Exacerbated immune response of the brain to peripheral immune challenge in post-septic mice
Hossein Salmani1, Mahmoud Hosseini2, Mohammad Mahdi Nabi3
1Division of Neurocognitive Sciences, Psychiatry and Behavioral Sciences Research Center, Mashhad University of Medical Sciences, Mashhad, Iran; Student Research Committee, Jiroft University of Medical Sciences, Jiroft, Iran.
Background:
Mounting evidence indicates that sepsis can induce long-lasting brain dysfunction. Recently, it has been proposed that the brain may become more sensitive to systemic inflammation if microglial cells are already primed. Microglial priming has been demonstrated in aging, traumatic brain injury, and neurodegenerative diseases. There is evidence suggesting that systemic inflammation may also prime microglia. This study aimed to investigate the brain's response to a second immune challenge in sepsis survivors and the possible role of microglial priming.
Methods:
Adult BALB/c mice were intraperitoneally (ip) injected with 5 mg/kg lipopolysaccharide (LPS) for sepsis induction. One month later, mice received a second immune challenge (LPS, 0.33 mg/kg). A cohort of mice was sacrificed 2 h post-LPS injection to measure inflammatory mediators mRNA expression. The second cohort of mice was tested on a battery of behavioral tests and then sacrificed, and brain tissues were removed for biochemical analyses.
Results:
Results showed that in septic mice, secondary LPS challenge induced heightened neuroinflammation compared to the control mice, as evident by a significant increase of IL-1β, TNF-α, and iNOS mRNA expression. In the immunochallenged septic mice, the anti-inflammatory cytokine IL-10 expression was also significantly increased compared to the control mice. Sepsis induction significantly disrupted the recognition ability in the novel object recognition, but the second immune challenge had no significant effect. However, immunochallenged septic mice exhibited more anxiety-like behavior in the marble burying task and intensive depressive-like behavior in the forced swim test. Additionally, the second immune challenge reduced arginase-1 levels in septic but not control mice. On the other hand, CIITA levels were increased more significantly in the LPS injected control mice compared to septic mice. Neither sepsis nor the second immune challenge significantly affected inhibitory avoidance behavior and Aβ1-42 levels in brain tissue.
Conclusion:
Our finding suggests that low-grade immune challenge can induce exacerbated behavioral change and exaggerated inflammatory response in the brain of post-septic mice.
Insights
Sepsis survivors exhibit heightened brain inflammation and exaggerated behavioral changes, including anxiety and depression, following a secondary immune challenge. This suggests that prior sepsis can prime the brain, making it more susceptible to subsequent inflammatory insults.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Sepsis can cause long-term brain dysfunction.
- Microglial cells in the brain may become primed by systemic inflammation, increasing sensitivity.
- Microglial priming is observed in aging, brain injury, and neurodegenerative diseases.
Purpose of the Study:
- To investigate the brain's response to a secondary immune challenge in sepsis survivors.
- To explore the role of microglial priming in sepsis-induced long-lasting brain dysfunction.
Main Methods:
- Adult mice underwent sepsis induction via lipopolysaccharide (LPS) injection.
- One month later, mice received a second LPS challenge.
- Brain tissue and behavior were analyzed for inflammatory markers and functional changes.
Main Results:
- Secondary LPS challenge heightened neuroinflammation in septic mice, increasing IL-1β, TNF-α, and iNOS mRNA.
- Septic mice showed increased anxiety- and depressive-like behaviors after the second challenge.
- Arginase-1 levels decreased in septic mice post-challenge, while CIITA levels increased more in controls.
Conclusions:
- Low-grade immune challenges can trigger exaggerated inflammatory responses and behavioral changes in post-septic brains.
- These findings highlight the potential for microglial priming to exacerbate brain dysfunction after sepsis.
More Related Videos
10:50Visualizing Impairment of the Endothelial and Glial Barriers of the Neurovascular Unit during Experimental Autoimmune Encephalomyelitis In Vivo
Published on: March 26, 2019
09:35Isolating Central Nervous System Tissues and Associated Meninges for the Downstream Analysis of Immune cells
Published on: May 19, 2020
