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Non-Invasive Model of Neuropathogenic Escherichia coli Infection in the Neonatal Rat
Published on: October 29, 2014
Neonatal E. coli infection causes neuro-behavioral deficits associated with hypomyelination and neuronal
Jacqueline C Lieblein-Boff1, Daniel B McKim, Daniel T Shea
1Department of Neuroscience, Division of Oral Biology, Institute for Behavioral Medicine Research, and Center for Brain and Spinal Cord Repair, The Ohio State University, Columbus, Ohio 43210, Abbott Nutrition, Columbus, Ohio 43219, and Department of Psychology and Neuroscience, Duke University, Durham, North Carolina 27708.
Insights
Neonatal infection causes brain inflammation, impacting iron levels and white matter development. This leads to long-term behavioral deficits in mice, suggesting altered iron storage contributes to developmental issues.
Area of Science:
- Neuroscience
- Developmental Biology
- Immunology
Background:
- Neonatal inflammatory insults affect white matter development and behavior.
- Mechanisms linking early life infection to neurodevelopmental deficits are unclear.
Purpose of the Study:
- To investigate if neonatal infection-induced brain inflammation reduces iron bioavailability, impacting oligodendrocyte maturation and white matter development.
Main Methods:
- Induced peripheral Escherichia coli infection in neonatal mice at postnatal day 3.
- Assessed brain inflammation, behavioral changes, white matter development, and iron homeostasis markers (hepcidin, ferroportin, L-ferritin) at various postnatal days.
Main Results:
- Transient neonatal infection caused acute brain inflammation, resolved within 72 hours.
- Infection led to persistent behavioral deficits (increased locomotor activity, impaired motor coordination) and hypomyelination.
- Altered iron-related gene expression (increased hepcidin, decreased ferroportin) and increased neuronal L-ferritin were observed.
Conclusions:
- Neonatal infection disrupts brain iron homeostasis by promoting neuronal iron sequestration before myelination.
- Aberrant neuronal iron storage may play a role in infection-induced white matter and behavioral disturbances.
Abstract:
Recent evidence indicates that inflammatory insults in neonates significantly influenced white matter development and caused behavioral deficits that manifest in young adulthood. The mechanisms underlying these developmental and behavioral complications, however, are not well understood. We hypothesize that acute brain inflammation caused by neonatal infection reduces the bioavailability of iron required for oligodendrocyte maturation and white matter development. Here, we confirm that peripheral Escherichia coli infection in neonates at postnatal day 3 (P3) caused acute brain inflammation that was resolved within 72 h. Nonetheless, transient early life infection (ELI) profoundly influenced behavior, white matter development, and iron homeostasis in the brain. For instance, mice exposed to E. coli as neonates had increased locomotor activity and impaired motor coordination as juveniles (P35) and young adults (P60). In addition, these behavioral deficits were associated with marked hypomyelination and a reduction of oligodendrocytes in subcortical white matter and motor cortex. Moreover, ELI altered transcripts related to cellular sequestration of iron in the brain including hepcidin, ferroportin, and L-ferritin. For example, ELI increased hepcidin mRNA and decreased ferroportin mRNA and protein in the brain at P4, which preceded increased L-ferritin mRNA at P12. Consistent with the mRNA results, L-ferritin protein was robustly increased at P12 specifically in neurons of E. coli infected mice. We interpret these data to indicate that neonatal infection causes significant neuronal sequestration of iron at a time point before myelination. Together, these data indicate a possible role for aberrant neuronal iron storage in neonatal infection-induced disturbances in myelination and behavior.
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