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Dietary fat drives whole-body insulin resistance and promotes intestinal inflammation independent of body weight gain

Benjamin A.H. Jensen*, Thomas S. Nielsen, Andreas M. Fritzen, Jacob B. Holm, Even Fjære, Annette K. Serup, Kamil Borkowski, Steve Risis, Simone I. Pærregaard, Ida Søgaard, Audrey Poupeau, Michelle Poulsen, Tao Ma, Christian Sina, Bente Kiens, Lise Madsen, Karsten Kristiansen, Jonas T. Treebak

*Korrespondierende/r Autor/-in für diese Arbeit

Abstract

Background The obesogenic potential of high-fat diets (HFD) in rodents is attenuated when the protein:carbohydrate ratio is increased. However, it is not known if intake of an HFD irrespective of the protein:carbohydrate ratio and in the absence of weight gain, affects glucose homeostasis and the gut microbiota. Methods We fed C57BL6/J mice 3 different HFDs with decreasing protein:carbohydrate ratios for 8 weeks and compared the results to a LFD reference group. We analyzed the gut microbiota composition by 16S rDNA amplicon sequencing and the intestinal gene expression by real-time PCR. Whole body glucose homeostasis was evaluated by insulin and glucose tolerance tests as well as by a hyperinsulinemic euglycemic clamp experiment. Results Compared with LFD-fed reference mice, HFD-fed mice, irrespective of protein:carbohydrate ratio, exhibited impaired glucose tolerance, whereas no differences were observed during insulin tolerance tests. The hyperinsulinemic euglycemic clamp revealed tissue-specific effects on glucose homeostasis in all HFD-fed groups. HFD-fed mice exhibited decreased insulin-stimulated glucose uptake in white but not in brown adipose tissue, and sustained endogenous glucose production under insulin-stimulated conditions. We observed no impairment of insulin-stimulated glucose uptake in skeletal muscles of different fiber type composition. HFD-feeding altered the gut microbiota composition paralleled by increased expression of pro-inflammatory cytokines and genes involved in gluconeogenesis in intestinal epithelial cells of the jejunum. Conclusions Intake of a HFD profoundly affected glucose homeostasis, gut inflammatory responses, and gut microbiota composition in the absence of fat mass accretion.

OriginalspracheEnglisch
ZeitschriftMetabolism: Clinical and Experimental
Jahrgang65
Ausgabenummer12
Seiten (von - bis)1706-1719
Seitenumfang14
ISSN0026-0495
DOIs
PublikationsstatusVeröffentlicht - 01.12.2016

Fördermittel

Support for this study was provided by the Novo Nordisk Foundation Center for Basic Metabolic Research (CBMR). CBMR is an independent Research Center at the University of Copenhagen that is partially funded by an unrestricted donation from the Novo Nordisk Foundation (www.metabol.ku.dk).

UN SDGs

Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

  1. SDG 3 – Gesundheit und Wohlergehen
    SDG 3 – Gesundheit und Wohlergehen

Strategische Forschungsbereiche und Zentren

  • Forschungsschwerpunkt: Gehirn, Hormone, Verhalten - Center for Brain, Behavior and Metabolism (CBBM)

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