...
首页> 外文期刊>Nutrition Research >Carbohydrates blended with polydextrose lower gas production and short-chain fatty acid production in an in vitro system
【24h】

Carbohydrates blended with polydextrose lower gas production and short-chain fatty acid production in an in vitro system

机译:碳水化合物与聚葡萄糖混合可降低体外系统中的产气量和短链脂肪酸产量

获取原文
获取原文并翻译 | 示例
           

摘要

Maximizing health benefits of prebiotics, while limiting negative side effects, is of importance to the food industry. This study examined several oligosaccharides and their blends in an in vitro fermentation model. Substrates included medium- and long-chain fructooligosaccharides (FOS), oligofructose-enriched inulin, galactooligosaccharide, polydextrose (POL), and 50:50 substrate blends. Substrates and blends were fermented in vitro using human fecal inoculum, and fermentation characteristics were quantified at 0, 4, 8, and 12 hours. We hypothesized that mixtures of short- and long-chain oligosaccharides would generate less gas than do short-chain oligosaccharides and modulate gut microflora to a greater extent than do long-chain oligosaccharides. Carbohydrates blended with POL had decreased (P < .01) total gas volume and H produced after 4, 8, and 12 hours of fermentation compared with individual carbohydrates. Mixing of 2 oligofructose-enriched inulin products led to less (P < .05) gas produced and a slower (P < .05) rate of production. When mixed with POL, all carbohydrates tested in the present study produced less total short-chain fatty acids (P < .04) and butyrate (P < .0001) after 12 hours of in vitro fermentation, compared with individual carbohydrates. The bifidogenic effect of medium-chain FOS and oligofructose-enriched inulin after 12 hours of in vitro fermentation was lower (P < .05) when mixed with POL. Mixing the pure carbohydrates with galactooligosaccharide increased (P < .05) bifidobacteria counts measured after 12 hours of in vitro fermentation, except when mixed with medium-chain FOS. In general, when mixed with POL, all carbohydrates had lower gas production, gas production rates, butyrate and total short-chain fatty acid production, and bifidobacteria counts than when fermented alone for 12 hours.
机译:在限制负面副作用的同时,最大化益生元的健康益处对食品工业至关重要。这项研究在体外发酵模型中检查了几种低聚糖及其混合物。底物包括中链和长链低聚果糖(FOS),富含低聚果糖的菊粉,低聚半乳糖,聚葡萄糖(POL)和50:50底物混合物。使用人类粪便接种物在体外发酵底物和混合物,并在0、4、8和12小时对发酵特性进行定量。我们假设,与长链寡糖相比,短链和长链寡糖的混合物产生的气体少于短链寡糖,并且对肠道菌群的调节程度更大。与单独的碳水化合物相比,与POL混合的碳水化合物在发酵4、8和12小时后的总气体体积和H减少了(P <.01)。混合两种富含低聚果糖的菊粉产品可减少产生的气体(P <.05),并降低生产速度(P <.05)。当与POL混合时,与单个碳水化合物相比,在体外发酵12小时后,本研究中测试的所有碳水化合物产生的总短链脂肪酸(P <.04)和丁酸酯(P <.0001)较少。与POL混合后,体外发酵12小时后,中链FOS和富含低聚果糖的菊粉的双歧作用降低(P <.05)。将纯碳水化合物与低聚半乳糖混合后,体外发酵12小时后测得的双歧杆菌计数增加(P <.05),除非与中链FOS混合。一般而言,与POL混合时,与单独发酵12小时相比,所有碳水化合物的气体产生量,气体产生率,丁酸酯和总短链脂肪酸产生量及双歧杆菌计数都较低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号