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Elevated Gestational IL-13 During Fetal Development Is Associated With Hyperactivity and Inattention in
Loreen Thürmann1, Gunda Herberth2, Ulrike Rolle-Kampczyk3
1Molecular Epidemiology Unit, Charité - Universitátsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin and Berlin Institute of Health, associated partner of the German Center for Lung Research (DZL), Berlin, Germany.
Insights
Elevated gestational IL-13 increases children's risk for behavioral difficulties, particularly hyperactivity. Reduced polyunsaturated fatty acids (PUFAs) during pregnancy may contribute to this by increasing IL-13, impacting child development.
Area of Science:
- Neuroscience
- Immunology
- Developmental Psychology
Background:
- Maternal immune activation (MIA) is linked to offspring behavioral disorders.
- Polyunsaturated fatty acids (PUFAs) have immune-modulatory roles in neuronal development.
- Human data on MIA, PUFAs, and child behavior are limited.
Purpose of the Study:
- To investigate the influence of gestational cytokines and PUFA-lipids on childhood behavioral outcomes.
- To examine immune activation via maternal atopic diseases, not pathogens.
- To explore the interplay between maternal IL-13, PUFAs, and offspring behavior.
Main Methods:
- Prospective mother-child cohort (LINA) with 293 mother-child pairs.
- Assessed maternal blood cytokine (IL-13) and PUFA-lipid profiles at 34 weeks gestation.
- Measured child behavior at age eight using the Strength and Difficulties Questionnaire (SDQ).
Main Results:
- Elevated gestational IL-13 significantly increased offspring risk for behavioral difficulties, especially hyperactivity/inattention (adj. OR 2.47).
- Maternal atopic dermatitis correlated with higher IL-13 but not directly with child behavioral issues.
- Decreased gestational PC aa C38:6 (a PUFA-lipid) was linked to higher IL-13 and mediated the effect on child behavior, independent of maternal atopic dermatitis.
Conclusions:
- Gestational IL-13 elevation is a risk factor for childhood behavioral problems.
- Reduced supply of gestational PC aa C38:6 may increase IL-13, contributing to offspring behavioral sequelae.
- This study highlights the crucial role of maternal immune status and PUFA supply in fetal neurodevelopment and behavioral outcomes.
Abstract:
Maternal immune activation (MIA) during fetal development leads to behavioral and psychological disorders in the offspring. Concomitantly, insufficient supply of polyunsaturated fatty acids (PUFAs) is suspected to contribute to early neuronal maldevelopment due to the immune modulatory capabilities of PUFAs. However, human data are missing considering both of these aspects and their impact on children's behavioral outcomes. In line, this study aimed to elucidate the influence of gestational cytokines and PUFA-containing lipids during late pregnancy on behavioral sequelae in childhood, particularly focusing on an immune activation shaped by a history of maternal atopic diseases instead of a pathogen-mediated immune response. Based on the prospective mother-child cohort LINA we assessed the unstimulated blood cytokine profiles and concentrations of PUFA-containing lipids of 293 mothers at the 34th week of pregnancy. Maternal history of atopic diseases was obtained from questionnaires and behavior in eight-year-old children was assessed by the standardized Strength and Difficulties Questionnaires (SDQ) generating scores for hyperactivity/inattention, emotional symptoms, conduct problems, and peer relationship problems. Elevated IL-13 increased the risk for the child to show behavioral difficulties, in particular, hyperactive/inattentive behavior [adj. OR (95% CI): 2.47 (1.51-4.02), n = 255 vs. 38] at the age of eight years. Although the presence of maternal atopic dermatitis (AD) was associated with increased gestational IL-13 concentrations [adj. MR (95% CI): 1.17 (1.04-1.32)], no effect on children's behavioral difficulties was observed. However, a decrease in the PUFA containing lipid species PC aa C38:6 was not only associated with an increased gestational IL-13 concentration but also mediated the indirect effect of low PC aa C38:6 concentrations on children's abnormal behavior independent of maternal AD. We additionally assessed whether maternal IL-13 and PC aa C38:6 concentrations translate their effect by altering children's cord blood PC aa C38:6 and IL-13. While also the children's cord blood IL-13 was related to children's behavior, no effect of children's PC aa C38:6 was observed. This is the first study demonstrating that elevated gestational IL-13 increases the risk for children to develop behavioral difficulties. Analyses suggest that a reduced supply of gestational PC aa C38:6 contributes to elevated gestational IL-13 leading to behavioral sequelae in the offspring.
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