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Alterations in Placental Inflammation-Related Gene Expression Partially Mediate the Effects of Prenatal Alcohol
Jacqueline J Masehi-Lano1, Maya Deyssenroth2, Sandra W Jacobson3,4,5
1Institute of Human Nutrition and Departments of Emergency Medicine and Pediatrics, Columbia University Vagelos College of Physicians and Surgeons, New York, NY 10032, USA.
Insights
Prenatal alcohol exposure (PAE) alters placental gene expression related to iron metabolism and inflammation. These changes partially explain how drinking during pregnancy affects maternal iron levels, suggesting placental inflammation plays a role.
Area of Science:
- Reproductive Biology
- Developmental Biology
- Nutritional Science
Background:
- Prenatal alcohol exposure (PAE) is linked to disrupted maternal and infant iron homeostasis, mirroring inflammatory conditions.
- The placenta's role in mediating PAE's effects on iron metabolism is not fully understood.
Purpose of the Study:
- To investigate how PAE affects placental gene expression in iron metabolism and inflammation.
- To determine if these gene expression changes mediate alcohol's impact on maternal and infant iron status.
Main Methods:
- Whole-transcriptome RNA sequencing on placental tissue from heavy-drinking and control pregnant women.
- Analysis of gene sets for iron metabolism and inflammation using principal component analysis (PCA).
- Multivariable regression and causal inference models to assess mediation effects.
Main Results:
- PAE was associated with significant alterations in placental gene expression related to iron metabolism and inflammation.
- Specific gene expression profiles partially mediated the relationship between prenatal drinking frequency and lower maternal hemoglobin-to-ferritin ratio.
- Immune cell regulation, cytokine activity, and angiogenesis genes were implicated in this mediation.
Conclusions:
- Placental inflammation may partially explain alcohol-induced alterations in iron homeostasis during pregnancy.
- PAE impacts placental gene expression, contributing to iron dysregulation.
- Findings highlight the placenta as a key site for alcohol's teratogenic effects on iron metabolism.
Abstract:
Prenatal alcohol exposure (PAE) is associated with alterations in maternal and infant iron homeostasis that are consistent with changes seen in the setting of inflammation. We hypothesized that PAE leads to alterations in the placental expression of genes related to iron metabolism and inflammation that play functional roles in the teratogenic effects of alcohol on iron homeostasis. A total of 126 heavy-drinking women (≥1 oz (30 mL) absolute alcohol/day (~1.67 standard drinks/day) or women reporting binge drinking (≥2 drinks/occasion)) and 80 control women (<0.5 oz AA per day, no binging) in Cape Town, South Africa were interviewed prenatally regarding demographics, and alcohol, smoking, and drug use around conception and during pregnancy. Prenatal/maternal and infant hemoglobin and ferritin were measured. Whole-transcriptome RNA sequencing analysis was performed on flash-frozen transplacental tissue samples. Gene sets related to iron metabolism (n = 398) and inflammation (n = 467) were constructed by searching the Molecular Signatures Database for related ontology terms. Principal component analysis (PCA) yielded 59 factors for each theme. In multivariable regression models, PAE was related to 2 iron metabolism PCA factors (PCs) and 5 inflammation PCs, among which 2 iron metabolism and 4 inflammation factors were related to at least 1 key maternal or infant iron outcome. In causal inference analyses based on marginal structural models and the product method, the alterations in the expression profile of genes with functions in immune cell regulation, cytokine activity, angiogenesis, hematopoiesis, and ubiquitous cell processes appeared to partially mediate the relation of prenatal drinking frequency (days/week) around conception to a lower maternal hemoglobin-to-log(ferritin) ratio (proportion mediation = 51.35%). These findings suggest that placental inflammation may be partly responsible for the differences in alcohol-related iron homeostasis patterns between pregnant and non-pregnant adults.
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