Effects of Dietary Allitol and D-Allulose on Body Fat Accumulation and Cecal Short-Chain Fatty Acid Production in Rats Fed a High-Fat Diet.

IF 1.6 4区 农林科学 Q3 CHEMISTRY, APPLIED Journal of oleo science Pub Date : 2024-10-01 Epub Date: 2024-09-20 DOI:10.5650/jos.ess24099
Tatsuhiro Matsuo, Shunsuke Higaki, Reiko Inai, Goro Takata, Susumu Mochizuki, Akihide Yoshihara, Kazuya Akimitsu
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Abstract

We investigated the effects of a single and simultaneous intake of allitol and d-allulose on body fat accumulation and cecal short-chain fatty acid (SCFA) production and accurately assessed the contribution of rare sugars to body fat in rats fed a high-fat diet that led to obesity. Thirty-two male 3-week-old Wistar rats were randomly divided into four groups: control, allitol, d-allulose, and allitol + d-allulose. The rats were fed experimental diets and water ad libitum for 11 weeks. High doses of allitol or d-allulose can induce diarrhea in rat; hence, each group of rats was acclimated to 1-5% allitol and d-allulose incrementally for the initial 20 days. After the feeding period, all rats were euthanized and collected tissues. Perirenal, mesenteric, and total intra-abdominal adipose tissue weights were significantly reduced by dietary d-allulose, whereas dietary allitol tended to decrease these adipose tissue weights. Both allitol and d-allulose significantly decreased carcass and total body fat mass. We confirmed that both dietary allitol and d-allulose inhibited body fat accumulation; however, d-allulose did not inhibit hepatic lipogenesis and no synergy was observed between dietary allitol and d-allulose in terms of anti-obesity effects. Dietary allitol significantly increased cecal SCFA levels and these effects were more potent than those of dietary d-allulose. The antiobesity effect of allitol may be due to the action of SCFAs, especially butyric acid, produced by the gut microbiota. Many of the effects of allitol as an alternative sweetener remain unknown, and further research is required.

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膳食中的阿糖醇和 D-阿洛糖对高脂膳食大鼠体内脂肪积累和盲肠短链脂肪酸生成的影响
我们研究了大鼠单次或同时摄入木糖醇和d-阿洛糖对体内脂肪积累和盲肠短链脂肪酸(SCFA)产生的影响,并准确评估了稀有糖类对高脂饮食导致肥胖的大鼠体内脂肪的贡献。32 只 3 周大的雄性 Wistar 大鼠被随机分为四组:对照组、阿立醇组、d-阿洛酮糖组和阿立醇 + d-阿洛酮糖组。大鼠在实验期间自由进食实验饮食和水,为期 11 周。高剂量的阿糖醇或 d- 阿洛糖会诱发大鼠腹泻;因此,在最初的 20 天内,每组大鼠都要逐步适应 1-5% 的阿糖醇和 d-阿洛糖。喂食期结束后,对所有大鼠实施安乐死并收集组织。喂食 d-阿洛酮糖可显著降低肾周、肠系膜和腹腔内脂肪组织的总重量,而喂食阿立醇则会降低这些脂肪组织的重量。阿糖醇和 d-阿洛糖都能显著降低胴体和体内总脂肪量。我们证实,日粮中的阿糖醇和d-阿洛糖都能抑制体内脂肪的积累;但是,d-阿洛糖并不能抑制肝脏脂肪的生成,而且在抗肥胖作用方面,也没有观察到日粮阿糖醇和d-阿洛糖之间的协同作用。膳食中的阿糖醇能明显增加盲肠中的 SCFA 含量,其作用比膳食中的 d-阿洛酮糖更强。阿糖醇的抗肥胖作用可能是由于肠道微生物群产生的 SCFAs(尤其是丁酸)的作用。奥利糖醇作为替代甜味剂的许多作用仍不为人所知,需要进一步研究。
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来源期刊
Journal of oleo science
Journal of oleo science CHEMISTRY, APPLIED-FOOD SCIENCE & TECHNOLOGY
CiteScore
3.20
自引率
6.70%
发文量
173
审稿时长
3 months
期刊介绍: The J. Oleo Sci. publishes original researches of high quality on chemistry, biochemistry and science of fats and oils such as related food products, detergents, natural products, petroleum products, lipids and related proteins and sugars. The Journal also encourages papers on chemistry and/or biochemistry as a major component combined with biological/ sensory/nutritional/toxicological evaluation related to agriculture and/or food.
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