ArticleJournal of natural medicines2026
Poricoic acid A administered during DSS exposure attenuates acute colitis in mice and is accompanied by barrier-associated changes and endpoint fecal microbiota shifts.
Article in Journal of natural medicines, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Poricoic acid A (PAA), a lanostane-type triterpenoid associated with Poria-derived medicines, has shown tissue-protective activity, but its effects on epithelial-barrier phenotypes and endpoint fecal microbiota in experimental colitis remain incompletely characterized. Male C57BL/6 mice were exposed to 3% dextran sulfate sodium (DSS) for 7 days and received oral PAA (2.5, 5, or 10 mg/kg/day), sulfasalazine (200 mg/kg/day), or vehicle concomitantly with DSS. Clinical disease indices and colon length were assessed; colonic histology, mucus-positive staining, epithelial ultrastructure, serum lipopolysaccharide (LPS), E-cadherin, and claudin-3 were evaluated; and endpoint fecal microbial communities were profiled by 16S rRNA gene sequencing. DSS caused body-weight loss, increased disease activity, colon shortening, histological injury, mucus depletion, epithelial ultrastructural disruption, increased serum LPS, and reduced colonic E-cadherin and claudin-3. PAA attenuated the clinical and histological changes, with the most consistent effects at 10 mg/kg/day, the highest dose tested. This group also showed better-preserved epithelial ultrastructure, lower serum LPS, and higher E-cadherin and claudin-3 signals than the DSS group. Endpoint sequencing showed higher richness-related indices in the PAA-H group than in the DSS group, including Chao1, ACE, observed species, and Faith's phylogenetic diversity, whereas Shannon and Simpson indices were not different. Exploratory taxonomic analyses identified treatment-associated differences in selected DSS-altered fecal taxa, including attenuation of Proteobacteria-related expansion. Thus, PAA administered during DSS exposure attenuated acute colitis and was accompanied by barrier-associated changes and endpoint fecal microbiota alterations.
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