Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 1 de 1
Filter
Add more filters










Database
Language
Publication year range
1.
Nutrients ; 11(11)2019 Nov 08.
Article in English | MEDLINE | ID: mdl-31717368

ABSTRACT

(1) High-fat (HF) diet leads to gut microbiota dysbiosis which is associated with systemic inflammation. Bacterial-driven inflammation is sufficient to alter vagally mediated satiety and induce hyperphagia. Promoting bacterial fermentation improves gastrointestinal (GI) epithelial barrier function and reduces inflammation. Resistant starch escape digestion and can be fermented by bacteria in the distal gut. Therefore, we hypothesized that potato RS supplementation in HF-fed rats would lead to compositional changes in microbiota composition associated with improved inflammatory status and vagal signaling. (2) Male Wistar rats (n = 8/group) were fed a low-fat chow (LF, 13% fat), HF (45% fat), or an isocaloric HF supplemented with 12% potato RS (HFRS) diet. (3) The HFRS-fed rats consumed significantly less energy than HF animals throughout the experiment. Systemic inflammation and glucose homeostasis were improved in the HFRS compared to HF rats. Cholecystokinin-induced satiety was abolished in HF-fed rats and restored in HFRS rats. HF feeding led to a significant decrease in positive c fiber staining in the brainstem which was averted by RS supplementation. (4) The RS supplementation prevented dysbiosis and systemic inflammation. Additionally, microbiota manipulation via dietary potato RS prevented HF-diet-induced reorganization of vagal afferent fibers, loss in CCK-induced satiety, and hyperphagia.


Subject(s)
Bacteria/growth & development , Brain/physiopathology , Dietary Supplements , Dysbiosis , Gastrointestinal Microbiome , Inflammation/prevention & control , Intestines/innervation , Intestines/microbiology , Obesity/prevention & control , Solanum tuberosum , Starch/administration & dosage , Vagus Nerve/physiopathology , Animal Feed , Animals , Bacteria/metabolism , Brain/metabolism , Diet, High-Fat , Disease Models, Animal , Feeding Behavior , Fermentation , Hyperphagia/metabolism , Hyperphagia/microbiology , Hyperphagia/physiopathology , Hyperphagia/prevention & control , Inflammation/metabolism , Inflammation/microbiology , Inflammation/physiopathology , Male , Obesity/metabolism , Obesity/microbiology , Obesity/physiopathology , Plant Roots , Rats, Wistar , Satiety Response , Starch/metabolism , Vagus Nerve/metabolism , Weight Gain
SELECTION OF CITATIONS
SEARCH DETAIL
...