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Infections in the Developing Brain: The Role of the Neuro-Immune Axis
John Kim1,2,3, Clara Erice1,2,3, Ursula K Rohlwink4
1Department of Anesthesiology and Critical Care Medicine, Johns Hopkins University School of Medicine, Baltimore, MD, United States.
Insights
Central nervous system (CNS) infections in children uniquely challenge the developing brain. Immune responses during infection can disrupt neurodevelopment, leading to permanent cognitive impairments.
Area of Science:
- Neuroscience
- Immunology
- Pediatrics
Background:
- Central nervous system (CNS) infections are more prevalent in young children, presenting unique challenges due to the developing brain.
- Part 1 of this review series detailed pediatric peripheral immune system vulnerabilities.
Purpose of the Study:
- To examine the developing brain's response to CNS infections.
- To explore the interplay between neurodevelopmental regulators and CNS immune responses within the neuro-immune axis.
Main Methods:
- Review of existing literature on CNS infections in pediatric populations.
- Focus on the neuro-immune interactions during infection in the developing brain.
Main Results:
- Pathogen entry into the CNS triggers an innate immune response involving microglia and astrocytes.
- Immune mediators released during infection impact blood-brain barrier permeability and recruit peripheral immune cells.
- Activated microglia, astrocytes, and immune mediators adversely affect neurodevelopmental processes.
Conclusions:
- CNS infections in children can disrupt normal brain development, leading to lasting neurodevelopmental and neurocognitive deficits.
- Understanding the neuro-immune axis is crucial for addressing the long-term consequences of CNS infections in pediatric patients.
Abstract:
Central nervous system (CNS) infections occur more commonly in young children than in adults and pose unique challenges in the developing brain. This review builds on the distinct vulnerabilities in children's peripheral immune system (outlined in part 1 of this review series) and focuses on how the developing brain responds once a CNS infection occurs. Although the protective blood-brain barrier (BBB) matures early, pathogens enter the CNS and initiate a localized innate immune response with release of cytokines and chemokines to recruit peripheral immune cells that contribute to the inflammatory cascade. This immune response is initiated by the resident brain cells, microglia and astrocytes, which are not only integral to fighting the infection but also have important roles during normal brain development. Additionally, cytokines and other immune mediators such as matrix metalloproteinases from neurons, glia, and endothelial cells not only play a role in BBB permeability and peripheral cell recruitment, but also in brain maturation. Consequently, these immune modulators and the activation of microglia and astrocytes during infection adversely impact normal neurodevelopment. Perturbations to normal brain development manifest as neurodevelopmental and neurocognitive impairments common among children who survive CNS infections and are often permanent. In part 2 of the review series, we broadly summarize the unique challenges CNS infections create in a developing brain and explore the interaction of regulators of neurodevelopment and CNS immune response as part of the neuro-immune axis.
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