Xiao Jin, Metzler-Zebeli Barbara U, Zebeli Qendrim
Department for Farm Animals and Veterinary Public Health, Institute of Animal Nutrition and Functional Plant Compounds, University of Veterinary Medicine Vienna, Vienna 1210, Austria.
University Clinic for Swine, Department for Farm Animals and Veterinary Public Health, University of Veterinary Medicine Vienna, Vienna 1210, Austria.
Nutrients. 2015 Sep 28;7(10):8348-65. doi: 10.3390/nu7105397.
Indigestible sugars (iS) have received particular interest in food and nutrition research due to their prebiotic properties and other health benefits in humans and animals. The main aim of this review article is to summarize the current knowledge regarding digestive and health-enhancing properties of iS such as sugar alcohols, oligosacharides, and polysaccharides, in rodents and rabbits. Besides ameliorating gut health, iS ingestion also elicits laxative effects and stimulate intestinal permeability and fluid secretions, thereby shortening digesta transit time and increasing stool mass and quality. In rodents and rabbits, as hindgut fermenters, consumption of iS leads to an improved nutrient digestibility, too. Cecal fermentation of iS reduces luminal pH and extends wall tissue facilitating absorption of key dietary minerals across hindgut. The microbial fermentation of iS also enhances excessive blood nitrogen (N) flowing into the cecum to be used as N source for bacterial growth, enhancing N retention in cecotrophic animals. This review also highlights the impact of iS on improving lipid metabolism, mainly by lowering cholesterol and triglycerides levels in the blood. The paper serves as an index of the current knowledge of iS effects in rodents and rabbits and also identifies gaps of knowledge that need to be addressed by future research.
不可消化糖(iS)因其益生元特性以及对人和动物的其他健康益处,在食品和营养研究中受到了特别关注。这篇综述文章的主要目的是总结目前关于iS(如糖醇、寡糖和多糖)在啮齿动物和兔子中的消化及促进健康特性的知识。除了改善肠道健康外,摄入iS还会产生通便作用,并刺激肠道通透性和液体分泌,从而缩短消化物通过时间,增加粪便量和质量。在作为后肠发酵动物的啮齿动物和兔子中,摄入iS也会提高营养物质的消化率。iS在盲肠中的发酵会降低肠腔pH值,并使肠壁组织伸展,有利于关键膳食矿物质在后肠的吸收。iS的微生物发酵还会增强流入盲肠的过量血液氮(N),将其用作细菌生长的氮源,从而增强盲肠营养型动物的氮保留。这篇综述还强调了iS对改善脂质代谢的影响,主要是通过降低血液中的胆固醇和甘油三酯水平。本文作为目前关于iS对啮齿动物和兔子影响的知识索引,还指出了需要未来研究解决的知识空白。