauma/hemorrhage (T/H).
Purpose of the Study:
- To test the hypothesis that dysregulated p38 MAPK signaling impairs lung protective immunity after T/H.
- To evaluate the impact of T/H on susceptibility to pneumococcal pneumonia in mice.
- To assess the therapeutic potential of p38 MAPK inhibition.
Main Methods:
- Mice underwent T/H induction via laparotomy and hemorrhage.
- Mice were subsequently infected with Streptococcus pneumoniae.
- Selected groups received a p38 MAPK inhibitor (BIRB796) or vehicle control post-T/H.
Main Results:
- T/H significantly increased lung p38 MAPK activation in mice.
- Macrophage phagocytosis and in vivo bacterial killing were impaired post-T/H.
- p38 MAPK inhibition improved bacterial clearance but not survival after pneumococcal challenge.
Conclusions:
- Sustained p38 MAPK activation in T/H mice attenuates lung antibacterial activity, increasing pneumonia susceptibility.
- Dysregulated p38 MAPK signaling appears to play a limited role in post-T/H survival.
- Further research is needed to elucidate the full mechanisms of post-traumatic immunosuppression.
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