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Microbiota-derived pantothenic acid rapidly restores colonic mucus barrier after antibiotic-induced dysbiosis

Preprint Created on 27 Sep 2026 bioRxiv

The intestinal mucus layer forms the primary physical barrier separating the host epithelium from the gut microbiota. Antibiotic-induced dysbiosis compromises this barrier, yet the microbial metabolites and host mechanisms responsible for its rapid restoration remain poorly understood. Here, we identify pantothenic acid (vitamin B5) as a microbial metabolite that rapidly restores colonic mucus integrity following antibiotic administration. Integrated 16S rRNA gene sequencing and metabolomic profiling of murine feces revealed a positive association between Muribaculaceae abundance, fecal pantothenic acid level, and colonic mucus thickness. Among four isolated Muribaculaceae species, only Sangeribacter muris produced pantothenic acid. An exogenous pantothenic acid supplement quickly restored the thin mucus layer. This rapid response occurred without detectable transcriptional activation. This response did not recur in isolated colonic epithelium or colonic organoids, indicating that pantothenic acid acts through a non-epithelial, non-autonomous mechanism. Together, these findings identify a previously unrecognized microbe-metabolite-host signaling pathway that rapidly regulates colonic mucus barrier homeostasis and reveal a local barrier-protective function of microbiota-derived pantothenic acid.

Uchiyama, K., Furukawa, R., Miyauchi, E., Maejima, Y., Ito, D., Omotegawa, K., Sawase, R., Mogi, C., Aoyagi, R., Oda, T., Saitoh, T., Sasaki, N.

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