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Published on: January 27, 2019
Development of the gut microbiota during early life in premature and term infants
Kathleen Sim1, Elizabeth Powell1, Emma Cornwell1
1Section of Paediatric Infectious Disease, Department of Infectious Disease, Imperial College London, London, W2 1PG, UK.
Insights
The gut microbiota of premature infants differs significantly from term infants early in life but converges over time. However, early life factors can still influence gut bacteria composition at age two, potentially impacting lifelong health outcomes.
Area of Science:
- Microbiome research
- Pediatric health
- Gastroenterology
Background:
- The gastrointestinal (GI) microbiota plays a crucial role in health and disease from infancy through adulthood.
- Early life events, particularly in premature neonates, can establish distinct GI microbial communities with potential long-term health implications.
- Premature infants exhibit a significantly different gut microbiota compared to term infants, with certain patterns linked to adverse neonatal outcomes.
Purpose of the Study:
- To compare the gut microbiota composition of premature and term infants at 6 weeks and 2 years of age.
- To identify clinical factors associated with specific microbial patterns in early life.
- To investigate the long-term associations between early life microbiota, clinical factors, and the development of allergic conditions.
Main Methods:
- Comparative analysis of fecal samples from 37 pairs of premature and term infants at two time points: 6 weeks and 2 years of age.
- Identification of bacterial groups and microbial diversity in relation to clinical factors.
- Correlation of gut microbiota composition and clinical data with the incidence of childhood wheeze and eczema.
Main Results:
- At 6 weeks, significant differences in microbial diversity and bacterial abundance (e.g., Enterobacteriaceae, Bifidobacterium) were observed between premature and term infants.
- By 2 years of age, the gut microbiota of both groups converged to a more similar, adult-like state.
- Prematurity and delivery method remained associated with gut microbiota composition at 2 years, and specific microbial patterns were linked to childhood wheeze and eczema.
Conclusions:
- Infant gut microbiota composition diverges significantly in early life but shows convergence over time.
- Early life clinical factors continue to influence gut bacterial abundance at 2 years of age.
- Alterations in the gut microbiota's early trajectory may have lasting consequences on lifelong health and the development of allergic diseases.
Background:
The gastrointestinal (GI) microbiota has been linked to health consequences throughout life, from early life illnesses (e.g. sepsis and necrotising enterocolitis) to lifelong chronic conditions such as obesity and inflammatory bowel disease. It has also been observed that events in early life can lead to shifts in the microbiota, with some of these changes having been documented to persist into adulthood. A particularly extreme example of a divergent early GI microbiota occurs in premature neonates, who display a very different GI community to term infants. Certain characteristic patterns have been associated with negative health outcomes during the neonatal period, and these patterns may prove to have continual damaging effects if not resolved.
Results:
In this study we compared a set of premature infants with a paired set of term infants (n = 37 pairs) at 6 weeks of age and at 2 years of age. In the samples taken at 6 weeks of age we found microbial communities differing in both diversity and specific bacterial groups between the two infant cohorts. We identified clinical factors associated with over-abundance of potentially pathogenic organisms (e.g. Enterobacteriaceae) and reduced abundances of some beneficial organisms (e.g. Bifidobacterium). We contrasted these findings with samples taken at 2 years of age, which indicated that despite a very different initial gut microbiota, the two infant groups converged to a similar, more adult-like state. We identified clinical factors, including both prematurity and delivery method, which remain associated with components of the gut microbiota. Both clinical factors and microbial characteristics are compared to the occurrence of childhood wheeze and eczema, revealing associations between components of the GI microbiota and the development of these allergic conditions.
Conclusions:
The faecal microbiota differs greatly between infants born at term and those born prematurely during early life, yet it converges over time. Despite this, early clinical factors remain significantly associated with the abundance of some bacterial groups at 2 years of age. Given the associations made between health conditions and the microbiota, factors that alter the makeup of the gut microbiota, and potentially its trajectory through life, could have important lifelong consequences.
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