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Microbiota in obesity: interactions with enteroendocrine, immune and central nervous systems

  • R J Mulders
  • , K C G de Git
  • , E Schéle
  • , S L Dickson
  • , Y Sanz
  • , R A H Adan*
  • *Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

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Abstract

Western diets, with high consumption of simple sugars and saturated fats, contribute to the rise in the prevalence of obesity. It now seems clear that high-fat diets cause obesity, at least in part, by modifying the composition and function of the microorganisms that colonize in the gastrointestinal tract, the microbiota. The exact pathways by which intestinal microbiota contribute to obesity remain largely unknown. High-fat diet-induced alterations in intestinal microbiota have been suggested to increase energy extraction, intestinal permeability and systemic inflammation while decreasing the capability to generate obesity-suppressing short-chain fatty acids. Moreover, by increasing systemic inflammation, microglial activation and affecting vagal nerve activity, 'obese microbiota' indirectly influence hypothalamic gene expression and promote overeating. Because the potential of intestinal microbiota to induce obesity has been recognized, multiple ways to modify its composition and function are being investigated to provide novel preventive and therapeutic strategies against diet-induced obesity.

Original languageEnglish
Pages (from-to)435-451
Number of pages17
JournalObesity Reviews
Volume19
Issue number4
DOIs
Publication statusPublished - 1 Apr 2018

Keywords

  • hypothalamus
  • inflammation
  • microbiota
  • obesity

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