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Published on: January 27, 2019
Sex Differences in Gut Microbial Development of Preterm Infant Twins in Early Life: A Longitudinal Analysis
Jie Chen1, Hongfei Li2, Sarah M Hird3
1School of Nursing, University of Connecticut, Storrs, CT, United States.
Insights
The gut microbiome of preterm infants differs significantly between sexes, even within co-twin/triplet pairs. Understanding these sex-based differences is crucial for developing targeted interventions for vulnerable neonates.
Area of Science:
- Microbiology
- Neonatal Medicine
- Genetics
Background:
- Infant gut microbiota is crucial for immune and neurobehavioral development.
- Preterm infants in the neonatal intensive care unit (NICU) experience dramatic gut microbiome shifts.
- Limited understanding exists regarding gut microbiome development in preterm twins/triplets.
Purpose of the Study:
- To investigate the influence of genetic (sex) and environmental factors on early-life gut microbiome development in preterm twins and triplets.
- To compare gut microbiota composition, diversity, and function between sexes in preterm infants.
- To explore intrapair similarities in gut microbiome within mixed-sex twin/triplet pairs.
Main Methods:
- Longitudinal cohort study of 39 preterm infants over four weeks in the NICU.
- Analysis of gut microbiota composition and diversity using linear discriminant analysis effect size (LEfSe).
- Prediction of metagenomic function (KEGG pathways) using PICRUSt and comparison with STAMP.
Main Results:
- Significant differences in gut microbiome diversity, composition, and predicted metabolic profiles were observed between female and male preterm infants.
- Even within mixed-sex twin/triplet pairs, females and males showed distinct gut microbiome features.
- Infants within the same twin/triplet set shared more similar gut microbiome characteristics than unrelated infants.
Conclusions:
- Sex is a significant factor influencing gut microbiome development in preterm infants.
- Sex-specific differences persist even in co-twins/triplets, highlighting complex interactions.
- Future personalized interventions for preterm infants should consider sex and its interaction with environmental factors.
Abstract:
Infant gut microbiota plays a vital role in immune response, mediates neurobehavioral development and health maintenance. Studies of twins' gut microbiota found that gut microbiota composition and diversity tend to be mature and stable with increasing postnatal age (PNA). Preterm infant gut microbiome shifts dramatically when they were staying in the neonatal intensive care unit (NICU). Compositions and shifting characteristics of gut microbiota among neonatal preterm twins and triplets during their early life are still unknown, which impedes a better understanding of the mechanism underpinning neurobehavioral development and precise intervention/health of preterm neonates. This longitudinal cohort study used a twins/triplets design to investigate the interaction of genetic (e.g., male vs. female) and environmental factors influencing the development of the gut microbiome in early life. We included 39 preterm infants, 12 were Female twins/triplets (Female T/T) including 3 twins pairs and 2 triplets, 12 were male twins (Male T) including 6 twins pairs, and 15 were mixed-sex twins/triplets (Mix T/T) including 6 twins pairs and 1 triplet (8 females and 7 males) during the first four weeks of NICU stay. Weekly gut microbiota patterns between females and males were compared by linear discriminant analysis (LDA) effect size (LEfSe). Metagenomics function of gut microbiota was predicted by using Phylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt). Weekly function (KEGG pathways) differences between females and males were detected by using Statistical Analysis of Metagenomic Profiles (STAMP). Results found that female pairs and male pairs were significantly different in gut microbiome diversity, compositions, and predicted metabolic profiles, importantly, females and males were also significantly dissimilar within their co-twin/triplet pairs of the mixed-sex group, infants of co-twins/triplets shared more similar features than un-related infants from different twins' pair. Future research developing personalized interventions for vulnerable high-risk infants should consider sex, and the interaction of sex and environmental factors.
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