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Using a Murine Model of Psychosocial Stress in Pregnancy as a Translationally Relevant Paradigm for Psychiatric Disorders in Mothers and Infants
Published on: June 13, 2021
Maternal stress, nutrition and physical activity: Impact on immune function, CNS development and psychopathology
Andrea Horvath Marques1, Anne-Lise Bjørke-Monsen2, Antônio L Teixeira3
1Obsessive--Compulsive Spectrum Disorders Program, Department & Institute of Psychiatry, University of São Paulo, Medical School, São Paulo, Brazil.
Insights
Maternal immune dysfunction, stress, and poor nutrition can affect fetal brain development and increase neurodevelopmental disorder risk. Physical activity during pregnancy may offer protection against these risks.
Area of Science:
- Neuroimmunology
- Developmental Neuroscience
- Maternal-Fetal Medicine
Background:
- Maternal and fetal immune system interactions are crucial for healthy fetal brain development.
- Dysfunction in these systems, influenced by lifestyle factors, may contribute to neurodevelopmental disorders.
- Mechanisms linking maternal factors to fetal neurodevelopment are not fully understood.
Purpose of the Study:
- To review maternal-fetal immune interactions and central nervous system (CNS) communication.
- To discuss the impact of prenatal stress and malnutrition on neurodevelopment.
- To explore the protective role of physical activity during pregnancy.
Main Methods:
- Literature review of maternal-fetal immune interactions.
- Discussion of immune-CNS bidirectional communication pathways.
- Analysis of prenatal stress, malnutrition, and physical activity effects on perinatal programming.
Main Results:
- Prenatal stress and malnutrition can negatively impact CNS and immune system programming.
- Physical activity during pregnancy shows potential as a buffer against inflammatory and stress-related disorders.
- Regular exercise promotes neuroplasticity and an anti-inflammatory state.
Conclusions:
- Maternal lifestyle factors significantly influence fetal neurodevelopment and immune function.
- Stress reduction, good nutrition, and physical activity are key preventive strategies.
- Further research is needed to confirm protective mechanisms of physical activity in pregnancy.
Abstract:
Evidence suggests that maternal and fetal immune dysfunction may impact fetal brain development and could play a role in neurodevelopmental disorders, although the definitive pathophysiological mechanisms are still not completely understood. Stress, malnutrition and physical inactivity are three maternal behavioral lifestyle factors that can influence immune and central nervous system (CNS) functions in both the mother and fetus, and may therefore, increase risk for neurodevelopmental/psychiatric disorders. First, we will briefly review some aspects of maternal-fetal immune system interactions and development of immune tolerance. Second, we will discuss the bidirectional communication between the immune system and CNS and the pathways by which immune dysfunction could contribute to neurodevelopmental disorders. Third, we will discuss the effects of prenatal stress and malnutrition (over and undernutrition) on perinatal programming of the CNS and immune system, and how this might influence neurodevelopment. Finally, we will discuss the beneficial impact of physical fitness during pregnancy on the maternal-fetal unit and infant and how regular physical activity and exercise can be an effective buffer against stress- and inflammatory-related disorders. Although regular physical activity has been shown to promote neuroplasticity and an anti-inflammatory state in the adult, there is a paucity of studies evaluating its impact on CNS and immune function during pregnancy. Implementing stress reduction, proper nutrition and ample physical activity during pregnancy and the childbearing period may be an efficient strategy to counteract the impact of maternal stress and malnutrition/obesity on the developing fetus. Such behavioral interventions could have an impact on early development of the CNS and immune system and contribute to the prevention of neurodevelopmental and psychiatric disorders. Further research is needed to elucidate this relationship and the underlying mechanisms of protection. This article is part of a Special Issue entitled SI: Neuroimmunology in Health And Disease.
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