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Published on: March 20, 2012
RNA-seq analysis reveals prenatal alcohol exposure is associated with placental inflammatory cells and gene
Randy P Williams1, Corina Lesseur1, Haoxiang Cheng2
1Department of Environmental Medicine and Public Health, Icahn School of Medicine at Mount Sinai, New York, NY, USA.
Insights
Prenatal alcohol exposure (PAE) alters placental cell composition, increasing Hofbauer cells and inflammatory gene expression. These findings highlight potential mechanisms linking PAE to fetal alcohol spectrum disorders (FASD).
Area of Science:
- Obstetrics and Gynecology
- Developmental Biology
- Immunology
Background:
- Fetal alcohol spectrum disorders (FASD) are a leading preventable cause of neurodevelopmental disorders globally.
- The placenta is critical for fetal development, and prenatal alcohol exposure (PAE) impacts its structure and gene expression.
- Previous studies lacked cell-type resolution in analyzing PAE's placental effects.
Purpose of the Study:
- To investigate the impact of PAE on placental cell-type composition.
- To identify changes in placental inflammatory gene expression due to PAE.
- To understand the cellular mechanisms underlying FASD development.
Main Methods:
- Utilized single-cell RNA-seq data for cell-type deconvolution of bulk placental RNA-seq from a South African cohort.
- Employed bivariate and multivariable regression models to assess PAE's effect on placental cell proportions.
- Examined differential expression of inflammatory genes in response to PAE.
Main Results:
- Identified stromal, endothelial, and cytotrophoblast cells as predominant placental cell types.
- Found PAE associated with increased proportions of Hofbauer cells (fetal placental villi macrophages).
- Observed differential expression in 35 inflammatory genes in alcohol-exposed placentas.
Conclusions:
- Heavy alcohol consumption during pregnancy influences Hofbauer cell proportions and placental inflammatory gene expression.
- These placental changes may contribute to the pathogenesis of FASD.
- Further research is needed to elucidate the functional roles of placental inflammation in FASD.
Background:
Fetal alcohol spectrum disorders (FASD) are the most common preventable cause of birth defects and neurodevelopmental disorders worldwide. The placenta is the crucial interface between mother and fetus. Prenatal alcohol exposure (PAE) has been shown to alter placental structure and expression of genes in bulk placental tissue samples, but prior studies have not examined effects on placental cell-type composition or taken cell-type into consideration in transcriptome analyses.
Methods:
We leveraged an existent placenta single-cell RNA-seq dataset to perform cell-type deconvolution of bulk placental RNA-seq data from 35 heavy drinking pregnant women and 33 controls in a prospective birth cohort in Cape Town, South Africa. We used bivariate analyses and multivariable adjusted linear regression models to assess the relation of PAE on inferred placental cell-type proportions. We also examined differential expression of inflammatory response genes and PAE, using multivariable adjusted linear models.
Results:
Deconvolution analyses showed heterogeneous placenta cell-type composition in which stromal (27 %), endothelial (26 %) and cytotrophoblasts (18 %) were the predominant cell-types. PAE around conception was associated with a higher proportion of Hofbauer cells (B = 0.51, p = 0.035) in linear models adjusted for maternal age, infant sex, and gestational age. Among the 652 inflammatory genes examined, 35 were differential expressed in alcohol exposed placentas (FDR p < 0.05).
Conclusions:
Our findings suggest that heavy alcohol exposure during pregnancy can influence the proportion of fetal placental villi macrophages (Hofbauer cells) and increased expression of inflammatory genes. Future studies are needed to further characterize these effects and to assess the potential functional roles of placental inflammation in FASD.
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