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Inulin-type fructans of longer degree of polymerization exert more pronounced in vitro prebiotic effects

机译:聚合度较长的菊粉型果聚糖在体外产生益生元的作用更加明显

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We assessed to what extent fructans of different degrees of polymerization (DP) differ in their prebiotic effectiveness towards in vitro microbial communities from the proximal and distal colon. Two short chain fructans - oligofructose (DP 2-20) and inulin (DP 3-60) - were administered to the Simulator of the Human Intestinal Microbial Ecosystem (SHIME) at 2.5 g day(-1). The influence of fructan addition towards fermentation activity and microbial community composition from the different SHIME colon compartments were evaluated. Both fructans exerted prebiotic effects with significantly higher butyrate and propionate production and stimulation of lactic acid-producing bacteria. Compared with oligofructose, it was noted that it took more time before significant effects from inulin addition were observed. Yet, the higher short-chain fatty acid production and lower proteolytic activity showed that the prebiotic effects from inulin were more pronounced than oligofructose. Also, the bifidogenic effects from inulin vs oligofructose were higher in the distal colon compartments and this effect was prolonged in the distal colon once the addition was stopped. Inulin has more pronounced prebiotic effects than oligofructose towards both fermentation activity and bacterial community composition in the SHIME model. Its slower fermentation rate and higher prebiotic potency makes inulin a more interesting compound than oligofructose to beneficially influence the microbial community from both the proximal and distal colon regions.
机译:我们评估了不同聚合度(DP)的果聚糖对近端结肠和远端结肠对体外微生物群落的益生元功效的差异。两种短链果聚糖-低聚果糖(DP 2-20)和菊粉(DP 3-60)-在2.5 g day(-1)的人体肠道微生物生态系统(SHIME)模拟器中使用。评估了果聚糖添加对不同SHIME结肠隔室中发酵活性和微生物群落组成的影响。两种果聚糖都发挥了益生元的作用,丁酸和丙酸的产生明显更高,并且刺激了乳酸菌的产生。与低聚果糖相比,注意到花费更多时间才能观察到菊粉添加的显着效果。然而,较高的短链脂肪酸产量和较低的蛋白水解活性表明,菊粉的益生元作用比寡聚果糖更为明显。同样,菊粉与寡聚果糖的双歧化作用在远端结肠区室较高,一旦停止添加,这种作用在远端结肠中被延长。与低聚果糖相比,菊粉在SHIME模型中对发酵活性和细菌群落组成具有更明显的益生元作用。与低聚果糖相比,它的较慢的发酵速度和较高的益生元效价使菊粉成为更有趣的化合物,从而可以有效地影响结肠近端和远端的微生物群落。

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