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Published on: June 24, 2020
Does preeclampsia impact the gut microbiota of preterm offspring during early infancy?
Yang Chen1,2, Zhou-Ting Yi1,2, Hai-Long Yu3
1Medical Genetic Center, Guangdong Women and Children Hospital, Guangzhou, China.
Insights
Maternal preeclampsia (PE) significantly alters preterm neonates' gut microbiota composition and diversity early postpartum. These early gut microbiome changes may have long-term health implications for infants.
Area of Science:
- Microbiology
- Neonatal Health
- Gastroenterology
Background:
- Preeclampsia (PE) is a serious pregnancy complication impacting maternal and infant health.
- The neonatal gut microbiota is crucial for infant development and long-term health.
- Maternal health conditions like PE may influence the developing infant gut microbiome.
Purpose of the Study:
- To investigate differences in gut microbiota composition between preterm neonates born to mothers with PE versus those born to mothers without PE (PR).
- To understand the impact of maternal PE on the early establishment and functionality of the neonatal gut microbiome.
Main Methods:
- Shotgun metagenomic sequencing of fecal samples from preterm neonates at 2 and 6 weeks postpartum.
- Comparison of gut microbial diversity, composition (phylum and genus levels), and functional pathways between PE and PR groups.
Main Results:
- Preterm neonates of mothers with PE showed significantly lower gut microbial diversity at 2 weeks postpartum compared to the PR group.
- Key phylum differences included lower Actinobacteria abundance in the PE group at 2 weeks.
- Specific genera like Escherichia, Enterococcus, and Klebsiella were more prevalent in the PE group, while Bifidobacterium and Cutibacterium dominated the PR group.
- Distinct metabolic pathway activities were observed, indicating functional alterations in the gut microbiome due to maternal PE.
Conclusions:
- Maternal preeclampsia significantly impacts the early gut microbiota composition and diversity of preterm neonates.
- These early microbial disturbances, including altered metabolic functions, may have long-term health consequences for the infant.
- The findings highlight the critical role of maternal health in shaping neonatal gut microbiome development.
Abstract:
Preeclampsia (PE) is a pregnancy complication characterized by high blood pressure and organ damage. This study investigates the differences in the gut microbiota between preterm neonates born to mothers with PE and those born to mothers without PE (PR), aiming to understand how maternal health conditions like PE influence neonatal gut microbiota. The early gut microbiota plays a crucial role in neonatal health, and disturbances in its development can have long-term consequences. Fecal samples were collected from preterm neonates of PE and PR mothers at 2 and 6 weeks postpartum and analyzed using shotgun metagenomic sequencing. We found that PE significantly affected the gut microbial composition of preterm neonates, particularly at 2 weeks postpartum. The gut microbial diversity in the PE_2 group was notably lower compared to the PR_2 group, with no significant difference observed between the PR_6 and PE_6 groups. At the phylum level, Firmicutes and Proteobacteria were predominant, with significant differences observed, particularly a lower abundance of Actinobacteria in the PE_2 group. At the genus level, Escherichia, Enterococcus, and Klebsiella were more prevalent in the PE_2 group, whereas Bifidobacterium and Cutibacterium dominated the PR_2 group. The gut virome analysis showed no significant differences among the groups. Functional analysis revealed distinct metabolic pathway activities across the groups, suggesting that early disturbances due to PE impact the establishment of healthy gut microbiota. These findings underscore the substantial influence of maternal health on the early development of the neonatal gut microbiota and highlight the potential long-term health consequences. Additionally, the differences in metabolic pathways further emphasize the impact of preeclampsia on gut microbiota functionality.

