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Updated: Jul 9, 2025

Probiotic Studies in Neonatal Mice Using Gavage
Published on: January 27, 2019
Gastroesophageal reflux and PPI exposure alter gut microbiota in very young infants
Denease Francis1, Anupama Chawla2, Joseph F LaComb2
1Department of Pediatrics, Texas Tech University Health Sciences Center El Paso, El Paso, TX, United States.
Insights
Proton pump inhibitor (PPI) therapy in infants with gastroesophageal reflux alters gut microbiome diversity and increases certain bacteria. This study highlights the impact of PPIs on infant gut microbial composition.
Area of Science:
- Microbiology
- Pediatrics
- Gastroenterology
Background:
- Infants with symptomatic gastroesophageal reflux often receive proton pump inhibitors (PPIs) for symptom relief.
- The impact of PPI therapy on the gut microbiome of infants is not well understood.
Purpose of the Study:
- To investigate the effect of PPI therapy on gut bacterial richness, diversity, and specific taxa in infants.
- To compare the gut microbiome of infants treated with PPIs to those not exposed to acid suppressive therapy.
Main Methods:
- A cohort study was conducted at Stony Brook Hospital from February 2016 to June 2019.
- Stool samples from 58 infants (29 treated with PPIs for reflux, 29 healthy controls) were analyzed for microbiome composition.
Main Results:
- Significant differences in alpha and beta diversity were observed between the groups.
- Infants on PPI therapy exhibited increased relative abundance of Firmicutes, while controls were dominated by Bifidobacterium.
- Duration of PPI exposure correlated with changes in gut microbial diversity and abundance.
Conclusions:
- PPI therapy significantly alters the infant gut microbiome, increasing bacterial taxa and diversity.
- PPI exposure leads to early enrichment of the intestinal microbiome in infants.
- Findings underscore the need to consider microbiome alterations when using PPIs in infants.
Importance:
Infants with symptomatic Gastroesophageal reflux are treated with pharmacological therapy that includes proton pump inhibitors (PPI) with clinical improvement. The alterations to gut microbiome profiles in comparison to infants without reflux is not known.
Objective:
To determine the effect of PPI therapy on gut bacterial richness, diversity, and proportions of specific taxa in infants when compared to infants not exposed to acid suppressive therapy.
Design Setting And Participants:
This cohort study was conducted at the Stony Brook Hospital in Stony Brook, NY between February 2016, and June 2019. Infants meeting inclusion criteria were enrolled in a consecutive fashion.
Results:
A total of 76 Infants were recruited and 60 were enrolled in the study, Twenty nine infants met clinical criteria for reflux and were treated with PPI therapy: median [IQR] gestation: 38.0 weeks [34.7-39.6 weeks]; median [IQR] birthweight: 2.95 Kg [2.2-3.4]; 14 [46.7%] male) and 29 infant were healthy controls median [IQR] gestation: 39.1 weeks [38-40 weeks]; median [IQR] birthweight: 3.3 Kg [2.2-3.4]; 17 [58.6%] male); 58 stool samples from 58 infants were analyzed. There were differences in Shannon diversity between the reflux and control groups. The reflux group that was exposed to PPI therapy had increased relative abundance of a diverse set of genera belonging to the phylum Firmicutes. On the other hand, the control group microbiota was dominated by Bifidobacterium, and a comparatively lower level of enrichment and abundance of microbial taxa was observed in this group of infants.
Conclusions And Relevance:
We observed significant differences in both α- and β-diversity of the microbiome, when the two groups of infants were compared. The microbiome in the reflux group had more bacterial taxa and the duration of PPIs exposure was clearly associated with the diversity and abundance of gut microbes. These findings suggest that PPI exposure among infants results in early enrichment of the intestinal microbiome.
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