Cereal fructan extracts alter intestinal fermentation to reduce adiposity and increase mineral retention compared to oligofructose

© 2018, © Crown. Purpose: Intestinal fermentation of inulin-type fructans, including oligofructose, can modulate adiposity, improve energy regulation, and increase mineral absorption. We aimed to determine whether cereal fructans had greater effects on reducing adiposity and improving mineral absorp...

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Main Authors: Belobrajdic, D., Jenkins, C., Christophersen, Claus, Bird, A.
Format: Journal Article
Published: Springer Medizin 2018
Online Access:http://hdl.handle.net/20.500.11937/73319
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author Belobrajdic, D.
Jenkins, C.
Christophersen, Claus
Bird, A.
author_facet Belobrajdic, D.
Jenkins, C.
Christophersen, Claus
Bird, A.
author_sort Belobrajdic, D.
building Curtin Institutional Repository
collection Online Access
description © 2018, © Crown. Purpose: Intestinal fermentation of inulin-type fructans, including oligofructose, can modulate adiposity, improve energy regulation, and increase mineral absorption. We aimed to determine whether cereal fructans had greater effects on reducing adiposity and improving mineral absorption compared with oligofructose. Methods: Thirty-two male Sprague–Dawley rats were randomly assigned to one of four dietary treatments that contained 0% fructan (control), or 5% fructan provided by oligofructose (OF), a barley grain fraction (BGF), or a wheat stem fraction (WSF). After 1 week on the diets, mineral absorption and retention was assessed. At 4 weeks, blood samples were collected for gut hormone analysis, adipose depots were removed and weighed, and caecal digesta was analyzed for pH and short-chain fatty acids (SCFA). Results: The BGF and WSF, but not OF, had lower total visceral fat weights than the Control (p < 0.05). The fructan diets all lowered caecal pH and raised caecal digesta weight and total SCFA content, in comparison to the Control. Caecal propionate levels for OF were similar to the Control and higher for WSF (p < 0.05). Plasma peptide YY and glucagon-like peptide-1 levels were elevated for all fructan groups when compared to Control (p < 0.001) and gastric inhibitory peptide was lower for the WSF compared to the other groups (p < 0.05). The fructan diets improved calcium and magnesium retention, which was highest for WSF (p < 0.05). BGF and WSF in comparison to OF showed differential effects on fermentation, gut hormone levels, and adiposity. Conclusions: Cereal fructan sources have favorable metabolic effects that suggest greater improvements in energy regulation and mineral status to those reported for oligofructose.
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spelling curtin-20.500.11937-733192020-06-15T03:03:20Z Cereal fructan extracts alter intestinal fermentation to reduce adiposity and increase mineral retention compared to oligofructose Belobrajdic, D. Jenkins, C. Christophersen, Claus Bird, A. © 2018, © Crown. Purpose: Intestinal fermentation of inulin-type fructans, including oligofructose, can modulate adiposity, improve energy regulation, and increase mineral absorption. We aimed to determine whether cereal fructans had greater effects on reducing adiposity and improving mineral absorption compared with oligofructose. Methods: Thirty-two male Sprague–Dawley rats were randomly assigned to one of four dietary treatments that contained 0% fructan (control), or 5% fructan provided by oligofructose (OF), a barley grain fraction (BGF), or a wheat stem fraction (WSF). After 1 week on the diets, mineral absorption and retention was assessed. At 4 weeks, blood samples were collected for gut hormone analysis, adipose depots were removed and weighed, and caecal digesta was analyzed for pH and short-chain fatty acids (SCFA). Results: The BGF and WSF, but not OF, had lower total visceral fat weights than the Control (p < 0.05). The fructan diets all lowered caecal pH and raised caecal digesta weight and total SCFA content, in comparison to the Control. Caecal propionate levels for OF were similar to the Control and higher for WSF (p < 0.05). Plasma peptide YY and glucagon-like peptide-1 levels were elevated for all fructan groups when compared to Control (p < 0.001) and gastric inhibitory peptide was lower for the WSF compared to the other groups (p < 0.05). The fructan diets improved calcium and magnesium retention, which was highest for WSF (p < 0.05). BGF and WSF in comparison to OF showed differential effects on fermentation, gut hormone levels, and adiposity. Conclusions: Cereal fructan sources have favorable metabolic effects that suggest greater improvements in energy regulation and mineral status to those reported for oligofructose. 2018 Journal Article http://hdl.handle.net/20.500.11937/73319 10.1007/s00394-018-1830-y Springer Medizin restricted
spellingShingle Belobrajdic, D.
Jenkins, C.
Christophersen, Claus
Bird, A.
Cereal fructan extracts alter intestinal fermentation to reduce adiposity and increase mineral retention compared to oligofructose
title Cereal fructan extracts alter intestinal fermentation to reduce adiposity and increase mineral retention compared to oligofructose
title_full Cereal fructan extracts alter intestinal fermentation to reduce adiposity and increase mineral retention compared to oligofructose
title_fullStr Cereal fructan extracts alter intestinal fermentation to reduce adiposity and increase mineral retention compared to oligofructose
title_full_unstemmed Cereal fructan extracts alter intestinal fermentation to reduce adiposity and increase mineral retention compared to oligofructose
title_short Cereal fructan extracts alter intestinal fermentation to reduce adiposity and increase mineral retention compared to oligofructose
title_sort cereal fructan extracts alter intestinal fermentation to reduce adiposity and increase mineral retention compared to oligofructose
url http://hdl.handle.net/20.500.11937/73319