Loss of C3 and CD14 reduces region-specific neuroinflammation in a murine polytrauma model

Abstract Background TBI-polytrauma (P-TBI) is associated with acute neurological deterioration, delirium, and poor prognosis. Systemic inflammatory mediators are thought to amplify the cerebral neuroimmune response, particularly microglial activation, with detrimental consequences. Methods We investigated the roles of complement factor C3 and the TLR co-receptor CD14 in a murine polytrauma model combining mild TBI with femur fracture, blunt thorax trauma, and resuscitated haemorrhagic shock, using mice lacking C3, CD14, or both. Results P-TBI induced a rapid, brain-wide increase in inflammatory cytokines with region-specific patterns. TNF and CCL2 mRNA were upregulated in microglia in the cortex, hippocampus, and striatum, and this response was abolished in C3 −/− CD14 −/− mice. Analysis of single knockouts showed that cytokine induction depended on CD14 in the cortex, C3 in the striatum, and both in the hippocampus. In contrast, neither C3 nor CD14 influenced cytokine induction at the cortical lesion site. Interestingly, neuronal cFOS responses showed an inverse regional C3/CD14 dependency compared with inflammatory cytokine responses, with a cortical C3 dependency and striatal CD14 dependency. Conclusion Thus, C3 and CD14 are dispensable for the acute response at the injury site but differentially regulate microglial and neuronal activation in remote brain regions, representing potential targets to reduce P-TBI–associated encephalopathy.

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Publication Details

Journal
Inflammation Research
Published
2026-09-24
DOI
https://doi.org/10.1007/s00011-026-02367-7
Primary Topic
Neuroinflammation and Neurodegeneration Mechanisms
Type
article
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article

Loss of C3 and CD14 reduces region-specific neuroinflammation in a murine polytrauma model

Zongren Zhao, Marica Pagliarini, Jin Zhang, Francesco Roselli et al.
Inflammation Research
Neuroinflammation and Neurodegeneration Mechanisms
article

Loss of C3 and CD14 reduces region-specific neuroinflammation in a murine polytrauma model

Zongren Zhao, Marica Pagliarini, Jin Zhang, Francesco Roselli, Ludmila Lupu, Bernd Knöll, Tobias M. Boeckers, Rebecca Halbgebauer, Egil Lien, Marco Mannes, Florian Olde Heuvel, Likun Cui, Markus Huber-Lang, Fan Sun, Tom Eirik Mollnes
article en

Abstract

Abstract Background TBI-polytrauma (P-TBI) is associated with acute neurological deterioration, delirium, and poor prognosis. Systemic inflammatory mediators are thought to amplify the cerebral neuroimmune response, particularly microglial activation, with detrimental consequences. Methods We investigated the roles of complement factor C3 and the TLR co-receptor CD14 in a murine polytrauma model combining mild TBI with femur fracture, blunt thorax trauma, and resuscitated haemorrhagic shock, using mice lacking C3, CD14, or both. Results P-TBI induced a rapid, brain-wide increase in inflammatory cytokines with region-specific patterns. TNF and CCL2 mRNA were upregulated in microglia in the cortex, hippocampus, and striatum, and this response was abolished in C3 −/− CD14 −/− mice. Analysis of single knockouts showed that cytokine induction depended on CD14 in the cortex, C3 in the striatum, and both in the hippocampus. In contrast, neither C3 nor CD14 influenced cytokine induction at the cortical lesion site. Interestingly, neuronal cFOS responses showed an inverse regional C3/CD14 dependency compared with inflammatory cytokine responses, with a cortical C3 dependency and striatal CD14 dependency. Conclusion Thus, C3 and CD14 are dispensable for the acute response at the injury site but differentially regulate microglial and neuronal activation in remote brain regions, representing potential targets to reduce P-TBI–associated encephalopathy.

Inflammation ResearchVol. 75(1)
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Openalex Percentile: Top 14%
Neuroinflammation and Neurodegeneration Mechanisms
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