786
Views
24
CrossRef citations to date
0
Altmetric
Food & Nutrition Science

Effect of dietary cellulose nanofiber and exercise on obesity and gut microbiota in mice fed a high-fat-diet

&
Pages 613-620 | Received 17 Sep 2019, Accepted 04 Nov 2019, Published online: 13 Nov 2019

References

  • Makki K, Deehan EC, Walter J, et al. The impact of dietary fiber on gut microbiota in host health and disease. Cell Host Microbe. 2018;23:705–715.
  • Derrien M, Veiga P. Rethinking diet to aid human-microbe symbiosis. Trends Microbiol. 2017;25:100–112.
  • Turnbaugh PJ. Microbes and diet-induced obesity: fast, cheap, and out of control. Cell Host Microbe. 2017;21:278–281.
  • Cassidy YM, McSorley EM, Allsopp PJ. Effect of soluble dietary fibre on postprandial blood glucose response and its potential as a functional food ingredient. J Funct Food. 2018;46:423–439.
  • Gill S, Chater PI, Wilcox MD, et al. The impact of dietary fibres on the physiological processes of the large intestine. Bioact Carbohydr Dietary Fibre. 2018;16:62–74.
  • McRorie JW, McKeown NM. Understanding the physics of functional fibers in the gastrointestinal tract: an evidence-based approach to resolving enduring misconceptions about insoluble and soluble fiber. J Acad Nutr Diet. 2017;117:251–264.
  • Mackie A, Bajka B, Rigby N. Roles for dietary fibre in the upper GI tract: the importance of viscosity. Food Res Internat. 2016;88:234–238.
  • Nechyporchuk O, Belgacem MN, Bras J. Production of cellulose nanofibrils: a review of recent advances. Ind Crop Prod. 2016;93:2–25.
  • Watanabe Y, Kitamura S, Kawasaki K, et al. Application of a water jet system to the pretreatment of cellulose. Biopolym. 2011;95:833–839.
  • Shimotoyodome A, Suzuki J, Kumamoto Y, et al. Regulation of postprandial blood metabolic variables by TEMPO-oxidized cellulose nanofibers. Biomacromol. 2011;12:3812–3818.
  • Nagano T, Yano H. Dietary cellulose nanofiber modulates obesity and gut microbiota in high-fat-fed mice. Manuscript submitted for publication.
  • Colberg SR, Sigal RJ, Yardley JR, et al. Tate, physical activity/exercise and diabetes: a position statement of the American Diabetes Association. Diabetes Care. 2016;39:2065–2079.
  • Matsumoto M, Inoue R, Tsukahara T, et al. Voluntary running exercise alters microbiota composition and increases n-butyrate concentration in the rat cecum. Biosci Biotechnol Biochem. 2008;72:572–576.
  • Mailing LJ, Allen JM, Buford TW, et al. Exercise and the gut microbiome: A review of the evidence, potential mechanisms, and implications for human health. Exerc Sport Sci Rev. 2019;47:75–85.
  • O’Sullivan O, Cronin O, Clarke SF, et al. Exercise and the microbiota. Gut Microb. 2015;6:131–136.
  • Oyanagi E, Uchida M, Kremenik MJ. Altered gut microbiota by voluntary exercise induces high physical activity in high-fat diet mice. J Phys Fit Sport Med. 2018;7:81–85.
  • Nagano T, Katase M, Tsumura K. Dietary soyasaponin attenuates 2,4-dinitrofluorobenzene-induced contact hypersensitivity via gut microbiota in mice. Clin Exp Immunol. 2019;195:86–95.
  • Takahashi S, Tomita J, Nishioka K, et al. Development of a prokaryotic universal primer for simultaneous analysis of bacteria and archaea using next-generation sequencing. PLoS One. 2014;9:e105592.
  • García-Villalba R, Giménez-Bastida JA, García-Conesa MT, et al. Alternative method for gas chromatography-mass spectrometry analysis of short-chain fatty acids in faecal samples. J Sep Sci. 2012;35:1906–1913.
  • Hart N, Sarga L, Csende Z, et al. Resveratrol enhances exercise training responses in rats selectively bred for high running performance. Food Chem Toxicol. 2013;61:53–59.
  • Hsu YJ, Huang WC, Lin JS, et al. Kefir supplementation modifies gut microbiota composition, reduces physical fatigue, and improves exercise performance in mice. Nutrient. 2018;10:862.
  • Kaakoush NO. Insights into the role of Erysipelotrichaceae in the human host. Front Cell Infec Microbiol. 2015;5:84.
  • Turnbaugh PJ, Bäckhed F, Fulton L, et al. Diet-induced obesity is linked to marked but reversible alterations in the mouse distal gut microbiome. Cell Host Microbe. 2008;3:213–223.
  • Fleissner CK, Huebel N, Abd El-Bary MM, et al. Absence of intestinal microbiota does not protect mice from diet-induced obesity. Br J Nutr. 2010;104:919–929.
  • Zhang H, DiBaise JK, Zuccolo A, et al. Human gut microbiota in obesity and after gastric bypass. Proc Natil Acad Sci USA. 2009;106:2365–2370.
  • Martinez I, Perdicaro DJ, Brown AW, et al. Diet-induced alterations of host cholesterol metabolism are likely to affect the gut microbiota composition in hamsters. Appl Environm Microbial. 2013;79:516–524.
  • Daniel H, Gholami AM, Berry D, et al. High-fat diet alters gut microbiota physiology in mice. Isme J. 2013;8:295–308.
  • Jiang W, Wu N, Wang X, et al. Dysbiosis gut microbiota associated with inflammation and impaired mucosal immune function in intestine of humans with non-alcoholic fatty liver disease. Sci Rep. 2015;5:8096.
  • Welly RJ, Liu TW, Zidon TM, et al. Comparison of diet versus exercise on metabolic function and gut microbiota in obese rats. Med Sci Sport Exerc. 2016;48:1688–1698.
  • Koh A, De Vadder F, Kovatcheva-Datchary P, et al. From dietary fiber to host physiology: short-chain fatty acids as key bacterial metabolites. Cell. 2016;165:1332–1345.
  • Kasubuchi M, Hasegawa S, Hiramatsu T, et al. Dietary gut microbial metabolites, short-chain fatty acids, and host metabolic regulation. Nutrient. 2015;7:2839–2849.
  • Fukuda S, Toh H, Hase K, et al. Bifidobacteria can protect from enteropathogenic infection through production of acetate. Nature. 2011;469:543–547.
  • Vital M, Howe AC, Tiedje JM. Revealing the bacterial butyrate synthesis pathways by analyzing (meta)genomic data. MBio. 2014;5:e00889.
  • Louis P, Flint HJ. Diversity, metabolism and microbial ecology of butyrate-producing bacteria from the human large intestine. FEMS Microbiol Lett. 2009;294:1–8.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.