Fermentation Kinetics of Selected Dietary Fibers by Human Small Intestinal Microbiota Depend on the Type of Fiber and Subject

Mol Nutr Food Res. 2020 Oct;64(20):e2000455. doi: 10.1002/mnfr.202000455. Epub 2020 Sep 29.

Abstract

Scope: An underexplored topic is the investigation of health effects of dietary fibers via modulation of human small intestine (SI) microbiota. A few previous studies hint at fermentation of some dietary fibers in the distal SI of humans and pigs. Here the potential of human SI microbiota to degrade dietary fibers and produce metabolites in vitro is investigated.

Methods and results: Fructans, galacto-oligosaccharides, lemon pectins, and isomalto/malto-polysaccharides are subjected to in vitro batch fermentations inoculated with ileostomy effluent from five subjects. Fiber degradation products, formation of bacterial metabolites, and microbiota composition are determined over time. Galacto- and fructo-oligosaccharides are rapidly utilized by the SI microbiota of all subjects. At 5h of fermentation, 31%-82% of galacto-oligosaccharides and 29%-89% fructo-oligosaccharides (degree of polymerization DP4-8) are utilized. Breakdown of fructo-oligosaccharides/inulin DP ≥ 10, lemon pectin, and iso-malto/maltopolysaccharides only started after 7h incubation. Degradation of different fibers result in production of mainly acetate, and changed microbiota composition over time.

Conclusion: Human SI microbiota have hydrolytic potential for prebiotic galacto- and fructo-oligosaccharides. In contrast, the higher molecular weight fibers inulin, lemon pectin, and iso-malto/maltopolysaccharides show slow fermentation rate. Fiber degradation kinetics and microbiota responses are subject dependent, therefore personalized nutritional fiber based strategies are required.

Keywords: fiber; in vitro fermentation; microbiota; prebiotics; small intestine.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adult
  • Aged
  • Citrus / chemistry
  • Dietary Fiber / metabolism*
  • Dietary Fiber / pharmacology
  • Female
  • Fermentation
  • Gastrointestinal Microbiome / drug effects
  • Gastrointestinal Microbiome / physiology*
  • Humans
  • Ileostomy
  • Inulin / metabolism
  • Inulin / pharmacokinetics
  • Male
  • Middle Aged
  • Molecular Weight
  • Oligosaccharides / chemistry*
  • Oligosaccharides / metabolism
  • Oligosaccharides / pharmacokinetics*
  • Pectins / chemistry
  • Pectins / pharmacokinetics

Substances

  • Dietary Fiber
  • Oligosaccharides
  • Pectins
  • Inulin