Lingonberries and their two separated fractions differently alter the gut microbiota, improve metabolic functions, reduce gut inflammatory properties, and improve brain function in ApoE-/- mice fed high-fat diet.
Nittaya MarungruangTatiana KovalenkoIryna OsadchenkoUlrikke VossFang HuangStephen BurleighGalyna UshakovaGalyna SkiboMargareta NymanOlena PrykhodkoFrida Fåk HålleniusPublished in: Nutritional neuroscience (2018)
Lingonberries (LB) have been shown to have beneficial metabolic effects, which is associated with an altered gut microbiota. This study investigated whether the LB-induced improvements were associated with altered gut- and neuroinflammatory markers, as well as cognitive performance in ApoE-/- mice fed high-fat (HF) diets. Whole LB, as well as two separated fractions of LB were investigated. Eight-week-old male ApoE-/- mice were fed HF diets (38% kcal) containing whole LB (wLB), or the insoluble (insLB) and soluble fractions (solLB) of LB for 8 weeks. Inclusion of wLB and insLB fraction reduced weight gain, reduced fat deposition and improved glucose response. Both wLB and insLB fraction also changed the caecal microbiota composition and reduced intestinal S100B protein levels. The solLB fraction mainly induced weight loss in the mice. There were no significant changes in spatial memory, but significant increases in synaptic density in the hippocampus were observed in the brain of mice-fed wLB and insLB. Thus, this study shows that all lingonberry fractions counteracted negative effects of HF feedings on metabolic parameters. Also, wLB and insLB fraction showed to potentially improve brain function in the mice.
Keyphrases
- high fat diet
- high fat diet induced
- weight loss
- weight gain
- adipose tissue
- insulin resistance
- body mass index
- resting state
- oxidative stress
- bariatric surgery
- clinical trial
- cognitive decline
- white matter
- heart failure
- diabetic rats
- working memory
- functional connectivity
- blood pressure
- randomized controlled trial
- high resolution
- atomic force microscopy
- birth weight
- acute heart failure
- cerebral ischemia
- blood brain barrier
- study protocol
- single molecule
- gastric bypass