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Published on: February 26, 2018
Hepatic acute phase response protects the brain from focal inflammation during postnatal window of susceptibility
Inês Sá-Pereira1, Jay Roodselaar1, Yvonne Couch2
1Department of Pharmacology, University of Oxford, United Kingdom.
Insights
Perinatal brain inflammation shows an age-dependent susceptibility window at postnatal day 14. Suppressing systemic inflammation post-injury may worsen central nervous system damage in a unique, age-related manner.
Area of Science:
- Neuroscience
- Immunology
- Developmental Biology
Background:
- Perinatal inflammation is linked to neurodevelopmental disorders.
- The age-dependent regulation of brain inflammatory responses is not well understood.
- The role of the acute phase response (APR) in adult brain injury is established, but its perinatal connection is unclear.
Purpose of the Study:
- To investigate the age-dependent inflammatory response in the developing brain following focal injury.
- To determine the relationship between central nervous system (CNS) inflammation and the peripheral acute phase response (APR) during development.
- To identify potential therapeutic strategies for perinatal brain injury.
Main Methods:
- Focal brain inflammation was induced using interleukin (IL)-1β in mice at postnatal days 7, 14, 21, and 56.
- Central nervous system (CNS) and hepatic inflammatory responses were assessed.
- Dose-response experiments with IL-1β and peripheral IL-1β challenges were performed.
Main Results:
- A significant window of susceptibility to CNS injury was identified at postnatal day 14, characterized by increased neutrophil recruitment and blood-brain barrier permeability.
- Neutrophil recruitment and blood-brain barrier breakdown were inversely proportional to IL-1β and ICAM-1 induction and APR.
- Peripheral IL-1β challenge reduced CNS inflammation in developing mice, unlike in adults.
Conclusions:
- There is a unique age-dependent window of susceptibility to CNS injury during the perinatal period.
- Systemic inflammation suppression following perinatal brain injury may exacerbate damage.
- Findings suggest novel therapeutic approaches targeting systemic inflammation in perinatal brain injury.
Abstract:
Perinatal inflammation is known to contribute to neurodevelopmental diseases. Animal models of perinatal inflammation have revealed that the inflammatory response within the brain is age dependent, but the regulators of this variation remain unclear. In the adult, the peripheral acute phase response (APR) is known to be pivotal in the downstream recruitment of leukocytes to the injured brain. The relationship between perinatal brain injury and the APR has not been established. Here, we generated focal inflammation in the brain using interleukin (IL)-1β at postnatal day (P)7, P14, P21 and P56 and studied both the central nervous system (CNS) and hepatic inflammatory responses at 4 h. We found that there is a significant window of susceptibility in mice at P14, when compared to mice at P7, P21 and P56. This was reflected in increased neutrophil recruitment to the CNS, as well as an increase in blood-brain barrier permeability. To investigate phenomena underlying this window of susceptibility, we performed a dose response of IL-1β. Whilst induction of endogenous IL-1β or intercellular adhesion molecule (ICAM)-1 in the brain and induction of a hepatic APR were dose dependent, the recruitment of neutrophils and associated blood-brain barrier breakdown was inversely proportional. Furthermore, in contrast to adult animals, an additional peripheral challenge (intravenous IL-1β) reduced the degree of CNS inflammation, rather than exacerbating it. Together these results suggest a unique window of susceptibility to CNS injury, meaning that suppressing systemic inflammation after brain injury may exacerbate the damage caused, in an age-dependent manner.
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