Characterizing the Neuroimmune Environment of Offspring in a Novel Model of Maternal Allergic Asthma and Particulate

Juan M Tamayo1, Hadley C Osman1, Jared J Schwartzer2

  • 1University of California at Davis.

Research Square
|July 28, 2023
PubMed

Insights

Prenatal exposure to maternal allergic asthma (MAA) and air pollution (ultrafine iron-soot, UIS) alters offspring neurodevelopment. These environmental factors changed cytokine levels and increased microglia density in the brain, persisting into adulthood.

Area of Science:

  • Neuroscience
  • Environmental Health
  • Immunology

Background:

  • Autism spectrum disorders (ASD) and asthma rates are increasing.
  • Maternal asthma and particulate matter (PM) exposure during pregnancy are linked to increased ASD risk in offspring.
  • Existing research lacks models for combined prenatal asthma and PM exposure effects on neurodevelopment.

Approach:

  • Developed a novel mouse model exposing pregnant BALB/c mice to maternal allergic asthma (MAA) and ultrafine iron-soot (UIS) during gestation.
  • Assessed offspring brain cortices and hippocampi at postnatal days 15 and 35.
  • Analyzed cytokine profiles and microglia density (IBA-1 staining) to evaluate neuroimmune changes.

Key Points:

  • Prenatal MAA, UIS, or combined MAA-UIS exposure altered cytokine levels (e.g., IL-1β, IL-2, IL-13, IL-17, IFNγ, IL-7) in offspring brains.
  • Elevated cytokines persisted from postnatal day 15 to 35 in offspring cortices.
  • Combined MAA-UIS exposure increased microglia density in the hippocampus of offspring.

Conclusions:

  • Prenatal exposure to MAA and UIS induces persistent neuroimmune alterations in offspring.
  • This study provides a novel model for investigating the impact of combined environmental exposures on neurodevelopment.
  • Findings suggest a link between maternal asthma, air pollution, and altered offspring brain development.

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