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Published on: January 27, 2019
The impact of maternal asthma on the preterm infants' gut metabolome and microbiome (MAP study)
Shiyu S Bai-Tong1,2, Megan S Thoemmes3, Kelly C Weldon4,5
1Division of Neonatology, Rady Children's Hospital, University of California, San Diego, San Diego, CA, USA.
Insights
Maternal asthma history may alter preterm infants' gut metabolome, impacting inflammatory pathways. This study explored early life factors influencing infant health in the Neonatal Intensive Care Unit (NICU).
Area of Science:
- Neonatal research
- Microbiome studies
- Metabolomics
Background:
- Preterm infants face higher risks of asthma and atopic diseases.
- Gut microbiome and metabolome alterations in Neonatal Intensive Care Units (NICUs) may contribute to these risks.
- Investigating maternal asthma history and NICU factors is crucial for understanding early life exposures.
Purpose of the Study:
- To explore how maternal asthma history and NICU factors influence preterm infant gut microbiome and metabolome.
- To identify early life predictors of asthma and atopic disease in preterm infants.
- To analyze the impact of maternal asthma on infant gut microbial and metabolic profiles.
Main Methods:
- Prospective metagenomic and metabolomic analysis of stool and milk feed samples from preterm infants (≤34 weeks gestational age).
- Comparison of infants born to mothers with and without a history of asthma.
- Sample collection at birth, 2 weeks, and 6 weeks postnatal age.
Main Results:
- Clinical factors, not maternal asthma diagnosis, were associated with shifts in infant gut bacterial communities.
- Significant differences in metabolite profiles were observed between groups at 6 weeks postnatal age.
- Linoleic acid pathway alterations suggest early metabolomic changes in infants of mothers with asthma.
Conclusions:
- Maternal asthma history appears to alter preterm infants' gut metabolomic pathways within the first 6 weeks of life.
- Early metabolomic changes, particularly in inflammatory pathways, may predispose preterm infants to atopic diseases.
- Further research is needed to confirm these findings and explore therapeutic interventions.
Abstract:
Preterm infants are at a greater risk for the development of asthma and atopic disease, which can lead to lifelong negative health consequences. This may be due, in part, to alterations that occur in the gut microbiome and metabolome during their stay in the Neonatal Intensive Care Unit (NICU). To explore the differential roles of family history (i.e., predisposition due to maternal asthma diagnosis) and hospital-related environmental and clinical factors that alter microbial exposures early in life, we considered a unique cohort of preterm infants born ≤ 34 weeks gestational age from two local level III NICUs, as part of the MAP (Microbiome, Atopic disease, and Prematurity) Study. From MAP participants, we chose a sub-cohort of infants whose mothers had a history of asthma and matched gestational age and sex to infants of mothers without a history of asthma diagnosis (control). We performed a prospective, paired metagenomic and metabolomic analysis of stool and milk feed samples collected at birth, 2 weeks, and 6 weeks postnatal age. Although there were clinical factors associated with shifts in the diversity and composition of stool-associated bacterial communities, maternal asthma diagnosis did not play an observable role in shaping the infant gut microbiome during the study period. There were significant differences, however, in the metabolite profile between the maternal asthma and control groups at 6 weeks postnatal age. The most notable changes occurred in the linoleic acid spectral network, which plays a role in inflammatory and immune pathways, suggesting early metabolomic changes in the gut of preterm infants born to mothers with a history of asthma. Our pilot study suggests that a history of maternal asthma alters a preterm infants' metabolomic pathways in the gut, as early as the first 6 weeks of life.
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