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◆ Food Chemistry X2026-04-01· Pomace

The regulatory effects of solid-state fermented Rosa roxburghii Tratt. pomace on serum metabolism and intestinal microbiota in rats

Xiaoli Zhou, Yanli Wang, Shengyan Zhang, Bin Du, Lingshuai Meng

原始摘要(英文原文)· Original abstract
This study investigated the in vivo physiological effects of solid-state fermented (SSF) Rosa roxburghii Tratt. pomace (F-RRTP) on host metabolism and gut microbiota. Rats were fed diets supplemented with 1% ( w/w , total diet basis) unfermented RRTP or F-RRTP. Compared with unfermented RRTP, F-RRTP showed a relative increase in serum HDL-C and improved antioxidant-related parameters, as indicated by higher serum SOD and hepatic T-AOC activities. Gut microbiota analysis showed that F-RRTP altered the microbial community structure, including a reduced Firmicutes / Bacteroidetes ratio and a lower relative abundance of Proteobacteria , a taxon commonly associated with gut dysbiosis. Notably, F-RRTP enriched putative butyrate-producing genera, including Ruminococcus and Allobaculum , as well as Bifidobacterium , and this was accompanied by a higher fecal butyrate level. Serum metabolomics further revealed distinct metabolic alterations in the F-RRTP group, including changes in flavonoid-related metabolites, tryptophan metabolites such as serotonin and indole-3-lactic acid, and several metabolites associated with antioxidant status. It suggested coordinated associations among gut microbiota, serum metabolites, and host physiological indices, implying that fermentation-induced changes in pomace properties may contribute to the observed effects. Collectively, these findings indicate that SSF may enhance the functional potential of RRTP and support its further development as a value-added food or feed ingredient with potential metabolic health benefits.
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The regulatory effects of solid-state fermented Rosa roxburghii Tratt. pomace on serum metabolism and intestinal microbiota in rats — 科研速览 Science Skim