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

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Publisher Biomed Central
Date 2023 Nov 3
PMID 37919762
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Abstract

Inflammation during pregnancy is associated with an increased risk for neurodevelopmental disorders (NDD). Increased gestational inflammation can be a result of an immune condition/disease, exposure to infection, and/or environmental factors. Epidemiology studies suggest that cases of NDD are on the rise. Similarly, rates of asthma are increasing, and the presence of maternal asthma during pregnancy increases the likelihood of a child being later diagnosed with NDD such as autism spectrum disorders (ASD). Particulate matter (PM), via air pollution, is an environmental factor known to worsen the symptoms of asthma, but also, PM has been associated with increased risk of neuropsychiatric disorders. Despite the links between asthma and PM with neuropsychiatric disorders, there is a lack of laboratory models investigating combined prenatal exposure to asthma and PM on offspring neurodevelopment. Thus, we developed a novel mouse model that combines exposure to maternal allergic asthma (MAA) and ultrafine iron-soot (UIS), a common component of PM. In the current study, female BALB/c mice were sensitized for allergic asthma with ovalbumin (OVA) prior to pregnancy. Following mating and beginning on gestational day 2 (GD2), dams were exposed to either aerosolized OVA to induce allergic asthma or phosphate buffered saline (PBS) for 1 h. Following the 1-h exposure, pregnant females were then exposed to UIS with a size distribution of 55 to 169 nm at an average concentration of 176 ± 45 μg/m) (SD), or clean air for 4 h, over 8 exposure sessions. Offspring brains were collected at postnatal days (P)15 and (P)35. Cortices and hippocampal regions were then isolated and assessed for changes in cytokines using a Luminex bead-based multiplex assay. Analyses identified changes in many cytokines across treatment groups at both timepoints in the cortex, including interleukin-1 beta (IL-1β), and IL-17, which remained elevated from P15 to P35 in all treatment conditions compared to controls. There was a suppressive effect of the combined MAA plus UIS on the anti-inflammatory cytokine IL-10. Potentially shifting the cytokine balance towards more neuroinflammation. In the hippocampus at P15, elevations in cytokines were also identified across the treatment groups, namely IL-7. The combination of MAA and UIS exposure (MAA-UIS) during pregnancy resulted in an increase in microglia density in the hippocampus of offspring, as identified by IBA-1 staining. Together, these data indicate that exposure to MAA, UIS, and MAA-UIS result in changes in the neuroimmune environment of offspring that persist into adulthood.

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References
1.
Claeson A, Palmquist E, Lind N, Nordin S . Symptom-trigger factors other than allergens in asthma and allergy. Int J Environ Health Res. 2016; 26(4):448-57. DOI: 10.1080/09603123.2015.1135314. View

2.
Brauer M, Curtin J . Linear mixed-effects models and the analysis of nonindependent data: A unified framework to analyze categorical and continuous independent variables that vary within-subjects and/or within-items. Psychol Methods. 2017; 23(3):389-411. DOI: 10.1037/met0000159. View

3.
Gong T, Lundholm C, Rejno G, Bolte S, Larsson H, DOnofrio B . Parental asthma and risk of autism spectrum disorder in offspring: A population and family-based case-control study. Clin Exp Allergy. 2019; 49(6):883-891. PMC: 6849600. DOI: 10.1111/cea.13353. View

4.
Modabbernia A, Velthorst E, Reichenberg A . Environmental risk factors for autism: an evidence-based review of systematic reviews and meta-analyses. Mol Autism. 2017; 8:13. PMC: 5356236. DOI: 10.1186/s13229-017-0121-4. View

5.
Zhong C, Zhou Y, Smith K, Kennedy I, Chen C, Aust A . Oxidative injury in the lungs of neonatal rats following short-term exposure to ultrafine iron and soot particles. J Toxicol Environ Health A. 2010; 73(12):837-47. DOI: 10.1080/15287391003689366. View