Evidence map›Paper›PMID 42678661›Full record

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.

Mei Wang, Kunkun Zhang, Danli Wang, Mingtao Cao, Rong Yong, Xiangqian Li, Wenyi Chen, Chengcheng Peng, Jiale Chang, Lu Fang and 5 more

Abstract read
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In one paragraph

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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0citing papers in PubMed
–field-weighted citation impact
1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

Neither the registry nor the abstract names a trial number. If this is a trial report, that itself is worth knowing.

3 · Its place in the literature

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0 citing papers in PubMed.

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4 · The record

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5 · Who and what money

Authors and funding

15 authors.

Mei Wang *Beijing Jishuitan Hospital Guizhou Hospital, Guiyang, 550014, China.
Kunkun Zhang *Key Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Danli WangKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Mingtao CaoKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Rong YongKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Xiangqian LiKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Wenyi ChenKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Chengcheng PengKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Jiale ChangKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Lu FangKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Feiyang ZhouKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Yuyue WanKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Jingran WangKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China.
Zhi ZhouKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China. Z1280303877@163.com.
Lin ChenKey Laboratory of Natural Product Composition and Efficacy of Qiannan Prefecture; Key Laboratory for Research on Human Parasitic Diseases of Qiannan Prefecture, Qiannan Medical College for Nationalities, Duyun, 558000, China. Chenlinzy@outlook.com.

Funding

he Student Scientific and Technological Innovation Projects of Qiannan Medical College for Nationalities Qnyz2025069, Qnyz2025070 and Qnyz2025073Natural Science Research Project of Higher Education Institutions of Guizhou Province (Young Scientific and Technological Talent Growth Project [2024]312Project of Guizhou Provincial Administration of Traditional Chinese Medicine QZYY-2026-203Qiannan Prefecture Science and Technology Plan Project 2025 No. 8Research Backbone Support Project of Qiannan Medical College for Nationalities Qnyz2025009Research Talent Support Project of Qiannan Medical College for Nationalities Qnyz202207Research Talent Support Project of Qiannan Medical College for Nationalities Qnyz2025036the 2026 Science and Technology Fund Project of Guizhou Provincial Health Commission gzwkj2026-479Vocational Education Research Project of Guizhou Provincial Department of Education GZZJ-Q2025039
6 · The paper itself

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.

Indexed as

Claudin-3DSS-induced acute colitisE-cadherinEpithelial barrierFecal microbiotaPoricoic acid A

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.