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Proton Pump Inhibitors Modulate Gene Expression Profile in Esophageal Mucosa and Microbiome
Seesandra V Rajagopala1, Meghan H Shilts1, Hernan Correa2
1Department of Medicine, Division of Infectious Disease (SVR, MHS, SRD), Vanderbilt University Medical Center, Nashville, TN.
Insights
Proton pump inhibitors (PPIs) alter gene expression in children's normal esophageal lining, independent of cell type. PPI use also changes the esophageal microbiome, suggesting potential impacts on homeostasis.
Area of Science:
- Gastroenterology
- Microbiology
- Molecular Biology
Background:
- Proton pump inhibitors (PPIs) are frequently prescribed for pediatric upper gastrointestinal symptoms, often without a definitive diagnosis.
- The impact of PPIs on the esophageal environment in children with normal esophageal tissue is not well understood.
Purpose of the Study:
- To investigate the effects of PPIs on the esophageal mucosal transcriptome and active microbiota in children with histologically normal esophagi.
- To determine if observed gene expression changes are linked to esophageal epithelial cell type composition.
Main Methods:
- Metatranscriptomics was employed on esophageal biopsy samples from PPI-naïve and PPI-exposed children with normal esophagi.
- Computational deconvolution analysis (xCell) was used to assess the relationship between gene expression and cell type composition.
Main Results:
- PPI exposure was associated with the upregulation of 27 genes, including MUC genes, in the esophageal mucosa.
- Esophageal microbiome analysis revealed an abundance of Prevotella sp and Streptococcus sp in the PPI-exposed group.
- Epithelial cell type composition remained similar between PPI-naïve and PPI-exposed groups.
Conclusions:
- PPI use in children with normal esophagi is linked to altered esophageal mucosal gene expression related to homeostasis and epithelial cell function, independent of cell type.
- PPI exposure is also associated with changes in the esophageal microbiome.
- Further research is needed to confirm these findings and explore the causal relationship between PPIs, the esophageal epithelium, and microbial communities.
Objective:
Proton pump inhibitors (PPIs) are commonly used to manage children with upper gastrointestinal symptoms and without a formal diagnosis. We investigated the effect of PPIs on esophageal mucosal transcriptome and active microbiota in children with normal esophagi. Furthermore, we examined whether the differences in host esophageal mucosal gene expression were driven by an underlying esophageal epithelial cell type composition.
Methods:
Using metatranscriptomics, the host transcriptional and active microbial profiles were captured from 17 esophageal biopsy samples (PPI naïve [PPI-], n = 7; PPI exposed [PPI+], n = 10) collected from children without any endoscopic and histologic abnormalities in their esophagus (normal esophagus). Deconvolution computational analysis was performed with xCell to assess if the observed epithelial gene expression changes were related to the cell type composition in the esophageal samples.
Results:
The median (IQR) age of our cohort was 14 years (12-16) with female (63%) preponderance. Both groups were similar in terms of their demographics and clinical features. Compared with PPI-, the PPI+ had upregulation of 27 genes including the MUC genes. The cell type composition was similar between the PPI- and PPI+ groups. Prevotella sp and Streptococcus sp were abundant in PPI+ group.
Conclusions:
In children with normal esophagus, PPI exposure can be associated with upregulation of esophageal mucosal homeostasis and epithelial cell function genes in a cell-type independent manner, and an altered esophageal microbiome. Additional studies are warranted to validate our findings and to investigate the causal effect of PPIs on the normal esophageal epithelium and microbial communities.
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