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A Murine Model of Fetal Exposure to Maternal Inflammation to Study the Effects of Acute Chorioamnionitis on Newborn Intestinal Development
Published on: June 24, 2020
The effect of maternal Inflammation on foetal programming of metabolic disease
C Ingvorsen1,2, S Brix1, S E Ozanne3
1Department of Systems Biology, Center for Biological Sequence Analysis, Technical University of Denmark, Kgs. Lyngby, Denmark.
Insights
Maternal obesity during pregnancy may program offspring for obesity via inflammation. Pregnancy may suppress this inflammation, potentially mitigating risks for the developing fetus.
Area of Science:
- Reproductive biology
- Immunology
- Metabolic health
Background:
- Maternal obesity is linked to increased offspring obesity and related diseases.
- Chronic low-grade inflammation from maternal obesity may cause metabolic imprinting in fetuses.
- The specific mechanisms of this fetal programming are not fully understood.
Purpose of the Study:
- To review the literature on maternal obesity-induced inflammation and fetal programming of metabolic risk.
- To evaluate the role of inflammation in offspring obesity and related diseases.
- To incorporate findings from animal models using lipopolysaccharide (LPS) to mimic maternal inflammation.
Main Methods:
- Literature review of maternal obesity and inflammation's role in fetal programming.
- Inclusion of animal studies where maternal inflammation was induced by lipopolysaccharide (LPS) injections.
- Analysis of cytokine transfer and immune modulation during pregnancy.
Main Results:
- Maternal LPS or cytokine exposure in animal models increased offspring adiposity and impaired metabolic homeostasis.
- This phenotype mirrors that seen in offspring of obese mothers.
- Cytokines are implicated due to their transferability and ability to modulate placental function.
- Pregnancy-associated immune modulation (Treg, Th2 cells) may suppress obesity-related inflammation.
Conclusions:
- Maternal inflammation during pregnancy, potentially exacerbated by obesity, can program offspring for metabolic dysfunction.
- Cytokines are key mediators in this process.
- Pregnancy's anti-inflammatory environment might counteract or mitigate the effects of maternal obesity-induced inflammation on fetal development.
Abstract:
Maternal obesity during pregnancy increases the child's risk of developing obesity and obesity-related diseases later in life. Key components in foetal programming of metabolic risk remain to be identified; however, chronic low-grade inflammation associated with obesity might be responsible for metabolic imprinting in the offspring. We have therefore surveyed the literature to evaluate the role of maternal obesity-induced inflammation in foetal programming of obesity and related diseases. The literature on this topic is limited, so this review also includes animal models where maternal inflammation is mimicked by single injections with lipopolysaccharide (LPS). An LPS challenge results in an immunological response that resembles the obesity-induced immune profile, although LPS injections provoke a stronger response than the subclinical obesity-associated response. Maternal LPS or cytokine exposures result in increased adiposity and impaired metabolic homeostasis in the offspring, similar to the phenotype observed after exposure to maternal obesity. The cytokine levels might be specifically important for the metabolic imprinting, as cytokines are both transferable from maternal to foetal circulation and have the capability to modulate placental nutrient transfer. However, the immune response associated with obesity is moderate and therefore potentially weakened by the pregnancy-driven immune modulation, dominated by anti-inflammatory Treg and Th2 cells. We know from other low-grade inflammatory diseases, such as rheumatoid arthritis, that pregnancy can improve disease state. If pregnancy is also capable of suppressing the obesity-associated inflammation, the immunological markers might be less likely to affect metabolic programming in the developing foetus than otherwise implied.
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