ArticleMolecular biology reports2026
Dietary supplementation with phlorotannin-lowered Eisenia nipponica increases caecal antioxidant activity and promotes Akkermansia in mice.
Article in Molecular biology reports, 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
backgroundEisenia nipponica (EN), a traditional Japanese edible brown alga, is rich in storage polysaccharides (laminaran) and polyphenols (phlorotannins) during summer. Laminaran is a water-soluble dietary fibre readily fermented in the gut, whereas the phlorotannins in EN exhibit potent antibacterial activity against Gram-positive bacteria. METHODS AND
resultsTo distinguish the effects of algal fibre from those of soluble polyphenols, we prepared a phlorotannin-lowered EN via 70% ethanol washing (WEN). Either EN or WEN was added at 5% (w/w) to a high-sucrose, low-fiber (NF) diet and administered to male ICR mice for 14 days. Compared with mice fed NF diet, those fed EN and WEN showed approximately four- and three-fold increase, respectively, in caecal total phenolic content (TPC) alongside increased antioxidant activities (superoxide anion radical scavenging and Fe-reducing power). 16S rDNA amplicon sequencing revealed that both EN and WEN suppressed the caecal relative abundance of Gram-positive bacteria, such as Allobaculum. While both EN and WEN increased the abundance of laminaran-degrading Bacteroides intestinalis-like bacteria, other laminaran-degrading Bacteroides uniformis-like bacteria increased in mice fed WEN but not EN. Furthermore, while laminaran- and alginate-degrading Bacteroides acidifaciens-like bacteria were suppressed by EN, Akkermansia muciniphila-like bacteria were most abundant in mice fed WEN (14%). KEGG functional predictions indicated reduced amino acid-related metabolism and increased glycan degradation (ko00511) in both EN and WEN groups.
conclusionThese results suggest that phlorotannin-lowered EN may exert beneficial effects through its antioxidant properties and promotion of next-generation probiotics such as B. uniformis and A. muciniphila.
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