Study2018

The anti-obesity effect of starch in a whole grain-like structural form

Luo K, Wang X, Zhang G

Food & function · 14 citations

How it was studied

Design
Animal study (classified by our AI screen)
Studied in
Animals
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
Government
National Natural Science Foundation of China
Grants
National Natural Science Foundation of China (31471585)

Based on 1 listed funder(s).

Publication

Published
2018-01-01 · Food Funct · vol. 9 · issue 7 · pp. 3755–3763
Publisher
Royal Society of Chemistry
Cited
22 citations · more than 79% of similar papers · 1.3× the field average
References
34 works
Access
Paywalled
Research areas
Diet and metabolism studies · Food composition and properties · Diet, Metabolism, and Disease
Keywords
Food science, Whole grains, Starch, Obesity, Chemistry, Mathematics, Medicine, Internal medicine
MeSH
animals, mice, inbred c57bl, humans, mice, mice, obese, obesity, starch, ppar alpha, anti-obesity agents, energy metabolism, male, lipogenesis, adipogenesis, lipid metabolism, sterol regulatory element binding protein 1, fatty acid synthases, whole grains

3 authors

From CN

  • Kaiyun LuoJiangnan University; State Key Laboratory of Food Science and Technology
  • Xufeng WangJiangnan University; State Key Laboratory of Food Science and Technology; Fuzhou University
  • Genyi Zhang · correspondingJiangnan University; State Key Laboratory of Food Science and Technology

Abstract

Obesity is a risk factor for many chronic diseases, and the anti-obesity effect of starch in a whole grain-like structural form (WGLSF) prepared through co-gelation with oat β-glucan and alginate was studied using high-fat (HF) induced obese male C57BL/6J mice. In vitro human fecal fermentation of WGLSF-starch showed a slower rate of fermentation and a higher production of butyric acid (132.0 μmol per 50 mg sample) when compared to the physical mixture counterpart of starch, β-glucan, and alginate (PM) (110.5 μmol per 50 mg) or β-glucan itself (96.2 μmol per 50 mg). The body weight gain of obese mice fed with a HF-WGLSF diet was significantly reduced (42.0% lower than the HF group, 30.2% lower than the physical mixture) with decreased cell size in white adipose tissue and similar levels of serum lipid profiles to the control of the low-fat (LF) group. Western blotting experiments showed the down-regulated lipogenic transcription factor of SREBP-1c and fatty acid synthase (FAS), but the lipid-oxidation related transcription factors of peroxisome proliferator-activated receptor-α (PPAR-α) and phosphorylated AMP-activated protein kinase (p-AMPK) were up-regulated. Energy metabolism analysis revealed increased lipid-sourced energy expenditure with higher heat production and respiratory exchange ratios. Consistently, the expression of hypothalamic pro-opiomelanocortin (POMC), favoring energy expenditure, was increased significantly while the neuropeptide Y (NPY) was reduced. Thus, the increased energy expenditure stimulated by starch in a whole-grain-like structural form is responsible for the reduced body weight gain of obese mice fed with a high fat-based diet.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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