Sang Xue, Xing Zhuobin, Zhou Boqian, Wang Yiting, Guan Xin, Wang Fuyi, Li Ying, Zhao Qiancheng, Li Zhibo
College of Food Science and Engineering, Dalian Ocean University, Dalian 116023, China.
School of Food Science and Technology, Dalian Polytechnic University, Dalian 116034, China.
Foods. 2025 Aug 25;14(17):2962. doi: 10.3390/foods14172962.
This study investigated the beneficial effect of sea cucumber polysaccharides (SCP) on gut microbiota composition, metabolic profiles, and liver gene expression in mice. Using an integrative approach combining microbiome, metabolome, and transcriptome analyses, we demonstrated that SCP supplementation led to a marked rise in levels and reduced the Firmicutes-to-Bacteroidota ratio. Metabolomic analysis revealed key alterations in amino acid and lipid metabolism, with L-arginine and 7-dehydrocholesterol identified as potential mediators of SCP's beneficial effects. Transcriptomics revealed genes expression across nine metabolic pathways, with genes involved in steroid biosynthesis being upregulated, while those related to protein digestion and absorption were downregulated. Spearman's correlation analysis highlighted strong associations between gut microbiota, lipid metabolism-related genes, and corresponding metabolites. Integration omics data further suggested that SCP primarily supports arginine biosynthesis through gut-liver axis crosstalk. These results provide an important basis for developing SCP-based functional food with prebiotic properties to support metabolic and liver health.
本研究调查了海参多糖(SCP)对小鼠肠道微生物群组成、代谢谱和肝脏基因表达的有益作用。通过结合微生物组、代谢组和转录组分析的综合方法,我们证明补充SCP导致水平显著升高,并降低了厚壁菌门与拟杆菌门的比例。代谢组学分析揭示了氨基酸和脂质代谢的关键变化,L-精氨酸和7-脱氢胆固醇被确定为SCP有益作用的潜在介质。转录组学揭示了九个代谢途径中的基因表达,参与类固醇生物合成的基因上调,而与蛋白质消化和吸收相关的基因下调。Spearman相关性分析突出了肠道微生物群、脂质代谢相关基因和相应代谢物之间的强关联。整合组学数据进一步表明,SCP主要通过肠-肝轴串扰支持精氨酸生物合成。这些结果为开发具有益生元特性的基于SCP的功能性食品以支持代谢和肝脏健康提供了重要依据。