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Effect of the sulfation pattern of sea cucumber-derived fucoidan oligosaccharides on modulating metabolic syndromes and gut microbiota dysbiosis caused by HFD in mice

  • Shan Li
  • , Junhui Li
  • , Guizhu Mao
  • , Lufeng Yan
  • , Yaqin Hu
  • , Xingqian Ye
  • , Ding Tian
  • , Robert J. Linhardt
  • , Shiguo Chen

Research output: Contribution to journalArticlepeer-review

54 Scopus citations

Abstract

Fucoidans from sea cucumbers are potential functional food ingredients with a well-defined repeating structure. However, there have been fewer function studies of fucoidan oligosaccharides. In the present study, we first compare the functional effects of fucoidan oligosaccharides from Pearsonothuria graeffei (Dfuc-Pg) and Isostichopus Badionotus (Dfuc-Ib) in a high fat diet (HFD)-fed mouse model. Sulfation pattern was the only structural difference in the two fucoidan oligosaccharides. Both Dfuc-Pg and Dfuc-Ib inhibited hyperlipidemia, obesity, and inflammation caused by HFD. Notably, Dfuc-Pg could inhibit macrophages infiltrating into adipose tissue and had better anti-inflammatory activity than Dfuc-Ib. Meanwhile, both fucoidan oligosaccharides could reverse gut microbiota dysbiosis, particularly colonic microbiota dysbiosis by decreasing abundance of Firmicutes while increasing abundance of Bacteroidetes. However, Dfuc-Ib dominated with 2-O-sulfo groups increased abundance of Proteobacteria. Dfuc-Pg dominated with 4-O-sulfo groups maintained a better balanced gut microbiota profile. Our results shed a new insight into structure-function relationship of sulfated oligosaccharides.

Original languageEnglish
Pages (from-to)193-210
Number of pages18
JournalJournal of Functional Foods
Volume55
DOIs
StatePublished - Apr 2019
Externally publishedYes

Keywords

  • Fucoidan oligosaccharides
  • Gut microbiota dysbiosis
  • Metabolic syndromes
  • Structure and function relationship

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