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Early-life gut microbiome maturity regulates blood-brain barrier and cognitive development

GSE291278 Mus musculus Expression profiling by high throughput sequencing 8 samples Submitted 2025/08/18 Platform GPL34328
Summary
The gut microbiome is an emerging factor in the neurobiology of disease. Blood-brain barrier (BBB) integrity is essential for proper brain function. However, the role the initial microbiome plays in BBB and brain development is unclear. In this study, we colonized germ-free pregnant mice with human full-term- or preterm-infant-derived gut microbiota, thereby establishing these communities in the resulting offspring. We discovered that mice harboring a full-term-associated microbiome exhibited stronger memory and learning capabilities and dramatically decreased early-life BBB permeability when compared to those with a prematurity-associated microbiome. Whole-brain single-cell RNA sequencing revealed downregulation of synaptic signaling genes in BBB cell types of mice with the prematurity-associated microbiome, indicating that microbiome maturity influences BBB transcriptional programs that support cognitive development. Comprehensive metagenomics and metabolomics uncovered bacterial populations and genomic pathways corresponding with decreased levels of circulating long-chain acylcarnitines and lysophosphatidylcholines in mice with the full-term-associated microbiome. Our findings highlight the microbiome as a therapeutic target for improving long-term neurodevelopmental outcomes due to its effect on the early-life BBB.
Published in
Early-life gut microbiome maturity regulates blood-brain barrier and cognitive development
Zemmel ZM, Fan X, Yu Y et al. · Gut microbes 2025 · PMID 40886152 · doi:10.1080/19490976.2025.2551879
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Also filed as BioProject PRJNA1232707 and SRA study SRP568438. Searching any of these in the dataset finder brings you back here.

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