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S100A8/A9 Drives Neuroinflammatory Priming and Protects against Anxiety-like Behavior after Sepsis
Scott J Denstaedt1, Joanna L Spencer-Segal2,3, Michael W Newstead1
1Division of Pulmonary and Critical Care Medicine, Department of Internal Medicine, University of Michigan Medical School, Ann Arbor, MI 48109.
Abstract:
Sepsis commonly results in acute and chronic brain dysfunction, which dramatically increases the morbidity associated with this common disease. Chronic brain dysfunction in animal models of sepsis survival is linked to persistent neuroinflammation and expression of multiple cytokines. However, we have found previously that microglia predominantly upregulate the damage associated molecule S100A8/A9 after sepsis. In this article, we show that S100A8/A9 is increased in the brains of patients who died of sepsis and that S100A8 is expressed in astrocytes and myeloid cells. Using a mouse model of sepsis survival, we show that S100A8/A9 is persistently expressed in the brain after sepsis. S100A9 expression is necessary for recruitment of neutrophils to the brain and for priming production of reactive oxygen species and TNF-α secretion in microglia and macrophages. However, despite improving these indices of chronic inflammation, S100A9 deficiency results in worsened anxiety-like behavior 2 wk after sepsis. Taken together, these results indicate that S100A8/A9 contributes to several facets of neuroinflammation in sepsis survivor mice, including granulocyte recruitment and priming of microglial-reactive oxygen species and cytokine production, and that these processes may be protective against anxiety behavior in sepsis survivors.
Insights
Sepsis survivors exhibit persistent brain expression of S100A8/A9, a molecule crucial for neuroinflammation and protective against anxiety-like behaviors in mice.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Sepsis frequently causes acute and chronic brain dysfunction, increasing patient morbidity.
- Persistent neuroinflammation and cytokine expression are linked to chronic brain dysfunction post-sepsis.
Purpose of the Study:
- To investigate the role of S100A8/A9 in sepsis-induced neuroinflammation and associated behavioral changes.
- To determine the cellular sources and functional significance of S100A8/A9 in the septic brain.
Main Methods:
- Analysis of S100A8/A9 expression in human sepsis patient brains and a mouse model of sepsis survival.
- Utilizing S100A9-deficient mice to assess its necessity for neuroinflammation and behavior.
Main Results:
- S100A8/A9 is elevated in human sepsis brains and persistently expressed in mouse brains post-sepsis.
- S100A9 deficiency impairs neutrophil recruitment to the brain and microglial/macrophage priming of reactive oxygen species and TNF-α.
- Despite reduced inflammation markers, S100A9 deficiency exacerbates anxiety-like behavior in sepsis survivor mice.
Conclusions:
- S100A8/A9 plays a significant role in sepsis-induced neuroinflammation, including immune cell recruitment and inflammatory priming.
- These S100A8/A9-mediated inflammatory processes appear protective against anxiety-like behaviors in sepsis survivors.
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