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Published on: May 8, 2017
Persistent delay in maturation of the developing gut microbiota in infants with cystic fibrosis
Adrian J Verster1, Paige Salerno1, Rebecca Valls1
1Department of Microbiology and Immunology, Geisel School of Medicine, Dartmouth College, Hanover, New Hampshire, USA.
Insights
Infants with cystic fibrosis (CF) show delayed gut microbiome maturation, with fewer beneficial bacteria and more oral microbes. This altered development, linked to antibiotics, may be treatable with targeted therapies.
Area of Science:
- Microbiome research
- Pediatric health
- Gastroenterology
Background:
- The infant gut microbiome develops significantly from birth to 3 years.
- Altered gut microbiota is linked to adult diseases, but pediatric disease impacts are less understood.
- Cystic Fibrosis (CF) is associated with altered gut microbiota composition.
Purpose of the Study:
- To profile strain-level composition and developmental dynamics of infant gut microbiota in CF and non-CF cohorts.
- To identify key microbial species and developmental patterns in early life.
- To understand how CF affects microbiome maturation and its association with clinical factors.
Main Methods:
- Longitudinal shotgun metagenomic profiling of fecal samples from CF and non-CF infants (birth to >36 months).
- Analysis of microbial taxonomic composition, developmental trajectories, and strain-level dynamics.
- Correlation of microbiome features with antibiotic exposure and other clinical data.
Main Results:
- Identified keystone species defining early life microbiota in non-CF infants; these were reduced in CF infants.
- Observed delayed microbiome maturation in CF infants, with persistent transitional states and failure to reach adult-like stability.
- Found increased relative abundance of oral-derived bacteria and fungi in CF infants, associated with antibiotic use and lower bacterial density.
Conclusions:
- CF infants exhibit a delayed and altered gut microbiome maturation pattern compared to healthy infants.
- Antibiotic exposure significantly contributes to delayed maturation in CF.
- Findings suggest potential for microbiota-targeted therapies to restore healthy gut development in infants with CF.
Abstract:
The healthy human infant gut microbiome undergoes stereotypical changes in taxonomic composition between birth and maturation to an adult-like stable state. During this time, extensive communication between microbiota and the host immune system contributes to health status later in life. Although there are many reported associations between microbiota compositional alterations and disease in adults, less is known about how microbiome development is altered in pediatric diseases. One pediatric disease linked to altered gut microbiota composition is cystic fibrosis (CF), a multi-organ genetic disease involving impaired chloride secretion across epithelia and heightened inflammation both in the gut and at other body sites. Here, we use shotgun metagenomics to profile the strain-level composition and developmental dynamics of the infant fecal microbiota from several CF and non-CF longitudinal cohorts spanning from birth to greater than 36 months of life. We identify a set of keystone species that define microbiota development in early life in non-CF infants but are missing or decreased in relative abundance in infants with CF, resulting in a delayed pattern of microbiota maturation, persistent entrenchment in a transitional developmental phase, and subsequent failure to attain an adult-like stable microbiota. Delayed maturation is strongly associated with cumulative antibiotic treatments, and we also detect the increased relative abundance of oral-derived bacteria and higher levels of fungi in infants with CF, features that are associated with decreased gut bacterial density. These findings suggest the potential for future directed therapies targeted at overcoming developmental delays in microbiota maturation for infants with CF.IMPORTANCEThe human gastrointestinal tract harbors a diversity of microbes that colonize upon birth and collectively contribute to host health throughout life. Infants with the disease cystic fibrosis (CF) harbor altered gut microbiota compared to non-CF counterparts, with lower levels of beneficial bacteria. How this altered population is established in infants with CF and how it develops over the first years of life is not well understood. By leveraging multiple large non-CF infant fecal metagenomic data sets and samples from a CF cohort collected prior to highly effective modulator therapy, we define microbiome maturation in infants up to 3 years of age. Our findings identify conserved age-diagnostic species in the non-CF infant microbiome that are diminished in abundance in CF counterparts that instead exhibit an enrichment of oral-derived bacteria and fungi associated with antibiotic exposure. Together, our study builds toward microbiota-targeted therapy to restore healthy microbiota dynamics in infants with CF.
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